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Essay on Technology

The word "technology" and its uses have immensely changed since the 20th century, and with time, it has continued to evolve ever since. We are living in a world driven by technology. The advancement of technology has played an important role in the development of human civilization, along with cultural changes. Technology provides innovative ways of doing work through various smart and innovative means. 

Electronic appliances, gadgets, faster modes of communication, and transport have added to the comfort factor in our lives. It has helped in improving the productivity of individuals and different business enterprises. Technology has brought a revolution in many operational fields. It has undoubtedly made a very important contribution to the progress that mankind has made over the years.

The Advancement of Technology:

Technology has reduced the effort and time and increased the efficiency of the production requirements in every field. It has made our lives easy, comfortable, healthy, and enjoyable. It has brought a revolution in transport and communication. The advancement of technology, along with science, has helped us to become self-reliant in all spheres of life. With the innovation of a particular technology, it becomes part of society and integral to human lives after a point in time.

Technology is Our Part of Life:

Technology has changed our day-to-day lives. Technology has brought the world closer and better connected. Those days have passed when only the rich could afford such luxuries. Because of the rise of globalisation and liberalisation, all luxuries are now within the reach of the average person. Today, an average middle-class family can afford a mobile phone, a television, a washing machine, a refrigerator, a computer, the Internet, etc. At the touch of a switch, a man can witness any event that is happening in far-off places.  

Benefits of Technology in All Fields: 

We cannot escape technology; it has improved the quality of life and brought about revolutions in various fields of modern-day society, be it communication, transportation, education, healthcare, and many more. Let us learn about it.

Technology in Communication:

With the advent of technology in communication, which includes telephones, fax machines, cellular phones, the Internet, multimedia, and email, communication has become much faster and easier. It has transformed and influenced relationships in many ways. We no longer need to rely on sending physical letters and waiting for several days for a response. Technology has made communication so simple that you can connect with anyone from anywhere by calling them via mobile phone or messaging them using different messaging apps that are easy to download.

Innovation in communication technology has had an immense influence on social life. Human socialising has become easier by using social networking sites, dating, and even matrimonial services available on mobile applications and websites.

Today, the Internet is used for shopping, paying utility bills, credit card bills, admission fees, e-commerce, and online banking. In the world of marketing, many companies are marketing and selling their products and creating brands over the internet. 

In the field of travel, cities, towns, states, and countries are using the web to post detailed tourist and event information. Travellers across the globe can easily find information on tourism, sightseeing, places to stay, weather, maps, timings for events, transportation schedules, and buy tickets to various tourist spots and destinations.

Technology in the Office or Workplace:

Technology has increased efficiency and flexibility in the workspace. Technology has made it easy to work remotely, which has increased the productivity of the employees. External and internal communication has become faster through emails and apps. Automation has saved time, and there is also a reduction in redundancy in tasks. Robots are now being used to manufacture products that consistently deliver the same product without defect until the robot itself fails. Artificial Intelligence and Machine Learning technology are innovations that are being deployed across industries to reap benefits.

Technology has wiped out the manual way of storing files. Now files are stored in the cloud, which can be accessed at any time and from anywhere. With technology, companies can make quick decisions, act faster towards solutions, and remain adaptable. Technology has optimised the usage of resources and connected businesses worldwide. For example, if the customer is based in America, he can have the services delivered from India. They can communicate with each other in an instant. Every company uses business technology like virtual meeting tools, corporate social networks, tablets, and smart customer relationship management applications that accelerate the fast movement of data and information.

Technology in Education:

Technology is making the education industry improve over time. With technology, students and parents have a variety of learning tools at their fingertips. Teachers can coordinate with classrooms across the world and share their ideas and resources online. Students can get immediate access to an abundance of good information on the Internet. Teachers and students can access plenty of resources available on the web and utilise them for their project work, research, etc. Online learning has changed our perception of education. 

The COVID-19 pandemic brought a paradigm shift using technology where school-going kids continued their studies from home and schools facilitated imparting education by their teachers online from home. Students have learned and used 21st-century skills and tools, like virtual classrooms, AR (Augmented Reality), robots, etc. All these have increased communication and collaboration significantly. 

Technology in Banking:

Technology and banking are now inseparable. Technology has boosted digital transformation in how the banking industry works and has vastly improved banking services for their customers across the globe.

Technology has made banking operations very sophisticated and has reduced errors to almost nil, which were somewhat prevalent with manual human activities. Banks are adopting Artificial Intelligence (AI) to increase their efficiency and profits. With the emergence of Internet banking, self-service tools have replaced the traditional methods of banking. 

You can now access your money, handle transactions like paying bills, money transfers, and online purchases from merchants, and monitor your bank statements anytime and from anywhere in the world. Technology has made banking more secure and safe. You do not need to carry cash in your pocket or wallet; the payments can be made digitally using e-wallets. Mobile banking, banking apps, and cybersecurity are changing the face of the banking industry.

Manufacturing and Production Industry Automation:

At present, manufacturing industries are using all the latest technologies, ranging from big data analytics to artificial intelligence. Big data, ARVR (Augmented Reality and Virtual Reality), and IoT (Internet of Things) are the biggest manufacturing industry players. Automation has increased the level of productivity in various fields. It has reduced labour costs, increased efficiency, and reduced the cost of production.

For example, 3D printing is used to design and develop prototypes in the automobile industry. Repetitive work is being done easily with the help of robots without any waste of time. This has also reduced the cost of the products. 

Technology in the Healthcare Industry:

Technological advancements in the healthcare industry have not only improved our personal quality of life and longevity; they have also improved the lives of many medical professionals and students who are training to become medical experts. It has allowed much faster access to the medical records of each patient. 

The Internet has drastically transformed patients' and doctors’ relationships. Everyone can stay up to date on the latest medical discoveries, share treatment information, and offer one another support when dealing with medical issues. Modern technology has allowed us to contact doctors from the comfort of our homes. There are many sites and apps through which we can contact doctors and get medical help. 

Breakthrough innovations in surgery, artificial organs, brain implants, and networked sensors are examples of transformative developments in the healthcare industry. Hospitals use different tools and applications to perform their administrative tasks, using digital marketing to promote their services.

Technology in Agriculture:

Today, farmers work very differently than they would have decades ago. Data analytics and robotics have built a productive food system. Digital innovations are being used for plant breeding and harvesting equipment. Software and mobile devices are helping farmers harvest better. With various data and information available to farmers, they can make better-informed decisions, for example, tracking the amount of carbon stored in soil and helping with climate change.

Disadvantages of Technology:

People have become dependent on various gadgets and machines, resulting in a lack of physical activity and tempting people to lead an increasingly sedentary lifestyle. Even though technology has increased the productivity of individuals, organisations, and the nation, it has not increased the efficiency of machines. Machines cannot plan and think beyond the instructions that are fed into their system. Technology alone is not enough for progress and prosperity. Management is required, and management is a human act. Technology is largely dependent on human intervention. 

Computers and smartphones have led to an increase in social isolation. Young children are spending more time surfing the internet, playing games, and ignoring their real lives. Usage of technology is also resulting in job losses and distracting students from learning. Technology has been a reason for the production of weapons of destruction.

Dependency on technology is also increasing privacy concerns and cyber crimes, giving way to hackers.

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FAQs on Technology Essay

1. What is technology?

Technology refers to innovative ways of doing work through various smart means. The advancement of technology has played an important role in the development of human civilization. It has helped in improving the productivity of individuals and businesses.

2. How has technology changed the face of banking?

Technology has made banking operations very sophisticated. With the emergence of Internet banking, self-service tools have replaced the traditional methods of banking. You can now access your money, handle transactions, and monitor your bank statements anytime and from anywhere in the world. Technology has made banking more secure and safe.

3. How has technology brought a revolution in the medical field?

Patients and doctors keep each other up to date on the most recent medical discoveries, share treatment information, and offer each other support when dealing with medical issues. It has allowed much faster access to the medical records of each patient. Modern technology has allowed us to contact doctors from the comfort of our homes. There are many websites and mobile apps through which we can contact doctors and get medical help.

4. Are we dependent on technology?

Yes, today, we are becoming increasingly dependent on technology. Computers, smartphones, and modern technology have helped humanity achieve success and progress. However, in hindsight, people need to continuously build a healthy lifestyle, sorting out personal problems that arise due to technological advancements in different aspects of human life.

Feb 13, 2023

200-500 Word Example Essays about Technology

Got an essay assignment about technology check out these examples to inspire you.

Technology is a rapidly evolving field that has completely changed the way we live, work, and interact with one another. Technology has profoundly impacted our daily lives, from how we communicate with friends and family to how we access information and complete tasks. As a result, it's no surprise that technology is a popular topic for students writing essays.

But writing a technology essay can be challenging, especially for those needing more time or help with writer's block. This is where Jenni.ai comes in. Jenni.ai is an innovative AI tool explicitly designed for students who need help writing essays. With Jenni.ai, students can quickly and easily generate essays on various topics, including technology.

This blog post aims to provide readers with various example essays on technology, all generated by Jenni.ai. These essays will be a valuable resource for students looking for inspiration or guidance as they work on their essays. By reading through these example essays, students can better understand how technology can be approached and discussed in an essay.

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The Impact of Technology on Society and Culture

Introduction:.

Technology has become an integral part of our daily lives and has dramatically impacted how we interact, communicate, and carry out various activities. Technological advancements have brought positive and negative changes to society and culture. In this article, we will explore the impact of technology on society and culture and how it has influenced different aspects of our lives.

Positive impact on communication:

Technology has dramatically improved communication and made it easier for people to connect from anywhere in the world. Social media platforms, instant messaging, and video conferencing have brought people closer, bridging geographical distances and cultural differences. This has made it easier for people to share information, exchange ideas, and collaborate on projects.

Positive impact on education:

Students and instructors now have access to a multitude of knowledge and resources because of the effect of technology on education . Students may now study at their speed and from any location thanks to online learning platforms, educational applications, and digital textbooks.

Negative impact on critical thinking and creativity:

Technological advancements have resulted in a reduction in critical thinking and creativity. With so much information at our fingertips, individuals have become more passive in their learning, relying on the internet for solutions rather than logic and inventiveness. As a result, independent thinking and problem-solving abilities have declined.

Positive impact on entertainment:

Technology has transformed how we access and consume entertainment. People may now access a wide range of entertainment alternatives from the comfort of their own homes thanks to streaming services, gaming platforms, and online content makers. The entertainment business has entered a new age of creativity and invention as a result of this.

Negative impact on attention span:

However, the continual bombardment of information and technological stimulation has also reduced attention span and the capacity to focus. People are easily distracted and need help focusing on a single activity for a long time. This has hampered productivity and the ability to accomplish duties.

The Ethics of Artificial Intelligence And Machine Learning

The development of artificial intelligence (AI) and machine learning (ML) technologies has been one of the most significant technological developments of the past several decades. These cutting-edge technologies have the potential to alter several sectors of society, including commerce, industry, healthcare, and entertainment. 

As with any new and quickly advancing technology, AI and ML ethics must be carefully studied. The usage of these technologies presents significant concerns around privacy, accountability, and command. As the use of AI and ML grows more ubiquitous, we must assess their possible influence on society and investigate the ethical issues that must be taken into account as these technologies continue to develop.

What are Artificial Intelligence and Machine Learning?

Artificial Intelligence is the simulation of human intelligence in machines designed to think and act like humans. Machine learning is a subfield of AI that enables computers to learn from data and improve their performance over time without being explicitly programmed.

The impact of AI and ML on Society

The use of AI and ML in various industries, such as healthcare, finance, and retail, has brought many benefits. For example, AI-powered medical diagnosis systems can identify diseases faster and more accurately than human doctors. However, there are also concerns about job displacement and the potential for AI to perpetuate societal biases.

The Ethical Considerations of AI and ML

A. Bias in AI algorithms

One of the critical ethical concerns about AI and ML is the potential for algorithms to perpetuate existing biases. This can occur if the data used to train these algorithms reflects the preferences of the people who created it. As a result, AI systems can perpetuate these biases and discriminate against certain groups of people.

B. Responsibility for AI-generated decisions

Another ethical concern is the responsibility for decisions made by AI systems. For example, who is responsible for the damage if a self-driving car causes an accident? The manufacturer of the vehicle, the software developer, or the AI algorithm itself?

C. The potential for misuse of AI and ML

AI and ML can also be used for malicious purposes, such as cyberattacks and misinformation. The need for more regulation and oversight in developing and using these technologies makes it difficult to prevent misuse.

The developments in AI and ML have given numerous benefits to humanity, but they also present significant ethical concerns that must be addressed. We must assess the repercussions of new technologies on society, implement methods to limit the associated dangers, and guarantee that they are utilized for the greater good. As AI and ML continue to play an ever-increasing role in our daily lives, we must engage in an open and frank discussion regarding their ethics.

The Future of Work And Automation

Rapid technological breakthroughs in recent years have brought about considerable changes in our way of life and work. Concerns regarding the influence of artificial intelligence and machine learning on the future of work and employment have increased alongside the development of these technologies. This article will examine the possible advantages and disadvantages of automation and its influence on the labor market, employees, and the economy.

The Advantages of Automation

Automation in the workplace offers various benefits, including higher efficiency and production, fewer mistakes, and enhanced precision. Automated processes may accomplish repetitive jobs quickly and precisely, allowing employees to concentrate on more complex and creative activities. Additionally, automation may save organizations money since it removes the need to pay for labor and minimizes the danger of workplace accidents.

The Potential Disadvantages of Automation

However, automation has significant disadvantages, including job loss and income stagnation. As robots and computers replace human labor in particular industries, there is a danger that many workers may lose their jobs, resulting in higher unemployment and more significant economic disparity. Moreover, if automation is not adequately regulated and managed, it might lead to stagnant wages and a deterioration in employees' standard of life.

The Future of Work and Automation

Despite these difficulties, automation will likely influence how labor is done. As a result, firms, employees, and governments must take early measures to solve possible issues and reap the rewards of automation. This might entail funding worker retraining programs, enhancing education and skill development, and implementing regulations that support equality and justice at work.

IV. The Need for Ethical Considerations

We must consider the ethical ramifications of automation and its effects on society as technology develops. The impact on employees and their rights, possible hazards to privacy and security, and the duty of corporations and governments to ensure that automation is utilized responsibly and ethically are all factors to be taken into account.

Conclusion:

To summarise, the future of employment and automation will most certainly be defined by a complex interaction of technological advances, economic trends, and cultural ideals. All stakeholders must work together to handle the problems and possibilities presented by automation and ensure that technology is employed to benefit society as a whole.

The Role of Technology in Education

Introduction.

Nearly every part of our lives has been transformed by technology, and education is no different. Today's students have greater access to knowledge, opportunities, and resources than ever before, and technology is becoming a more significant part of their educational experience. Technology is transforming how we think about education and creating new opportunities for learners of all ages, from online courses and virtual classrooms to instructional applications and augmented reality.

Technology's Benefits for Education

The capacity to tailor learning is one of technology's most significant benefits in education. Students may customize their education to meet their unique needs and interests since they can access online information and tools. 

For instance, people can enroll in online classes on topics they are interested in, get tailored feedback on their work, and engage in virtual discussions with peers and subject matter experts worldwide. As a result, pupils are better able to acquire and develop the abilities and information necessary for success.

Challenges and Concerns

Despite the numerous advantages of technology in education, there are also obstacles and considerations to consider. One issue is the growing reliance on technology and the possibility that pupils would become overly dependent on it. This might result in a lack of critical thinking and problem-solving abilities, as students may become passive learners who only follow instructions and rely on technology to complete their assignments.

Another obstacle is the digital divide between those who have access to technology and those who do not. This division can exacerbate the achievement gap between pupils and produce uneven educational and professional growth chances. To reduce these consequences, all students must have access to the technology and resources necessary for success.

In conclusion, technology is rapidly becoming an integral part of the classroom experience and has the potential to alter the way we learn radically. 

Technology can help students flourish and realize their full potential by giving them access to individualized instruction, tools, and opportunities. While the benefits of technology in the classroom are undeniable, it's crucial to be mindful of the risks and take precautions to guarantee that all kids have access to the tools they need to thrive.

The Influence of Technology On Personal Relationships And Communication 

Technological advancements have profoundly altered how individuals connect and exchange information. It has changed the world in many ways in only a few decades. Because of the rise of the internet and various social media sites, maintaining relationships with people from all walks of life is now simpler than ever. 

However, concerns about how these developments may affect interpersonal connections and dialogue are inevitable in an era of rapid technological growth. In this piece, we'll discuss how the prevalence of digital media has altered our interpersonal connections and the language we use to express ourselves.

Direct Effect on Direct Interaction:

The disruption of face-to-face communication is a particularly stark example of how technology has impacted human connections. The quality of interpersonal connections has suffered due to people's growing preference for digital over human communication. Technology has been demonstrated to reduce the usage of nonverbal signs such as facial expressions, tone of voice, and other indicators of emotional investment in the connection.

Positive Impact on Long-Distance Relationships:

Yet there are positives to be found as well. Long-distance relationships have also benefited from technological advancements. The development of technologies such as video conferencing, instant messaging, and social media has made it possible for individuals to keep in touch with distant loved ones. It has become simpler for individuals to stay in touch and feel connected despite geographical distance.

The Effects of Social Media on Personal Connections:

The widespread use of social media has had far-reaching consequences, especially on the quality of interpersonal interactions. Social media has positive and harmful effects on relationships since it allows people to keep in touch and share life's milestones.

Unfortunately, social media has made it all too easy to compare oneself to others, which may lead to emotions of jealousy and a general decline in confidence. Furthermore, social media might cause people to have inflated expectations of themselves and their relationships.

A Personal Perspective on the Intersection of Technology and Romance

Technological advancements have also altered physical touch and closeness. Virtual reality and other technologies have allowed people to feel physical contact and familiarity in a digital setting. This might be a promising breakthrough, but it has some potential downsides. 

Experts are concerned that people's growing dependence on technology for intimacy may lead to less time spent communicating face-to-face and less emphasis on physical contact, both of which are important for maintaining good relationships.

In conclusion, technological advancements have significantly affected the quality of interpersonal connections and the exchange of information. Even though technology has made it simpler to maintain personal relationships, it has chilled interpersonal interactions between people. 

Keeping tabs on how technology is changing our lives and making adjustments as necessary is essential as we move forward. Boundaries and prioritizing in-person conversation and physical touch in close relationships may help reduce the harm it causes.

The Security and Privacy Implications of Increased Technology Use and Data Collection

The fast development of technology over the past few decades has made its way into every aspect of our life. Technology has improved many facets of our life, from communication to commerce. However, significant privacy and security problems have emerged due to the broad adoption of technology. In this essay, we'll look at how the widespread use of technological solutions and the subsequent explosion in collected data affects our right to privacy and security.

Data Mining and Privacy Concerns

Risk of Cyber Attacks and Data Loss

The Widespread Use of Encryption and Other Safety Mechanisms

The Privacy and Security of the Future in a Globalized Information Age

Obtaining and Using Individual Information

The acquisition and use of private information is a significant cause for privacy alarm in the digital age. Data about their customers' online habits, interests, and personal information is a valuable commodity for many internet firms. Besides tailored advertising, this information may be used for other, less desirable things like identity theft or cyber assaults.

Moreover, many individuals need to be made aware of what data is being gathered from them or how it is being utilized because of the lack of transparency around gathering personal information. Privacy and data security have become increasingly contentious as a result.

Data breaches and other forms of cyber-attack pose a severe risk.

The risk of cyber assaults and data breaches is another big issue of worry. More people are using more devices, which means more opportunities for cybercriminals to steal private information like credit card numbers and other identifying data. This may cause monetary damages and harm one's reputation or identity.

Many high-profile data breaches have occurred in recent years, exposing the personal information of millions of individuals and raising serious concerns about the safety of this information. Companies and governments have responded to this problem by adopting new security methods like encryption and multi-factor authentication.

Many businesses now use encryption and other security measures to protect themselves from cybercriminals and data thieves. Encryption keeps sensitive information hidden by encoding it so that only those possessing the corresponding key can decipher it. This prevents private information like bank account numbers or social security numbers from falling into the wrong hands.

Firewalls, virus scanners, and two-factor authentication are all additional security precautions that may be used with encryption. While these safeguards do much to stave against cyber assaults, they are not entirely impregnable, and data breaches are still possible.

The Future of Privacy and Security in a Technologically Advanced World

There's little doubt that concerns about privacy and security will persist even as technology improves. There must be strict safeguards to secure people's private information as more and more of it is transferred and kept digitally. To achieve this goal, it may be necessary to implement novel technologies and heightened levels of protection and to revise the rules and regulations regulating the collection and storage of private information.

Individuals and businesses are understandably concerned about the security and privacy consequences of widespread technological use and data collecting. There are numerous obstacles to overcome in a society where technology plays an increasingly important role, from acquiring and using personal data to the risk of cyber-attacks and data breaches. Companies and governments must keep spending money on security measures and working to educate people about the significance of privacy and security if personal data is to remain safe.

In conclusion, technology has profoundly impacted virtually every aspect of our lives, including society and culture, ethics, work, education, personal relationships, and security and privacy. The rise of artificial intelligence and machine learning has presented new ethical considerations, while automation is transforming the future of work. 

In education, technology has revolutionized the way we learn and access information. At the same time, our dependence on technology has brought new challenges in terms of personal relationships, communication, security, and privacy.

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Politics and privacy, private-sector influence and big tech, state competition and conflict, author biography, how is technology changing the world, and how should the world change technology.

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Josephine Wolff; How Is Technology Changing the World, and How Should the World Change Technology?. Global Perspectives 1 February 2021; 2 (1): 27353. doi: https://doi.org/10.1525/gp.2021.27353

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Technologies are becoming increasingly complicated and increasingly interconnected. Cars, airplanes, medical devices, financial transactions, and electricity systems all rely on more computer software than they ever have before, making them seem both harder to understand and, in some cases, harder to control. Government and corporate surveillance of individuals and information processing relies largely on digital technologies and artificial intelligence, and therefore involves less human-to-human contact than ever before and more opportunities for biases to be embedded and codified in our technological systems in ways we may not even be able to identify or recognize. Bioengineering advances are opening up new terrain for challenging philosophical, political, and economic questions regarding human-natural relations. Additionally, the management of these large and small devices and systems is increasingly done through the cloud, so that control over them is both very remote and removed from direct human or social control. The study of how to make technologies like artificial intelligence or the Internet of Things “explainable” has become its own area of research because it is so difficult to understand how they work or what is at fault when something goes wrong (Gunning and Aha 2019) .

This growing complexity makes it more difficult than ever—and more imperative than ever—for scholars to probe how technological advancements are altering life around the world in both positive and negative ways and what social, political, and legal tools are needed to help shape the development and design of technology in beneficial directions. This can seem like an impossible task in light of the rapid pace of technological change and the sense that its continued advancement is inevitable, but many countries around the world are only just beginning to take significant steps toward regulating computer technologies and are still in the process of radically rethinking the rules governing global data flows and exchange of technology across borders.

These are exciting times not just for technological development but also for technology policy—our technologies may be more advanced and complicated than ever but so, too, are our understandings of how they can best be leveraged, protected, and even constrained. The structures of technological systems as determined largely by government and institutional policies and those structures have tremendous implications for social organization and agency, ranging from open source, open systems that are highly distributed and decentralized, to those that are tightly controlled and closed, structured according to stricter and more hierarchical models. And just as our understanding of the governance of technology is developing in new and interesting ways, so, too, is our understanding of the social, cultural, environmental, and political dimensions of emerging technologies. We are realizing both the challenges and the importance of mapping out the full range of ways that technology is changing our society, what we want those changes to look like, and what tools we have to try to influence and guide those shifts.

Technology can be a source of tremendous optimism. It can help overcome some of the greatest challenges our society faces, including climate change, famine, and disease. For those who believe in the power of innovation and the promise of creative destruction to advance economic development and lead to better quality of life, technology is a vital economic driver (Schumpeter 1942) . But it can also be a tool of tremendous fear and oppression, embedding biases in automated decision-making processes and information-processing algorithms, exacerbating economic and social inequalities within and between countries to a staggering degree, or creating new weapons and avenues for attack unlike any we have had to face in the past. Scholars have even contended that the emergence of the term technology in the nineteenth and twentieth centuries marked a shift from viewing individual pieces of machinery as a means to achieving political and social progress to the more dangerous, or hazardous, view that larger-scale, more complex technological systems were a semiautonomous form of progress in and of themselves (Marx 2010) . More recently, technologists have sharply criticized what they view as a wave of new Luddites, people intent on slowing the development of technology and turning back the clock on innovation as a means of mitigating the societal impacts of technological change (Marlowe 1970) .

At the heart of fights over new technologies and their resulting global changes are often two conflicting visions of technology: a fundamentally optimistic one that believes humans use it as a tool to achieve greater goals, and a fundamentally pessimistic one that holds that technological systems have reached a point beyond our control. Technology philosophers have argued that neither of these views is wholly accurate and that a purely optimistic or pessimistic view of technology is insufficient to capture the nuances and complexity of our relationship to technology (Oberdiek and Tiles 1995) . Understanding technology and how we can make better decisions about designing, deploying, and refining it requires capturing that nuance and complexity through in-depth analysis of the impacts of different technological advancements and the ways they have played out in all their complicated and controversial messiness across the world.

These impacts are often unpredictable as technologies are adopted in new contexts and come to be used in ways that sometimes diverge significantly from the use cases envisioned by their designers. The internet, designed to help transmit information between computer networks, became a crucial vehicle for commerce, introducing unexpected avenues for crime and financial fraud. Social media platforms like Facebook and Twitter, designed to connect friends and families through sharing photographs and life updates, became focal points of election controversies and political influence. Cryptocurrencies, originally intended as a means of decentralized digital cash, have become a significant environmental hazard as more and more computing resources are devoted to mining these forms of virtual money. One of the crucial challenges in this area is therefore recognizing, documenting, and even anticipating some of these unexpected consequences and providing mechanisms to technologists for how to think through the impacts of their work, as well as possible other paths to different outcomes (Verbeek 2006) . And just as technological innovations can cause unexpected harm, they can also bring about extraordinary benefits—new vaccines and medicines to address global pandemics and save thousands of lives, new sources of energy that can drastically reduce emissions and help combat climate change, new modes of education that can reach people who would otherwise have no access to schooling. Regulating technology therefore requires a careful balance of mitigating risks without overly restricting potentially beneficial innovations.

Nations around the world have taken very different approaches to governing emerging technologies and have adopted a range of different technologies themselves in pursuit of more modern governance structures and processes (Braman 2009) . In Europe, the precautionary principle has guided much more anticipatory regulation aimed at addressing the risks presented by technologies even before they are fully realized. For instance, the European Union’s General Data Protection Regulation focuses on the responsibilities of data controllers and processors to provide individuals with access to their data and information about how that data is being used not just as a means of addressing existing security and privacy threats, such as data breaches, but also to protect against future developments and uses of that data for artificial intelligence and automated decision-making purposes. In Germany, Technische Überwachungsvereine, or TÜVs, perform regular tests and inspections of technological systems to assess and minimize risks over time, as the tech landscape evolves. In the United States, by contrast, there is much greater reliance on litigation and liability regimes to address safety and security failings after-the-fact. These different approaches reflect not just the different legal and regulatory mechanisms and philosophies of different nations but also the different ways those nations prioritize rapid development of the technology industry versus safety, security, and individual control. Typically, governance innovations move much more slowly than technological innovations, and regulations can lag years, or even decades, behind the technologies they aim to govern.

In addition to this varied set of national regulatory approaches, a variety of international and nongovernmental organizations also contribute to the process of developing standards, rules, and norms for new technologies, including the International Organization for Standardization­ and the International Telecommunication Union. These multilateral and NGO actors play an especially important role in trying to define appropriate boundaries for the use of new technologies by governments as instruments of control for the state.

At the same time that policymakers are under scrutiny both for their decisions about how to regulate technology as well as their decisions about how and when to adopt technologies like facial recognition themselves, technology firms and designers have also come under increasing criticism. Growing recognition that the design of technologies can have far-reaching social and political implications means that there is more pressure on technologists to take into consideration the consequences of their decisions early on in the design process (Vincenti 1993; Winner 1980) . The question of how technologists should incorporate these social dimensions into their design and development processes is an old one, and debate on these issues dates back to the 1970s, but it remains an urgent and often overlooked part of the puzzle because so many of the supposedly systematic mechanisms for assessing the impacts of new technologies in both the private and public sectors are primarily bureaucratic, symbolic processes rather than carrying any real weight or influence.

Technologists are often ill-equipped or unwilling to respond to the sorts of social problems that their creations have—often unwittingly—exacerbated, and instead point to governments and lawmakers to address those problems (Zuckerberg 2019) . But governments often have few incentives to engage in this area. This is because setting clear standards and rules for an ever-evolving technological landscape can be extremely challenging, because enforcement of those rules can be a significant undertaking requiring considerable expertise, and because the tech sector is a major source of jobs and revenue for many countries that may fear losing those benefits if they constrain companies too much. This indicates not just a need for clearer incentives and better policies for both private- and public-sector entities but also a need for new mechanisms whereby the technology development and design process can be influenced and assessed by people with a wider range of experiences and expertise. If we want technologies to be designed with an eye to their impacts, who is responsible for predicting, measuring, and mitigating those impacts throughout the design process? Involving policymakers in that process in a more meaningful way will also require training them to have the analytic and technical capacity to more fully engage with technologists and understand more fully the implications of their decisions.

At the same time that tech companies seem unwilling or unable to rein in their creations, many also fear they wield too much power, in some cases all but replacing governments and international organizations in their ability to make decisions that affect millions of people worldwide and control access to information, platforms, and audiences (Kilovaty 2020) . Regulators around the world have begun considering whether some of these companies have become so powerful that they violate the tenets of antitrust laws, but it can be difficult for governments to identify exactly what those violations are, especially in the context of an industry where the largest players often provide their customers with free services. And the platforms and services developed by tech companies are often wielded most powerfully and dangerously not directly by their private-sector creators and operators but instead by states themselves for widespread misinformation campaigns that serve political purposes (Nye 2018) .

Since the largest private entities in the tech sector operate in many countries, they are often better poised to implement global changes to the technological ecosystem than individual states or regulatory bodies, creating new challenges to existing governance structures and hierarchies. Just as it can be challenging to provide oversight for government use of technologies, so, too, oversight of the biggest tech companies, which have more resources, reach, and power than many nations, can prove to be a daunting task. The rise of network forms of organization and the growing gig economy have added to these challenges, making it even harder for regulators to fully address the breadth of these companies’ operations (Powell 1990) . The private-public partnerships that have emerged around energy, transportation, medical, and cyber technologies further complicate this picture, blurring the line between the public and private sectors and raising critical questions about the role of each in providing critical infrastructure, health care, and security. How can and should private tech companies operating in these different sectors be governed, and what types of influence do they exert over regulators? How feasible are different policy proposals aimed at technological innovation, and what potential unintended consequences might they have?

Conflict between countries has also spilled over significantly into the private sector in recent years, most notably in the case of tensions between the United States and China over which technologies developed in each country will be permitted by the other and which will be purchased by other customers, outside those two countries. Countries competing to develop the best technology is not a new phenomenon, but the current conflicts have major international ramifications and will influence the infrastructure that is installed and used around the world for years to come. Untangling the different factors that feed into these tussles as well as whom they benefit and whom they leave at a disadvantage is crucial for understanding how governments can most effectively foster technological innovation and invention domestically as well as the global consequences of those efforts. As much of the world is forced to choose between buying technology from the United States or from China, how should we understand the long-term impacts of those choices and the options available to people in countries without robust domestic tech industries? Does the global spread of technologies help fuel further innovation in countries with smaller tech markets, or does it reinforce the dominance of the states that are already most prominent in this sector? How can research universities maintain global collaborations and research communities in light of these national competitions, and what role does government research and development spending play in fostering innovation within its own borders and worldwide? How should intellectual property protections evolve to meet the demands of the technology industry, and how can those protections be enforced globally?

These conflicts between countries sometimes appear to challenge the feasibility of truly global technologies and networks that operate across all countries through standardized protocols and design features. Organizations like the International Organization for Standardization, the World Intellectual Property Organization, the United Nations Industrial Development Organization, and many others have tried to harmonize these policies and protocols across different countries for years, but have met with limited success when it comes to resolving the issues of greatest tension and disagreement among nations. For technology to operate in a global environment, there is a need for a much greater degree of coordination among countries and the development of common standards and norms, but governments continue to struggle to agree not just on those norms themselves but even the appropriate venue and processes for developing them. Without greater global cooperation, is it possible to maintain a global network like the internet or to promote the spread of new technologies around the world to address challenges of sustainability? What might help incentivize that cooperation moving forward, and what could new structures and process for governance of global technologies look like? Why has the tech industry’s self-regulation culture persisted? Do the same traditional drivers for public policy, such as politics of harmonization and path dependency in policy-making, still sufficiently explain policy outcomes in this space? As new technologies and their applications spread across the globe in uneven ways, how and when do they create forces of change from unexpected places?

These are some of the questions that we hope to address in the Technology and Global Change section through articles that tackle new dimensions of the global landscape of designing, developing, deploying, and assessing new technologies to address major challenges the world faces. Understanding these processes requires synthesizing knowledge from a range of different fields, including sociology, political science, economics, and history, as well as technical fields such as engineering, climate science, and computer science. A crucial part of understanding how technology has created global change and, in turn, how global changes have influenced the development of new technologies is understanding the technologies themselves in all their richness and complexity—how they work, the limits of what they can do, what they were designed to do, how they are actually used. Just as technologies themselves are becoming more complicated, so are their embeddings and relationships to the larger social, political, and legal contexts in which they exist. Scholars across all disciplines are encouraged to join us in untangling those complexities.

Josephine Wolff is an associate professor of cybersecurity policy at the Fletcher School of Law and Diplomacy at Tufts University. Her book You’ll See This Message When It Is Too Late: The Legal and Economic Aftermath of Cybersecurity Breaches was published by MIT Press in 2018.

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Essay on Technology – A Boon or Bane for Students

500+ words essay on technology for students.

In this essay on technology, we are going to discuss what technology is, what are its uses, and also what technology can do? First of all, technology refers to the use of technical and scientific knowledge to create, monitor, and design machinery. Also, technology helps in making other goods that aid mankind.

Essay on Technology – A Boon or Bane?

Experts are debating on this topic for years. Also, the technology covered a long way to make human life easier but the negative aspect of it can’t be ignored. Over the years technological advancement has caused a severe rise in pollution . Also, pollution has become a major cause of many health issues. Besides, it has cut off people from society rather than connecting them. Above all, it has taken away many jobs from the workers class.

Essay on technology

Familiarity between Technology and Science

As they are completely different fields but they are interdependent on each other. Also, it is due to science contribution we can create new innovation and build new technological tools. Apart from that, the research conducted in laboratories contributes a lot to the development of technologies. On the other hand, technology extends the agenda of science.

Vital Part of our Life

Regularly evolving technology has become an important part of our lives. Also, newer technologies are taking the market by storm and the people are getting used to them in no time. Above all, technological advancement has led to the growth and development of nations.

Negative Aspect of Technology

Although technology is a good thing, everything has two sides. Technology also has two sides one is good and the other is bad. Here are some negative aspects of technology that we are going to discuss.

Get the huge list of more than 500 Essay Topics and Ideas

With new technology the industrialization increases which give birth to many pollutions like air, water, soil, and noise. Also, they cause many health-related issues in animals, birds, and human beings.

Exhaustion of Natural Resources

New technology requires new resources for which the balance is disturbed. Eventually, this will lead to over-exploitation of natural resources which ultimately disturbs the balance of nature.

Unemployment

A single machine can replace many workers. Also, machines can do work at a constant pace for several hours or days without stopping. Due to this, many workers lost their job which ultimately increases unemployment .

Types of Technology

Generally, we judge technology on the same scale but in reality, technology is divided into various types. This includes information technology, industrial technology , architectural technology, creative technology and many more. Let’s discuss these technologies in brief.

Industrial Technology

This technology organizes engineering and manufacturing technology for the manufacturing of machines. Also, this makes the production process easier and convenient.

Creative Technology

This process includes art, advertising, and product design which are made with the help of software. Also, it comprises of 3D printers , virtual reality, computer graphics, and other wearable technologies.

Information Technology

This technology involves the use of telecommunication and computer to send, receive and store information. Internet is the best example of Information technology.

essay about latest technology

FAQs on Essay on Technology

Q.1 What is Information technology?

A –  It is a form of technology that uses telecommunication and computer systems for study. Also, they send, retrieve, and store data.

Q.2 Is technology harmful to humans?

 A – No, technology is not harmful to human beings until it is used properly. But, misuses of technology can be harmful and deadly.

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essay about latest technology

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These are the top 10 emerging technologies of 2023: Here's how they can impact the world

The 'Top 10 Emerging Technologies of 2023' report lists this year's most impactful emerging technologies.

The 'Top 10 Emerging Technologies of 2023' report lists this year's most impactful emerging technologies. Image:  Midjourney, Studio Miko

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  • The World Economic Forum's newly-launched ' Top 10 Emerging Technologies of 2023 ' report lists this year's most impactful emerging technologies.
  • The Top 10 list includes environmental innovations, such as sustainable aviation fuels and wearable plant sensors.
  • Other emerging technologies range from innovations harnessing the power of AI to reengineering molecular biology.

Technology is a relentless disruptor. It changes the context for how we live, work and play, redefines businesses and industries, and offers unprecedented solutions for addressing complex planetary and societal challenges. But in a quick-changing world where ideas come and go, what emerging technologies should raise to the top of the agenda for decision-makers, entrepreneurs and citizen in the years to come? The World Economic Forum’s ' Top 10 Emerging Technologies of 2023 ' Report, in collaboration with Frontiers , brings together the perspectives of over 90 academics, industry leaders and futurists from 20 countries around the world, to discover the technologies most likely to impact people and the planet in the next three to five years.

From sustainable solutions that help combat climate change to step-change generative AI models, here are the top 10 emerging technologies most likely to improve our future lives.

Combatting the climate and nature crises

Sustainable aviation fuel.

The aviation industry generates between 2-3% of global CO2 emissions, but all regions of the world are set to see big increases by 2050. Unlike many other industries, the weight-to-power ratio of batteries makes electrification a challenge. That’s where sustainable aviation fuel (SAF) comes in. Synthetic fuels are made from biological sources like biomass or non-biological sources like CO2, and can be used with existing aviation infrastructure and equipment. Today, SAFs meet around 1% of aviation industry fuel demand, but this must increase to 13-15% by 2040 to help the industry reach net-zero emissions by 2050, says the report.

Sustainable aviation fuel Moving the aviation industry towards net-zero carbon emissions.

Wearable plant sensors

Global food production will need to increase by 70% by 2050 to feed a growing world population, according to the United Nations Food and Agriculture Organization. Crop monitoring is a key part of achieving this goal. Traditional soil testing and visual inspections of crops are expensive and time-consuming, giving rise to monitoring using low-resolution satellite data and later sensor-equipped drones and tractors.

Wearable plant sensors: Revolutionizing agricultural data collection to feed the world

However, micro-sized needle sensors embedded in individual plants could harvest a wealth of data to improve plant health and increase agricultural productivity, says the report. These devices monitor temperature, humidity, moisture and nutrient levels to help optimize crop yields, reduce water and fertilizer use and detect early signs of disease.

The Forum’s Artificial Intelligence for Agriculture Innovation (AI4AI) initiative aims to transform the agriculture sector using AI and other cutting-edge technologies.

Led by the Forum’s Centre for the Fourth Industrial Revolution (C4IR) in India, the initiative has already helped more than 7000 chilli farmers increase their yields and reduce costs.

C4IR India is sharing its learnings with other centres in the C4IR Global Network, including Saudi Arabia, South Africa and Colombia.

Sustainable computing

Exponential growth in AI, cloud computing and other technologies requires bigger, more powerful and more plentiful data centre capacity. Data centres consume 1% of total global electricity production, but powering our increasingly data-hungry digital society means this is set to increase. Several technologies are emerging, aimed at making the goal of net-zero-energy data centres a reality, says the report. These include using water or dielectric liquid cooling to dissipate heat, alongside technologies that repurpose excess heat to warm buildings, heat water or for industrial processes.

Also, AI-enabled systems can analyze and optimize energy use in real-time, maximizing efficiency and performance – reducing energy consumption by as much as 40% at Google’s data centres. And making data processing and storage infrastructure modular and demand-based means systems like cloud and edge computing can be distributed across multiple devices, systems and locations to optimize energy use.

Have you read?

How emerging tech could mitigate emerging human crises, ‘tech for good’ had a very good year in 2022. here are 6 companies that led the way, how can technology help in a holistic approach to ensure inclusion, powered by artificial intelligence, generative ai.

Generative artificial intelligence models are fast becoming a part of everyday life. The models use complex algorithms to recognize and utilize patterns in data. The recent introduction of AI-based language models, like ChatGPT, has already impacted life at schools, universities and workplaces, but if used properly, such tools can enhance productivity and creative output. However, Gen AI technology goes beyond producing written texts, images and sound, with applications including drug design to target specific medical conditions, architecture and engineering. NASA engineers are developing AI systems to create lightweight space instruments, reducing development time and improving structural performance, for example.

Generative artificial intelligence Expanding the boundaries of human endeavour.

AI in healthcare

Emerging AI-based technologies and machine learning tools could help the global healthcare sector both anticipate and better prepare for future pandemics or other challenges.

Such systems could help increase the efficiency of national and global healthcare systems to tackle health crises and improve access to healthcare. Innovations like this could also reduce treatment waiting times, by aligning treatment needs with available medical resources and increasing medical outreach, says the report.

The benefits of AI in healthcare could be magnified in developing countries, which often lack sufficient infrastructure and staff to provide widespread access to healthcare services.

How is the World Economic Forum creating guardrails for Artificial Intelligence?

In response to the uncertainties surrounding generative AI and the need for robust AI governance frameworks to ensure responsible and beneficial outcomes for all, the Forum’s Centre for the Fourth Industrial Revolution (C4IR) has launched the AI Governance Alliance .

The Alliance will unite industry leaders, governments, academic institutions, and civil society organizations to champion responsible global design and release of transparent and inclusive AI systems.

Emerging Technologies in Health

Metaverse for mental health.

There’s been a lot of hype surrounding the metaverse, and we are a long way from this concept becoming a reality. That said, the virtual world can create shared digital spaces where people can meet each other socially and professionally. Virtual environments open up new opportunities to provide mental health treatments, covering a range of telemedicine applications, including prevention, diagnostics, therapy, education and research. Several gaming platforms have been established to help people with conditions like depression and anxiety or encourage mindfulness and meditation, for example.

Designer phages

Human, animal and plant microbiomes are home to vast communities of microbes that are crucial to each organism’s health. Recent advances in bioengineering allow scientists to engineer microbiomes to increase human and animal well-being and agricultural productivity. The technology centres around phages, which are viruses that identify and infect specific types of bacteria with genetic information, says the report. Bioengineers can reprogramme a phage’s genetic information so it transmits genetic instructions to bacteria to change how it functions, enabling microbiome-associated diseases to be targeted and treated.

Spatial omics

The human body is a collection of around 37.2 trillion cells that work together. To understand how microbiological processes like this work, scientists have developed a method called spatial omics, which combines advanced imaging techniques with sophisticated DNA sequencing processes to map biological processes at the molecular level. Using spatial omics, scientists can observe intricate details of cell architecture and biological processes that were previously unobservable, according to the report.

Spatial omics Molecular-level mapping of biological processes to unlock life’s mysteries.

Engineering

Flexible batteries.

As electronic devices become ever more flexible, a more pliable type of battery is emerging to power them. Flexible batteries are made of lightweight materials that can be twisted, stretched, bent into shape and even coated onto carbon-based materials like carbon fibre or cloth. These rechargeable, bendable batteries are increasingly energizing growing markets – like roll-up computer screens, smart clothing and wearable electronics, including healthcare devices and biometric sensors, says the report.

Flexible neural electronics

Brain-machine interfaces (BMI) allow direct communication between the brain and external computers. So far, the technology has been based on rigid electronics and limited by the mechanical and geometrical mismatch with brain tissue. But breakthroughs in flexible electronics and more biocompatible materials mean a less invasive experience for patients.

BMI-type technologies are already in use to treat patients with epilepsy and with prosthetic limbs that use electrodes to connect with the nervous system.

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World Economic Forum articles may be republished in accordance with the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, and in accordance with our Terms of Use.

The views expressed in this article are those of the author alone and not the World Economic Forum.

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Thinking Through the Ethics of New Tech…Before There’s a Problem

  • Beena Ammanath

essay about latest technology

Historically, it’s been a matter of trial and error. There’s a better way.

There’s a familiar pattern when a new technology is introduced: It grows rapidly, comes to permeate our lives, and only then does society begin to see and address the problems it creates. But is it possible to head off possible problems? While companies can’t predict the future, they can adopt a sound framework that will help them prepare for and respond to unexpected impacts. First, when rolling out new tech, it’s vital to pause and brainstorm potential risks, consider negative outcomes, and imagine unintended consequences. Second, it can also be clarifying to ask, early on, who would be accountable if an organization has to answer for the unintended or negative consequences of its new technology, whether that’s testifying to Congress, appearing in court, or answering questions from the media. Third, appoint a chief technology ethics officer.

We all want the technology in our lives to fulfill its promise — to delight us more than it scares us, to help much more than it harms. We also know that every new technology needs to earn our trust. Too often the pattern goes like this: A technology is introduced, grows rapidly, comes to permeate our lives, and only then does society begin to see and address any problems it might create.

essay about latest technology

  • BA Beena Ammanath is the Executive Director of the global Deloitte AI Institute, author of the book “Trustworthy AI,” founder of the non-profit Humans For AI, and also leads Trustworthy and Ethical Tech for Deloitte. She is an award-winning senior executive with extensive global experience in AI and digital transformation, spanning across e-commerce, finance, marketing, telecom, retail, software products, services and industrial domains with companies such as HPE, GE, Thomson Reuters, British Telecom, Bank of America, and e*trade.

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Tech at the edge: Trends reshaping the future of IT and business

It is easy to become numb to the onslaught of new technologies hitting the market, each with its own promise of changing (more often “revolutionizing”) the business world. But our analysis of some of the more meaningful tech trends lays out a convincing case that something significant is happening. 1 Michael Chui, Roger Roberts, and Lareina Yee, “ McKinsey Technology Trends Outlook 2022 ,” McKinsey, August 24, 2022.

These tech trends are generally accelerating the primary characteristics that have defined the digital era: granularity, speed, and scale. But it’s the magnitude of these changes—in computing power, bandwidth, and analytical sophistication—that is opening the door to new innovations, businesses, and business models.

The emergence of cloud and 5G , for example, exponentially increases compute power and network speeds that can enable greater innovation. Developments in the metaverse of augmented and virtual reality open the doors to virtual R&D via digital twins , for example, and immersive learning. Advances in AI, machine learning, and software 2.0 (machine-written code) bring a range of new services and products, from autonomous vehicles to connected homes, well within reach.

Much ink has been spilled on identifying tech trends, but less attention has been paid to the implications of those changes. To help understand how management will need to adapt in the face of these technology trends in the next three to five years, we spoke to business leaders and leading thinkers on the topic. We weren’t looking for prognostications; we wanted to explore realistic scenarios, their implications, and what senior executives might do to get ready.

The discussions pinpointed some broad, interrelated shifts, such as how technology’s radically increasing power is exerting a centrifugal force on the organization, pushing innovation to expert networks at the edges of the company; how the pace and proliferation of these innovations calls for radical new approaches to continuous learning built around skills deployed at points of need; how these democratizing forces mean that IT can no longer act as a centralized controller of technology deployment and operations but instead needs to become a master enabler and influencer; and how these new technologies are creating more data about, and touchpoints with, customers, which is reshaping the boundaries of trust and requiring a much broader understanding of a company’s security responsibilities.

1. Innovation at the edge

Key tech trends.

We estimate that 70 percent of companies will employ hybrid or multicloud management technologies, tools, and processes . 2 “ The top trends in tech ,” McKinsey, June 15, 2021. At the same time, 5G will deliver network speeds that are about ten times faster than current speeds on 4G LTE networks, 3 Irina Ivanova, “What consumers need to know about this week’s AT&T–Verizon 5G rollout,” CBS News, January 20, 2022. with expectations of speeds that are up to 100 times faster with 40 times faster latency. 4 “5G speed: 5G vs. 4G performance compared,” Tom’s Guide, June 1, 2021. By 2024, more than 50 percent of user touches will be augmented by AI-driven speech, written word, or computer-vision algorithms , 5 “ The top trends in tech ,” June 15, 2021. while global data creation is projected to grow to more than 180 zettabytes by 2025, up from 64.2 zettabytes in 2020. 6 “Amount of data created, consumed, and stored 2010–2025,” Statista Research Department, May 23, 2022. The low-code development platform market‘s compound annual growth rate (CAGR) is projected at about 30 percent through 2030. 7 “Global $187 billion low-code development platform market to 2030,” GlobeNewswire, November 10, 2020.

Shift: Innovation develops around personal networks of experts at the porous edge of the organization and is supported by capabilities that scale the benefits across the business.

These technologies promise access to virtually unlimited compute power and massive data sets, as well as a huge leap in bandwidth at low cost, making it cheaper and easier to test, launch, and scale innovations quickly. The resulting acceleration in innovation will mean that companies can expect more disruptions from more sources. Centralized strategic and innovation functions cannot hope to keep pace on their own. Companies will need to be much more involved in networks outside their organizations to spot, invest in, and even acquire promising opportunities.

Corporate venture-capital (VC) funds with centralized teams have looked to find and fund innovation, but their track record has been spotty, often because the teams lack the requisite skills and are simply too far removed from the constantly evolving needs of individual business units. Instead, companies will need to figure out how to tap their front lines, particularly business domain experts and technologists, to enable them to act, in effect, as the business’s VC arm. That’s because the people who are writing code and building solutions are often well plugged into strong external networks in their fields and have the expertise to evaluate new developments. One pharma company, for example, taps its own expert researchers in various fields, such as gene expression, who know well the people outside the company who are leaders in the field.

While companies will need to create incentives and opportunities for engineers to build up and engage with their networks, the key focus must be on empowering teams so they can spend their allocated budget as they see fit—for example, experimenting and failing without penalty (within boundaries) and deciding on technologies to meet their goals (within prescribed guidelines).

The IT organization of the future can play an important role in building up a scaling capability to make that innovation work for the business, something that has traditionally been a challenge. Individual developers or small teams working fast don’t tend to naturally think about how to scale an application. That issue is likely to be exacerbated as nontechnical users working in pockets across organizations use low-code/no-code (LC/NC) applications to design and build programs with point-and-click or pull-down-menu interfaces.

One pharma company has taken this idea to heart by giving local business units the flexibility to run with a nonstandard idea when it has proven to be better than what the company is already doing. In return for that flexibility, the business unit must commit to helping the rest of the organization use the new idea, and IT builds it into the company’s standards.

In considering how this scaling capability might work, companies could, for example, assign advanced developers to “productize” applications by refactoring code so they can scale. IT leadership can provide tools and platforms, reusable-code libraries that are easily accessible, and flexible, standards-based architecture so that innovations can be scaled across the business more easily.

Questions for leadership

  • What incentives will best encourage engineers and domain experts to develop, maintain, and tap into their networks?
  • What processes are in place for tracking and managing VC activity at the edge?
  • What capabilities do you need to identify innovation opportunities and “industrialize” the best ones so they can be shared across the organization?

For more on how to empower workers at the edge, see “ Tech companies innovate at the edge. Legacy companies can too ,” in Harvard Business Review.

Would you like to learn more about McKinsey Digital ?

2. a perpetual-learning culture.

Advances in AI, machine learning, robotics, and other technologies have increased the pace of change tenfold . By 2025, we estimate that 50 billion devices will be connected to the Industrial Internet of Things (IIoT), while 70 percent of manufacturers are expected to be using digital twins regularly (by 2022). 8 “ The top trends in tech ,” June 15, 2021. Some 70 percent of new applications will use LC/NC technologies by 2025, up from less than 25 percent in 2020. 9 “Gartner says cloud will be the centerpiece of new digital experiences,” Gartner, November 10, 2021. The global metaverse revenue opportunity could approach $800 billion in 2024, up from about $500 billion in 2020. 10 Bloomberg Intelligence, “Metaverse may be $800 billion market, next tech platform,” Bloomberg, December 1, 2021. This proliferation of technological innovations means we can expect to experience more progress in the next decade than in the past 100 years combined, according to entrepreneur and futurist Peter Diamandis. 11 Peter Diamandis and Steven Kotler, The Future Is Faster than You Think: How Converging Technologies Are Transforming Business, Industries, and Our Lives , New York: Simon & Schuster, 2020.

Shift: Tech literacy becomes core to every role, requiring learning to be continuous and built at the level of individual skills that are deployed at the point of need.

With the pace and proliferation of technologies pushing innovation to the edge of the organization, businesses need to be ready to incorporate the most promising options from across the front lines. This will create huge opportunities, but only for those companies that develop true tech intelligence through a perpetual-learning culture. The cornerstone of this effort includes training all levels of personnel, from “citizen developers” working with easy-to-use LC/NC tools or in entirely new environments such as the metaverse, to full-stack developers and engineers, who will need to continually evolve their skills to keep up with changing technologies. We’re already seeing situations where poorly trained employees use LC/NC to churn out suboptimal products.

While there will always be a need for more formalized paths for foundational learning, we anticipate an acceleration in the shift from teaching curricula periodically to continuous learning that can deliver varying technical skills across the entire organization. In practice, that will mean orienting employee development around delivering skills. This requires breaking down a capability into its smallest sets of composite skills. One large tech company, for example, created 146,000 skills data points for the 1,200 technical skills it was assessing.

The key point is that these skills “snippets”—such as a block of code or a video of a specific negotiating tactic—need to be integrated into the workflow so that they’re delivered when needed. This might be called a “LearnOps” approach, where learning is built into the operations. This integration mentality is established at Netflix, where data scientists partner directly with product managers, engineering teams, and other business units to design, execute, and learn from experiments. 12 Netflix Technology Blog , “Experimentation is a major focus of data science across Netflix,” blog entry by Martin Tingley et al., January 11, 2022.

As important as being able to deploy learning is building a learning culture by making continuous learning expected and easy to do. The way top engineers learn can be instructive. This is a community that is highly aware of the need to keep their skills up to date. They have ingrained habits of sharing code, and they gravitate to projects where they can learn. One advantage of using open source, for example, is the built-in community that constantly updates and reviews code. In the same spirit, we’re seeing companies budget extra time to allow people to try new tools or technologies when they’re building a product. Other companies are budgeting for “learning buffers” to allow for setbacks in product development that teams can learn from. 13 “ The big boost: How incumbents successfully scale their new businesses ,” McKinsey, August 27, 2020.

Netflix, which makes broad, open, and deliberate information sharing a core value, built the Netflix experimentation platform as an internal product that acts as a repository of solutions for future teams to reuse. It has a product manager and innovation road map, with the goal of making experimentation a simple and integrated part of the product life cycle. 14 Netflix Technology Blog , “Netflix: A culture of learning,” blog entry by Martin Tingley et al., January 25, 2022.

To support this kind of continuous learning and experimentation, companies will need to accept mistakes. The art will be in limiting the impact of potentially costly mistakes, such as the loss or misuse of customer data. IT will need to architect protocols, incentives, and systems to encourage good behaviors and reduce bad ones. Many companies are beginning to adopt practices such as automated testing to keep mistakes from happening in the first place ; creating spaces where mistakes won’t affect other applications or systems, such as isolation zones in cloud environments ; and building in resiliency protocols.

  • Do you have a list of the most important skills your business needs?
  • What is the minimum level of learning needed for advanced users of analytics and manipulators of data?
  • How do you track what people are learning and whether that learning is effective and translating into better performance?

3. IT as a service

It is estimated that the global cloud microservices platform market will generate $4.2 billion in revenue by 2028, up from $952 million in 2020. 15 Cloud microservice platform market report , Research Dive, November 2021. GitHub has more than 200 million code repositories and expects 100 million software developers by 2025. 16 Paul Krill, “GitHub expects more than 100 million software developers by 2025,” InfoWorld, December 3, 2020. Nearly 90 percent of developers already use APIs. 17 Christina Voskoglou, “APIs have taken over software development,” Nordic APIs, October 27, 2020. Software 2.0 creates new ways of writing software and reduces complexity. Software sourced by companies from cloud-service platforms, open repositories, and software as a service (SaaS) is growing at a CAGR of 27.5 percent from 2021 to 2028. 18 Software as a service (SaaS) market, 2021–2028 , Fortune Business Insights, January 2022.

Shift: IT becomes the enabler of product innovation by serving small, interoperable blocks of code.

When innovation is pushed to the edge and a perpetual-learning culture permeates an organization, the role of IT shifts dramatically. IT can’t support this dynamic environment by sticking to its traditional role as a controlling entity managing technology at the center. The premium will now be on IT’s ability to enable innovation, requiring a shift in its traditional role as protector of big tech assets to a purveyor of small blocks of code. The gold standard of IT effectiveness will be its ability to help people stitch together snippets of code into a useful product.

We are already seeing what that might look like. Employees at G&J Pepsi-Cola Bottlers with little to no experience at software development created an app that examines images of a store shelf to identify the number and type of bottles on it, then automatically restocks it based on historic trends. 19 Adam Burden, “Low code/no code could reshape business innovation,” VentureBeat, February 5, 2022. One pharmaceutical company grew its low-code platform base from eight users to 1,400 in just one year . Business users outside of IT are now building applications with thousands of monthly sessions. 20 Shivam Srivastava, Kartik Trehan, Dilip Wagle, and Jane Wang, “ Developer Velocity: How software excellence fuels business performance ,” McKinsey, April 20, 2020. Companies that empower “citizen developers” score 33 percent higher on innovation compared with bottom-quartile companies that don’t provide that level of support, according to a McKinsey survey. 21 Shivam Srivastava, Kartik Trehan, Dilip Wagle, and Jane Wang, “ Developer Velocity: How software excellence fuels business performance ,” McKinsey, April 20, 2020.

These developments point toward much more of a “buffet” approach to technology, where IT builds useful blocks of reusable code, sometimes assembles them into specific products, and makes them available through a user-friendly cataloging system for the business to use to create the products it needs. IT provides guiderails, such as API standards and directives on the environments in which the code might be most useful; protects the most sensitive information, such as customer data and financial records; and tracks their adoption. This tracking capability will become particularly crucial as bots, AI, algorithms, and APIs proliferate. Transparency isn’t sufficient. IT will need to make sense of all the activity through advanced tech performance and management capabilities and the development of new roles, such as data diagnosticians and bot managers.

This IT-as-a-service approach puts the product at the center of the operating model, requiring a commitment to organizing IT around product management . Some companies have been moving in this direction. But reaching the scale needed to support fast-paced and more diffuse innovation will require a deeper commitment to product owners, working with leaders in the business side of the house, to run teams with real P&L responsibility. Many organizations, from traditional enterprises to digital natives, have found that putting in place product leaders who set overall product and portfolio strategy, drive execution, and empower product owners to drive innovation aligned with business outcomes and P&L metrics can increase the return on the funding that flows to technology delivery and quicken the pace of innovation.

  • Do you have a vision for how the role of the IT organization will change to enable democratization of technology?
  • How will you elevate the role of the technology product manager, and do you have a road map for developing that role?
  • What systems will you need to put in place to manage and track the use, reuse, and performance of code?

A profile of a woman with her hand up to her chin in a thoughtful pose.  A galaxy bursting with light is superimposed over profile, centered over her mind.

McKinsey Technology Trends Outlook 2022

4. expanded trust boundaries.

It was estimated that almost 100 percent of biometrics-capable devices (such as smartphones) will be using biometrics for transactions by 2022. 22 “Usage of biometric technology in transactions with mobile devices worldwide 2016–2022”, Statista Research Department, June 13, 2022. The effectiveness of these technologies has advanced dramatically, with the best facial-identification algorithms having improved 50 times since 2014. 23 William Crumpler, “How accurate are facial recognition systems—and why does it matter?” Center for Strategies and International Studies (CSIS), April 14, 2020. These developments are contributing to profound unease in the relationship between technology and consumers of technology. The Pearson Institute and the Associated Press-NORC Center for Public Affairs Research shows that “about two-thirds of Americans are very or extremely concerned about hacking that involves their personal information, financial institutions, government agencies, or certain utilities.” 24 Chuck Brooks, “More alarming cybersecurity stats for 2021!” Forbes , October 24, 2021.

Shift: Trust expands to cover a broader array of stakeholder concerns and become an enterprise-wide responsibility.

These enormous shifts in technology power and capacity will create many more touchpoints with customers and an exponential wave of new data about customers. Even as IT’s role within the organization becomes more that of an enabler, the expanding digital landscape means that IT must broaden its trust capabilities around security, privacy, and cyber . To date, consumers have largely embraced the convenience that technology provides, from ordering a product online to adjusting the temperature in their homes remotely to monitoring their health through personal devices. In exchange for these conveniences, consumers have traditionally been willing to provide some personal information. But a steady undercurrent of privacy and trust concerns around these ever-more-sophisticated conveniences is raising the stakes on the broad topic of trust. Consumers are becoming more aware of their identity rights, making decisions based on values, and demanding the ethical use of data and responsible AI .

The most obvious concern is around cybersecurity , an ongoing issue that is already on the board-level agenda. But tech-driven trust issues are much broader and are driven by three characteristics. One is the sheer quantity of personal data, such as biometrics, that companies and governments collect, creating concerns about privacy and data misuse. The second is that personal security issues are becoming more pervasive in the physical world. Wired homes, connected cars, and the Internet of Medical Things, for example, are all vectors for attack that can affect people’s well-being. Third is the issue that advanced analytics seem too complex to be understood and controlled, leading to deep unease about people’s relationship with technology. This issue is driving the development of “ explainable AI ” and the movement to debias AI.

Adding to the complexity is the frequent need to manage and secure trust across an entire ecosystem of technologies. Take the wired home, for example. The proliferation of devices—think virtual assistants, security, communications, power management, and entertainment systems—means that a large group of providers will need to agree on standards for managing, in effect, an interconnected security net in the home.

These developments require a complex extension of the boundaries of trust. The significant advantages that many incumbents enjoy—existing relationships with customers and proprietary data—are at risk unless businesses rethink how they manage and nurture that trust. Companies need to consider putting identity and trust management at the core of their customer experience and business processes. That can happen effectively only when companies assign a dedicated leader with real power and board-level prioritization with enterprise-wide responsibility across the entire trust and security landscape. Given the tech underpinnings of this trust environment, IT will need to play a key role in monitoring and remediating, such as assessing the impact of new legislation on AI algorithms, tracking incidents, identifying the number and nature of high-risk data-processing activities and automated decisions, and—perhaps most important—monitoring consumer trust levels and the issues that affect them.

  • Who is responsible for the enterprise-wide trust and risk landscape?
  • How have you integrated your efforts around customer trust with overall cybersecurity processes?
  • What privacy, trust, and security processes are in place to manage the entire life cycle of your data?

It is inevitable that the pace of technological change will continue to accelerate. The successful technology leader of the future will not simply need to adopt new technologies but to build capabilities to absorb continuous change and make it a source of competitive advantage.

Steve Van Kuiken is a senior partner in McKinsey’s New Jersey office.

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Essay about New Technology and Its Impact

New technology essay introduction, irreversibility of a technological progress, education and new technologies, healthcare and new technologies, workplace and new technologies, new technology essay conclusion, reference list.

New technologies play an increasingly important role in human lives. Nowadays, it is hard to imagine everyday life without a computer, cell phone, iPod, the Internet, etc. All these innovations become a considerable part of social life and change the way people live, communicate, work, and relax. Technological progress cannot be stopped or replaced.

This fact has to be understood to provide society with better living and working conditions and appropriate social services. The current paper aims at assessing the impact of new technologies upon society in such spheres as education, healthcare, and working management.

The chosen spheres seem to be a kind of the basis of any society, and if the impact of new technologies in these fields will be evaluated, the impact of new technologies upon society may be understood as well.

Technologies shape modern society and perform the role of a survival tool that cannot be neglected: on the one hand, new technologies may easily destroy society within a short period of time, and on the other hand, innovations can help to overcome the challenges, and people should gain control over all technologies and never forget that they, the people, not the technologies, are the creators of the future.

Almost every sphere of life is in need of constant changes, inventions, and ideas. People should understand the level of their responsibility about the way of how new technologies are implemented. Luppicini (2012) admits that people treat technology as “a complex social system defined by a complex set of human-technological relations embedded in life and society” (p. xviii).

The system of improvements promoted by new technologies may simply shape and reshape society (Naughton 2010). Many experts are ready to argue concerning who or what should run the process. There are many factors that influence the perception of technological progress.

However, one fact is evident and cannot be neglected – new technologies will enter each person’s life one day, and society has to accept every single innovation to survive in such a rapidly developing world.

Several years ago, people could spend days and nights making conclusions, evaluating the information, thinking about something, or planning a talk. Nowadays, people prefer to surf the web and find answers within a short period of time, use their cell phones or Skype and talk to any person around the whole globe, address an online expert, and get a number of ideas in several minutes (Kiesler 2014).

On the one hand, such technical assistance is a perfect way to improve living and working conditions; on the other hand, such a variety of choices frightens a lot as people stop thinking but rely on some technological help. Society does not want to think but read the already given facts and use them in life.

People do not want to listen to those who are sitting nearby but prefer to ask those who are miles away, by means of Facebook or something like that. However, such dependence upon technologies is an independent decision of people. People have all the chances to make independent decisions, think, analyze, evaluate, etc. but they simply do not want to.

People learn society, its peculiarities, and development when they are at schools. Most of them meet new technologies during the educative process. The choice of the sphere of education and its relation to new technologies is evident.

New technologies promote the development of new learning opportunities. For example, “academic librarians, as facilitators of the research and information-retrieval process, need to apply the new information technologies to information literacy programs actively and train their users to use the technologies” (Kern 2011, p. 92).

One decade ago, many students had to find numerous books, spend many hours reading some general literature to find out an answer to one question, and be upset with their inabilities to achieve good results. Nowadays, students are free to ask for literary help and get it quickly and spend the rest of the time, analyzing the necessary portion of the material.

At the same time, such an opportunity may become an obstacle for society – students become not able to work hard and prefer to use the easiest ways in their educational process. Instead of making independent calculations, students use online calculators; instead of developing a powerful essay, students may buy them online; instead of introducing their own ideas on a topic, students like to read the already developed projects, etc.

Bush (2012) says that new technologies used for education help society to see how far people have not come yet. If students have sophisticated curators, they are lucky to learn how advantaged new technologies can be.

Unfortunately, there are many tutors who do not want to follow the order that is required in classrooms. Such tutors allow using cell phones in class, addressing the web to find an answer in a short period of time, and communicating with peers by means of all their devices.

Such an impact of new technologies upon society is bad indeed. However, if tutors prefer real-life communication, support the absence of all additional devices except those, which are required for a lesson, and promote students thinking, analyzing, and even making mistakes to get to the truth, new technologies cannot do any harm to society.

If the evaluation of the connection between the sphere of education and new technologies shows how society should treat technological improvements, the evaluation of technologies’ implementation to the sphere of healthcare may prove that the techno progress is of high importance. Many experts admit that current health care is poorly delivered in many small towns, villages, and even big cities (Cooper 2010).

People are not always able to get the required portion of help because of information shortage, poor technologies, or lack of experience. New technologies are able to change the way of how healthcare is delivered (Cooper, 2010). Society may benefit from the available opportunities considerably.

For example, people can make an appointment with a necessary doctor online instead of calling the hospital and listening that the line is busy. Doctors can learn a patient’s information if online databases are available and think about treatment quicker. Such an impact of technologies upon society seems to be the most crucial.

Experts admit that the human brain, as the most sensitive organ, can be under a terrible threat from the modern world because new technologies may spread throughout human heads and hearts fast (Greenfield 2013). The use of technologies may be beneficial for one person and harmful for another person at the same time.

Many people get used to searching for information online and forget about the importance of personal experience, professional points of view, and attention to the details. For example, a young lady who has some problems with her stomach may not address her therapist but rely on the information found on the Internet. She chooses a wrong diagnosis with the wrong treatment.

The results may vary, and some of them are not always good. This is why only professional doctors, educated nurses, and other appropriate experts are free to combine technologies and healthcare to achieve good results and provide society with quality services.

The way of how people are able to interpret new technologies’ implementation at workplaces may predetermine the quality of social life as well. Managers truly believe that technologies improve the process of communication between co-workers and workers and consumers considerably (Leonardi 2009).

They hope to provide workers with more time for other activities, facilitate the exchange of information process, or focus on other possible improvements. When society is free to choose services, ideas, activities, etc., they feel happier and more satisfied with the life given. Still, when managers use the same tactics for their workers, they are not always sure about the results of the required organizational change.

In the beginning, people are ready to demonstrate their dissatisfaction with the improvements offered instead of making an attempt and trying to accept the change. It is easier for society to follow an old order, familiar rules, and regular norms.

But society is not always able to notice that the earlier offered technologies have already spread and implemented within a short period of time. In other words, people are usually afraid of some changes at first or too lazy to accept something new. But, at the same time, they are too weak to resist the technological progress that is coming anyway and supported by a few people.

In general, the assessment of the impact of new technologies upon society helps to understand that people themselves are able to create the challenges that have to be overcome.

The evaluation of three different spheres of life (education, healthcare, and working management) and their dependence upon technological development shows that people are in need of some changes as well as they are under a threat of the outcomes of these changes all the time.

The paradox of relations between technologies and society is an ability to create the worst things from the best opportunities and vice versa. Even the best ideas may be harmful in the wrong hands; this is why society should be ready to discover, understand, and implement all new technologies in time and use them to survive, succeed, and enjoy this life.

Bush, T 2012, ‘ Exploring the future impact of technology on teaching and learning ’, The Guardian.

Cooper, G 2010, ‘Using technology to improve society’, The Guardian .

Greenfield, S 2013, ‘ Modern technology is changing the way our brains work, says neuroscientist ’, Mail Online .

Kern, MK 2011, ‘The impact of new technologies on current awareness tools in academic libraries’, Reference & User Services Quarterly , vol. 51, no. 2, pp.92-97.

Kiesler, S 2014, Culture of the Internet , Psychology Press, New York.

Leonardi, PM 2009, ‘Why do people reject new technologies and stymie organizational changes of which they are in favour? Exploring misalignments between social interactions and materiality’, Human Communication Research , vol. 35, pp. 407-441.

Luppicini, R 2012, Ethical impact of technological advancements and applications in society , Information Science Reference, Hershey.

Naughton, J 2010, ‘ The Internet: Is it changing the way we think? ’, The Guardian .

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IELTS Essays on Technology – Discussion and Opinion Essays

Kasturika Samanta

Updated On Feb 21, 2024

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IELTS Essays on Technology – Discussion and Opinion Essays

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Writing essays is a crucial component of any coursework because it forces you to do things like clarify and organise ideas and information, analyse sources, and employ critical judgement, it improves knowledge and aids in the learning process. At school or at college, every student is required to write essays.

Well-organized essays will help you score a good band in the IELTS examination. Proper planning is the key to write good essays. You need to give yourself at least 10 minutes to frame the content before you start writing . The essay should contain 4-5 paragraphs and should be of  250 words or more. You have to grasp the central idea from the topic and try to explain it.

Below are some of the recently appeared topics with the sample answers which you can refer to:

Do you think that technological advancement has brought more harm than good?

The twentieth century has seen a vast development in the field of science and technology. This improvement in technology has also raised the standard of living of the people. But it has caused a lot of trouble to the environment. We need to understand its advantages and disadvantages to decide whether it has actually benefitted society.

On one side, we can say that technology has become more beneficial to society,  by facilitating easy communication. It has also improved the economic condition and transport facilities. Organizations have gone online. People are also benefitted through recent technologies like smartphones, laptops and also other electronic appliances. There are applications on smartphones such as “WhatsApp” which has replaced emails. We are able to get a lot of information at the click of a button.

On the other side, technology has certain drawbacks as well. Social connect has become less. There is software that is used to hack the data and there is no privacy for an individual. In a recent study, it is found that the students are neglecting their studies and end up getting poor grades due to recent technologies.

To conclude, we can say that there are more problems due to technological advancements than benefits.

Analysis of the structure of the essay:

Some people argue that technological inventions, such as smartphones, are making people socially less interactive. Discuss both views.

In the current era, you can see people spending more time on smartphones rather than socializing. Wherever you go, you can see people putting their heads down looking into their smartphones and not bothering about what is going on around them. This has become a new trend. As there are a lot of features that are available in smartphones, an individual is not able to stay away from it even for a second. Some features of smartphones are just like the personal computer and they provide a high level of entertainment and can be carried along wherever we go. This essay helps others to understand how smartphone technology impacts society.

The main advantage of a smartphone is that it has made communication easier and quicker. Now you can speak to any of your friends or relatives, in any part of the world. Not only that, but they can also share personal messages, photos, videos through social media.

Along with the benefits, there are also some adverse effects of smartphone addiction on society. The children are not socially active. They sit inside four walls playing games on smartphones and have distanced themselves from society. Even, adults are busy chatting with their friends on social networking sites and have become socially inactive. Even get-togethers have become less. People like to chat on social media more than talking face to face. Even if there are get-togethers, people will be busy with their smartphones instead of interacting with each other. Parents nowadays are busy with smartphones and they fail to attend to their children. Hence the children will be left alone.

To conclude, we can say that smartphones along with its advantages, have also increased the social gap and kept us far from each other.

Many things that used to be done at home by hands are now being done by machines. Discuss.

Technology is growing day by day. Many household works that were done manually earlier have been replaced by machines and can be completed automatically. This development has benefitted people a lot. This essay will explain how technology has helped people in different ways at home.

Man has invented many machines which can do most of the household work automatically such as; dishwasher, vacuum cleaner, the washing machine and so on. With the invention of these machines, women get a lot of leisure. And also this advancement has helped women in improving their standard of living. They will get more time to focus on their career.

Along with the advantages there are also some disadvantages that go with the situation. By the invention of different types of machinery, people are fully dependent on them. Previously, people used to do all the household work manually and stayed fit. But the advancement in technology has made people lazy. There is no physical involvement in household activities

To sum up, technology has made people more dependent on machines for household activities. Also, the advantage is that women can invest more time more on their careers and children rather than doing household chores.

Other Related Essays on Technology

The above are some essays that have recently appeared in the IELTS exam on the topic of Technology. You can also refer to some other sample essays on technology in order to practice for the IELTS exam . Some of the topics are given below:

  • Advanced Science and Technology
  • Some people think that the range of technology available to people is increasing the gap between the rich and the poor. Others think it has the opposite effect. Discuss both views and give your opinion.
  • New technologies have changed the way children spend their free time. Do the advantages outweigh the disadvantages?
  • Art, Culture, and Technology
  • Modern technology now allows rapid and uncontrolled access and exchange of information. Far from being beneficial, this is a danger to our society. What is your view?
  • The presence of technology in the classroom has become more and more apparent and offers students tremendous resources with which to supplement their education. Given time, technology will completely replace the traditional teacher in the classroom. Do you agree or disagree with the above statement? Give reasons for your answer and include any relevant examples from your own knowledge or experience.
  • Computer technology has had more of a negative than a positive impact on society? How far do you agree with this statement? Support your views with reasons and/or examples from your own experience.
  • Earlier technological developments brought more benefits and changed the lives of ordinary people more than recent developments ever will. To what extent do you agree or disagree?
  • Some people believe that modern inventions have more problems as compared to their benefits. Do you agree or disagree?
  • According to a recent study, the more time people use the Internet, the less time they spend with real human beings. Some people say that instead of seeing the Internet as a way of opening up new communication possibilities world- wide, we should be concerned about the effect this is having on social interaction. How far do you agree with this opinion?
  • With the development of technology children are now living in a world that is completely different to what it was 50 years ago. What problems do this cause for society and the family?
  • Modern technology is changing our world. This has advantages such as bringing people closer together through communication. It also has disadvantages such as destroying the differences between cultures. To what extent do you agree or disagree with this statement?

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Kasturika Samanta

Kasturika Samanta

Kasturika is a professional Content Writer with over three years of experience as an English language teacher. Her understanding of English language requirements, as set by foreign universities, is enriched by her interactions with students and educators. Her work is a fusion of extensive knowledge of SEO practices and up-to-date guidelines. This enables her to produce content that not only informs but also engages IELTS aspirants. Her passion for exploring new horizons has driven her to achieve new heights in her learning journey.

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Essay on Technology

Here we have shared the Essay on Technology in detail so you can use it in your exam or assignment of 150, 250, 400, 500, or 1000 words.

You can use this Essay on Technology in any assignment or project whether you are in school (class 10th or 12th), college, or preparing for answer writing in competitive exams. 

Topics covered in this article.

Essay on Technology in 150-250 words

  • Essay on Technology in 300-400 words

Essay on Technology in 500-1000 words

Technology has become an integral part of our daily lives, revolutionizing the way we live, work, and communicate. It encompasses a wide range of tools, devices, and systems that enhance productivity, efficiency, and convenience. From smartphones and computers to advanced medical equipment and smart home devices, technology has transformed every aspect of our world.

The impact of technology is evident in various sectors, including education, healthcare, transportation, and communication. It has improved access to information, enabling faster and more efficient learning. In healthcare, technology has revolutionized diagnosis, treatment, and patient care, saving lives and improving outcomes. Transportation has become more efficient and safer with the advent of smart vehicles and navigation systems. Communication has transcended physical boundaries, connecting people across the globe instantly.

While technology brings numerous benefits, it also presents challenges. Concerns about privacy, cybersecurity, and the impact of technology on employment and social interactions have emerged. It is essential to harness technology responsibly and ethically to mitigate these challenges.

In conclusion, technology has transformed our lives, providing us with unprecedented convenience, efficiency, and connectivity. It continues to evolve and shape the world around us. As we embrace technology, we must also navigate the associated challenges and ensure that it is utilized for the betterment of society. The responsible and ethical use of technology is key to harnessing its full potential and creating a positive impact on individuals and communities.

Essay on Technology in 300-450 words

Technology has become an inseparable part of our modern lives, revolutionizing the way we live, work, and communicate. It encompasses a vast array of tools, systems, and devices that have transformed every aspect of our world. From smartphones and computers to artificial intelligence and advanced robotics, technology has brought about significant advancements and improvements in various fields.

One of the most significant impacts of technology is in the realm of communication. The advent of the internet and social media platforms has connected people from all corners of the world, enabling instant communication and global collaboration. The ability to share information, ideas, and experiences has fostered cultural exchange, expanded educational opportunities, and promoted social interactions on an unprecedented scale.

Technology has also revolutionized the business world, enhancing efficiency, productivity, and profitability. Automation and digitalization have streamlined processes, increased accuracy, and reduced human error. Organizations can now analyze vast amounts of data to make informed decisions, target specific markets, and personalize customer experiences. E-commerce platforms have opened new avenues for entrepreneurs and small businesses to reach a global customer base.

Education has also been greatly influenced by technology. Digital learning tools and online platforms have expanded access to education, making it more inclusive and flexible. Students can now engage in interactive and personalized learning experiences, access a wealth of educational resources, and collaborate with peers from around the world. Virtual reality and augmented reality technologies have also transformed the way we perceive and engage with educational content, bringing subjects to life and making learning more immersive and interactive.

The healthcare sector has witnessed remarkable advancements with the aid of technology. Medical devices, imaging technologies, and telemedicine have improved diagnosis, treatment, and patient care. Electronic health records and data analytics have enhanced efficiency and accuracy in medical processes. Moreover, wearable devices and mobile applications have enabled individuals to monitor their health, promote wellness, and access medical information easily.

While technology brings numerous benefits, it also poses challenges and concerns. Privacy and security issues have become more prevalent, as personal data is increasingly stored and shared digitally. The rapid pace of technological advancements has also raised concerns about job displacement and the widening digital divide. Moreover, over-reliance on technology can lead to sedentary lifestyles, social isolation, and addiction.

In conclusion, technology has become an integral part of our society, transforming the way we live, work, and communicate. It has brought numerous advancements and benefits across various sectors, enhancing efficiency, connectivity, and accessibility. However, it is crucial to address the challenges associated with technology, such as privacy and security concerns, job displacement, and the need for digital literacy. By harnessing technology responsibly and ethically, we can ensure that it continues to bring positive changes and improves the lives of individuals and communities around the world.

Title: Technology – The Evolution and Impact on Society

Introduction :

Technology has become an integral part of our modern lives, permeating every aspect of society. From communication and transportation to education and healthcare, technology has revolutionized the way we live, work, and interact with the world around us. This essay explores the evolution of technology, its impact on various sectors, and the challenges and opportunities it presents.

Evolution of Technology

The journey of technology can be traced back to the early inventions of the wheel, the printing press, and the steam engine. However, the rapid advancement of technology in the 20th and 21st centuries has transformed the world at an unprecedented pace. The invention of computers, the internet, and mobile devices have laid the foundation for the digital age we live in today.

The Impact of Technology on Communication

Technology has revolutionized communication, making the world more interconnected than ever before. The advent of the internet and social media platforms has transformed the way we communicate, allowing for instant global connectivity. Individuals can connect with friends, family, and colleagues across the globe through video calls, messaging apps, and social networks. Moreover, technology has facilitated the exchange of information and ideas on a global scale, fostering cultural exchange, promoting social activism, and increasing awareness of global issues.

Impact on Education

Technology has reshaped the landscape of education, providing new opportunities for learning and knowledge sharing. Digital learning tools, online platforms, and educational apps have expanded access to education, making it more flexible and inclusive. Students can engage in interactive and personalized learning experiences, access a wealth of educational resources, and collaborate with peers from different backgrounds. Additionally, technology has enabled remote learning, allowing individuals to pursue education regardless of geographical constraints. Virtual reality and augmented reality technologies have also enhanced the learning experience, bringing subjects to life and making education more immersive and engaging.

Impact on Healthcare

The healthcare sector has experienced significant advancements with the aid of technology. Medical devices, imaging technologies, and telemedicine have revolutionized diagnosis, treatment, and patient care. Electronic health records and data analytics have improved efficiency and accuracy in medical processes. Moreover, wearable devices and mobile applications have empowered individuals to monitor their health, promote wellness, and access medical information easily. The integration of artificial intelligence and machine learning has the potential to revolutionize healthcare further, enabling predictive analytics, personalized medicine, and improved patient outcomes.

Challenges and Concerns

Despite the numerous benefits of technology, it also poses challenges and concerns. Privacy and security issues have become more prevalent as personal data is increasingly stored and shared digitally. Cyberattacks, data breaches, and identity theft are growing concerns. The rapid pace of technological advancements also raises concerns about job displacement and the widening digital divide. As automation and artificial intelligence continue to advance, certain job roles may become obsolete, impacting employment rates and economic inequality. Additionally, over-reliance on technology can lead to sedentary lifestyles, social isolation, and addiction. Striking a balance between utilizing technology for its benefits while mitigating its negative impacts is crucial.

Conclusion :

Technology has transformed society, bringing unprecedented advancements and opportunities. It has revolutionized communication, education, healthcare, and various other sectors. However, it is essential to address the challenges and concerns associated with technology, such as privacy, job displacement, and the need for digital literacy. By harnessing technology responsibly and ethically, we can ensure that it continues to bring positive changes and improve the lives of individuals and communities worldwide. Technology should be seen as a tool to enhance human capabilities and foster human connections, while always striving for a balance between innovation and the preservation of humanity’s core values.

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New Technology’s Influence on the Future Essay

Introduction, main innovations, innovation problems, blockchain technology, autonomous systems, electric cars.

Doing business is a precarious business. First, it is necessary to decide on the type of business, all the technical characteristics, and other equally important details. Recently the market has changed a lot, thanks to a large number of innovations and technologies that are introduced not gradually but almost immediately. Each of them allows companies to bypass their competitors and attract many new customers with unique features of both the product itself and methods of production. This paper will focus on the analysis of this problem and what innovations in the current world are important and able to change the market industry in the future.

One of the most trending and controversial innovations is using artificial intelligence in creative tasks. In the last few years, the augmented reality and machine learning industries have reached great heights, affecting artists, writers, and designers, who have already started to lose their jobs. Virtual reality is one of the most important innovations which can replace many aspects of life. The most important are social interaction and the learning process. Using a virtual world, a person can get much knowledge without reference to the teacher and communicate with other people through chats and video calls and by having close contact with their avatars (Granja & Moreira, 2019). It is also worth noting another element that can change the usual perception of the world, namely alternative fuel sources. Thanks to the use of electric batteries, the oil industry was almost destroyed, and a large number of people working in the industry lost their jobs.

All these technologies exist, but in limited quantities, as the main problem with their implementation is the high cost. Only some people are ready to spend a large sum of money to buy all the necessary equipment. In addition, an important role is also played by the development degree of these projects, as most of them are at an early stage of development and implementation (Orbach, 2020). All these technologies require more time for refinement and development of functionality, which may affect their future availability and lower the threshold of entering the world of new technologies.

New technologies have the potential to significantly influence the future and shape the way we live and work. Some examples of emerging technologies that are likely to have a significant impact include:

Artificial Intelligence (AI) is the computer systems simulation of human intelligence processes. These processes include learning, reasoning, and self-correction. AI has the ability to analyze and understand complex data, make predictions, and adapt to new situations. AI technology is being applied in many industries, from healthcare to finance to transportation, to improve efficiency and decision-making (Costello, 2018). Examples of AI applications include virtual personal assistants, self-driving cars, and medical diagnosis systems. Despite the many potential benefits of these technologies, they also raise many challenges and concerns. Some of the leading innovation problems include:

Privacy and security risks: Many new technologies, especially those that rely on data collection and sharing, raise serious privacy and security concerns. Ensuring that personal data is protected and that systems are secure is crucial to gaining widespread trust and adopting these technologies (Orbach, 2020). In addition to these risks, there are also aspects of economic and social impact. New technologies have the potential to create winners and losers, as some jobs and industries are disrupted while others are made. Addressing these technologies’ economic and social impact is essential for ensuring that the benefits are widely shared.

Blockchain technology is a digital ledger that records transactions on a decentralized network. Each block in the chain contains a record of multiple transactions, and every participant in the network has access to the entire ledger. The decentralized nature of the network means that there is no single point of failure, and transactions are recorded immutably. This makes blockchain technology highly secure and resistant to tampering. It has been used to create digital currencies such as Bitcoin but is applied in other industries such as supply chain management, voting systems, and real estate. Virtual and augmented reality are also gaining momentum in recent years. Virtual Reality (VR) provides a computer-generated simulation of a three-dimensional environment that can be interacted with using specialized equipment, such as head-mounted displays (Costello, 2018). On the other hand, Augmented Reality (AR) involves superimposing computer-generated information on the user’s view of the real world. VR and AR can be applied in various industries, from gaming to education, real estate, healthcare, and many more. The target market for this technology can be the sales area, where the option of buying goods for cryptocurrency is already being implemented today.

With the advancement of technology comes the question of sustainability and ethical implications. With increasing energy consumption, electronic waste, and data center energy consumption, we must consider the environmental impact of the technology we are developing (Costello, 2018). Furthermore, integrating technology into our lives has led to the ethical question of how we use this technology, such as issues like surveillance, privacy, and the balance between accessibility and security.

Another important technology that is shaping the future is the technology of autonomous systems. Autonomous systems are capable of sensing, adapting, and operating independently from human intervention. Autonomous systems are used in many areas, such as automotive, military, and emergency technology (Matthews et al., 2021). The most common examples of autonomous systems are self-driving cars and drones, but the technology can also be applied to other systems, such as robots and spacecraft. The advantages of autonomous systems include improved safety, increased efficiency, and the ability to operate in environments that are not safe for humans. However, this technology also raises important questions about liability and regulation, especially in the case of accidents involving autonomous systems. As mentioned above, the target market for this innovation is various services that may need to carry out dangerous operations remotely.

The Internet of Things (IoT) refers to the interconnectedness of physical devices and objects through the internet. These devices are equipped with sensors, software, and network connectivity, allowing them to collect and share data. This data can be used to improve efficiency, automate processes, and make better decisions. Examples of IoT devices include smart home devices, industrial control systems, and wearables. The Internet of Things is used today in medicine, programming, artificial intelligence, and communication (Nord et al., 2019). By connecting devices to the internet, IoT collects and analyzes data on a massive scale, enabling new insights and improvements in various domains. Biotechnology is also important, particularly in the field of synthetic biology. This technology aims to design and build new biological parts, devices, and systems that do not exist in the natural world. Synthetic biology can be applied to developing new drugs, vaccines, biofuels, and even food production. Technology has the potential to revolutionize many industries and improve human lives, but it also raises essential ethical considerations about the creation of life forms and their impact on the environment.

Speaking about each of these aspects in more detail, there are several unique features to note. The development of artificial intelligence can bring changes in the labor market of professions. People who have spent years learning their craft in the first place are left without proper recognition and the opportunity to develop their creativity further (Orbach, 2020). In the creative fields, for example, the market will shift toward quickly generated content, reducing the number of in-demand live professionals. This makes the situation much more manageable. However, the project is still underdeveloped at this stage because neural networks cannot act on the same level as human perception (Costello, 2018). The main benefit to clients is that the task they need will be completed as quickly as possible, lowering the price of the work, and removing the problem of finding a professional. The main requirement for the technology is a quality and fast solution to the necessary tasks.

As for the situation with the development of the virtual world, there are many uncertainties and assumptions. It opens the door to a world where nothing is accurate, and there is the possibility of making mistakes. Virtual reality is changing the education and entertainment market. It made it possible to move a large portion of the population to distance learning and work during the pandemic. This technology will change the entertainment market, which will hit the amusement parks. On the other hand, customers will be able to close part of their need for travel and joy with one purchase because, thanks to virtual reality, a person can get into any world without leaving home (Costello, 2018). Very often, examples of virtual reality can be seen in the classes of doctors and nurses, who are not yet ready for actual patients but need a full-fledged practice. The main requirements are to lower the price of the technology to make it more accessible, expand the options and customize it for different activities. The target market for electric cars is people who are interested in new technologies and care about nature.

The only technology that will not completely replace human labor, but will change lives for the better, is electric cars. The market for electric cars is getting higher every year, significantly affected by the demands of EU countries for cars to reduce emissions to the outside world (Granja & Moreira, 2019). This technology will hurt the market of cars with internal combustion engines and the market of gasoline. Customers will get a car that meets the requirement of many states and will save on gasoline and car repairs. The general requirement for this technology is adopting the state law on protecting the environment, advertising electric cars, and reducing their prices.

Advances in technology will change the world as we know it in many ways. People continue to look for ways to simplify life, even though there are consequences. Throughout history, humanity has adapted to change, and it is an inherent part of history that continues to repeat itself repeatedly, leading to new unpredictable outcomes. Therefore, we can conclude that despite progress, these technologies are still far from perfect and have the potential to change the marketplace. However, people in certain professions already need to be prepared now that a new era is coming in which technology is becoming a higher priority.

Costello, A. M. (2018). Credit market disruptions and liquidity spillover effects in the supply chain . SSRN Electronic Journal . Web.

Granja, J., & Moreira, S. (2019). Product innovation and credit market disruptions . SSRN Electronic Journal . Web.

Matthews, G., Hancock, P. A., Lin, J., Panganiban, A. R., Reinerman-Jones, L. E., Szalma, J. L., & Wohleber, R. W. (2021). Evolution and revolution: Personality research for the coming world of robots, artificial intelligence, and autonomous systems . Personality and individual differences , 169 , 109969. Web.

Nord, J. H., Koohang, A., & Paliszkiewicz, J. (2019). The Internet of Things: Review and theoretical framework . Expert Systems with Applications , 133 , 97-108. Web.

Orbach, B. (2020). Antitrust in the shadow of market disruptions . SSRN Electronic Journal . Web.

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Essay about technology advantages and disadvantages – Analytical Essay

Introduction

Technology is now a big part of our society and our foreseeable future. There is little room for people that wish to live without technology, and luckily, it is still advancing at a rate that has helped stave off stagnation. Here I analyze the advantages and disadvantages of technology

Thesis statement

I believe that for every advantage that technology brings us, it also brings us a disadvantage at the same time.

Analysis of cars on our roads

Cars and other vehicles are now readily available and are technologically advanced enough to be safe for use every day and to work as a reliable tool for getting people and goods from one place to another in a relatively short space of time.

The advantages of cars are that they are safe and that people can get to very specific places as per their own timeline. People do not have to rely on trains or planes in order to get to where they want to go, and they can set off at their own time and arrive when they wish without having to work around a train or plane schedule.

The disadvantage is that all forms of vehicle on our roads are polluting the atmosphere and are slowly killing the earth by adding to greenhouse gasses that do not allow the sun’s heat to escape. Even electric cars are powered by electricity generated by fossil fuels. Car accidents are also a very big killer worldwide and many lives have been lost because of car accidents/incidents.

Analysis of Smartphones

They allow people to stay in touch, even over long distances, and they are relatively safe and reliable to use. There are devices that can communicate with plus at the other end of the planet and getting and keeping in touch with other people is very easy.

The disadvantages to this is that it means people no longer need to meet in person as much, and interpersonal relationships are suffering worldwide because people are communicating through a small handheld device. Lots of people have Smartphones and they use them almost semi-continuously, including in public settings when they could be making new friends, finding new lovers, and talking/interacting with their current friends. Analysis – Fast and efficient Internet access

The advantages are that people can communicate over vast distances and can gain access to information and answers to their questions very quickly. The disadvantage is that the Internet isn’t moderated in the way that people think and a lot of it is filled with misinformation and outright lies.

Even brand-named websites that have a lot of trust are not accountable for what appears on their own websites. Even respected and branded news sites have stories that have passed through many people’s hands and originally started as lies with zero accountability throughout the dissemination process. For example, that is why so many celebrities have been reported as dead on news sites when they were actually alive. Conclusion

My analysis proves that technology is a good thing, and that is has its advantages, but that with each technological element we gain disadvantages as well as advantages, and many times those disadvantages are overlooked by technology users.

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Essay on Information Technology in 400 Words

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  • Updated on  
  • Dec 2, 2023

Essay on Information Technology

Essay on Information Technology: Information Technology is the study of computer systems and telecommunications for storing, retrieving, and transmitting information using the Internet. Today, we rely on information technology to collect and transfer data from and on the internet. Say goodbye to the conventional lifestyle and hello to the realm of augmented reality (AR) and virtual reality (VR).

essay about latest technology

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Also Read: Essay on Internet

Scientific discoveries have given birth to Information Technology (IT), which has revolutionized our way of living. Sudden developments in technology have given a boost to IT growth, which has changed the entire world. Students are taught online using smartboards, virtual meetings are conducted between countries to enhance diplomatic ties, online surveys are done to spread social awareness, e-commerce platforms are used for online shopping, etc.

Information Technology has made sharing and collecting information at our fingertips easier. We can learn new things with just a click. IT tools have enhanced global communication, through which we can foster economic cooperation and innovation. Almost every business in the world relies on Information Technology for growth and development. The addiction to information technology is thriving throughout the world.

Also Read: Essay on 5G Technology

  • Everyday activities like texting, calling, and video chatting have made communication more efficient.
  • E-commerce platforms like Amazon and Flipkart have become a source of online shopping.
  • E-learning platforms have made education more accessible.
  • The global economy has significantly improved.
  • The healthcare sector has revolutionized with the introduction of Electronic Health Records (EHR) and telemedicine.
  • Local businesses have expanded into global businesses. 
  • Access to any information on the internet in real-time.

Also Read: Essay on Mobile Phone

Disadvantages

Apart from the above-mentioned advantages of Information Technology, there are some disadvantages also.

  • Cybersecurity and data breaches are one of the most important issues.
  • There is a digital divide in people having access to information technology.
  • Our over-relying attitude towards the IT sector makes us vulnerable to technical glitches, system failures and cyber-attacks.
  • Excessive use of electronic devices and exposure to screens contribute to health issues.
  • Short lifecycles of electronic devices due to rapid changes in technological developments.
  • Challenges like copyright infringement and intellectual property will rise because of ease in digital reproduction and distribution.
  • Our traditional ways of entertainment have been transformed by online streaming platforms, where we can watch movies and play games online.

The modern world heavily relies on information technology. Indeed, it has fundamentally reshaped our way of living and working, but, we also need to strike a balance between its use and overuse. We must pay attention to the challenges it brings for a sustainable and equitable society.

Also Read: Essay on Technology

Paragraph on Information Technology

Also Read: Essay on Wonder of Science

Ans: Information technology is an indispensable part of our lives and has revolutionized the way we connect, work, and live. The IT sector involves the use of computers and electronic gadgets to store, transmit, and retrieve data. In recent year, there has been some rapid changes in the IT sector, which has transformed the world into a global village, where information can be exchanged in real-time across vast distances.

Ans: The IT sector is one of the fastest-growing sectors in the world. The IT sector includes IT services, e-commerce, the Internet, Software, and Hardware products. IT sector helps boost productivity and efficiency. Computer applications and digital systems have allowed people to perform multiple tasks at a faster rate. IT sector creates new opportunities for everyone; businesses, professionals, and consumers.

Ans: There are four basic concepts of the IT sector: Information security, business software development, computer technical support, and database and network management.

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Table of Contents

1. generative-ai, 2. computing power , 3. smart(er) devices , 4. datafication , 5. artificial intelligence (ai) and machine learning, 6. extended reality , 7. digital trust , 8. 3d printing , 9. genomics , 10. new energy solutions, 11. robotic process automation (rpa), 12. edge computing, 13. quantum computing, 14. virtual reality and augmented reality, 15. blockchain, 16. internet of things (iot), 18. cyber security, 19. full stack development, 21. metaverse, 22. digital twins, choose the right program, 22 new technology trends and 1 solution to succeed in them, frequently asked questions (faqs), 22 new technology trends for 2024: new tech horizons.

Top New Technology Trends for 2024

Technology today is evolving at a rapid pace, enabling faster change and progress, causing an acceleration of the rate of change. However, it is not only technology trends and emerging technologies that are evolving, a lot more has changed, making IT professionals realize that their role will not stay the same in the contactless world tomorrow. And an IT professional in 2024 will constantly be learning, unlearning, and relearning (out of necessity, if not desire).

What does this mean for you in the context of the highest paying jobs in India ? It means staying current with emerging technologies and latest technology trends. And it means keeping your eyes on the future to know which skills you’ll need to know to secure a safe job tomorrow and even learn how to get there. Here are the top 18 emerging technology trends you should watch for and make an attempt at in 2024, and possibly secure one of the highest paying tech jobs that will be created by these new technology trends. Starting the list of new tech trends with the talk of the town, gen-AI!

Generative AI, a cutting-edge technology, has revolutionized various industries by enabling machines to create content that resembles human-generated work. It encompasses a wide range of applications, from text generation to image synthesis and even music composition. After mastering generative AI, individuals can pursue exciting job roles in fields such as artificial intelligence research, data science, and creative industries. The ever-expanding applications of generative AI promise a bright future for those who master this technology, offering opportunities to shape how we interact and create content in the digital age. Some of the top job roles include:

  • AI Researcher, where you can delve deep into the development of advanced generative models
  • Data Scientist, using generative AI to extract valuable insights from data
  • Content Creator, harnessing generative AI for innovative storytelling
  • AI Ethics Consultant, addressing the ethical implications of AI-generated content

Computing power has already established its place in the digital era, with almost every device and appliance being computerized. And it’s here for even more as data science experts have predicted that the computing infrastructure we are building right now will only evolve for the better in the coming years. At the same time, we have 5G already; gear up for an era of 6G with more power in our hands and devices surrounding us. Even better, computing power is generating more tech jobs in the industry but would require specialized qualifications for candidates to acquire.

From data science to robotics and IT management, this field will power the largest percentage of employment in every country. The more computing our devices will need, the more technicians, IT teams, relationship managers, and the customer care economy will flourish. One essential branch under this field that you can learn today is RPA, i.e. Robotic Process Automation . Here are the top jobs you can target after RPA: 

  • Data Scientist
  • AI Engineer
  • Robotics Researcher
  • AI Architect
  • Robotics Designer

Artificial intelligence has played an essential role in making our world smarter and smoother. It is not just simulating humans but going the extra mile to make our lives hassle-free and simpler. These smarter devices are here to stay in 2024 and even further, as data scientists are working on AI home robots, appliances, work devices, wearables, and so much more! Almost every job needs smart software applications to make our work life more manageable. Smarter devices are another addition to the IT industry that is of high requirement and demand as more companies transform into digital spaces. Almost every higher-level job requires good IT and automation proficiency to thrive. Here are the best jobs you can venture into:

  • Data Scientists
  • Product Testers
  • Product Managers
  • Automation Engineers
  • IT Researchers

Datafication is simply transforming everything in our lives into devices or software powered by data. So, in short, Datafication is the modification of human chores and tasks into data-driven technology. From our smartphones, industrial machines, and office applications to AI-powered appliances and everything else, data is here to stay for longer than we can ever remember! So, to keep our data stored correctly and securely and safely, it has become an in-demand specialization in our economy. 

Datafication leads to a higher need for IT professionals, data scientists, engineers, technicians, managers, and so much more. Even more useful is that anyone with a sound knowledge of technology can do a certification in data-related specializations to find a job in this space. Data jobs are more about skills than big-level qualifications. Let’s look at some popular data careers:

  • Big Data Engineers
  • Robotics Engineers
  • IT Architect
  • Business Intelligence Analyst

Artificial Intelligence , or AI, has already received a lot of buzz in the past decade. Still, it continues to be one of the new technology trends because of its notable effects on how we live, work and play are only in the early stages. AI is already known for its superiority in image and speech recognition, navigation apps, smartphone personal assistants, ride-sharing apps and so much more.

Other than that, AI will be used further to analyze interactions to determine underlying connections and insights, to help predict demand for services like hospitals enabling authorities to make better decisions about resource utilization, and to detect the changing patterns of customer behaviour by analyzing data in near real-time, driving revenues and enhancing personalized experiences. With AI spreading its wings across sectors, new jobs will be created in development, programming, testing, support and maintenance, to name a few. On the other hand AI also offers some of the highest salaries today!

Machine Learning the subset of AI, is also being deployed in all kinds of industries, creating a huge demand for skilled professionals. Forrester predicts AI, machine learning, and automation will create 9 percent of new U.S. jobs by 2025, jobs including robot monitoring professionals, data scientists, automation specialists, and content curators, making it another new technology trend you must keep in mind too!

Mastering AI and machine learning will help you secure jobs like:

  • AI Research Scientist
  • Machine Learning Engineer

Extended reality comprises all the technologies that simulate reality, from Virtual Reality, Augmented Reality to Mixed Reality and everything else in-between. It is a significant technology trend right now as all of us are craving to break away from the so-called real boundaries of the world. By creating a reality without any tangible presence, this technology is massively popular amongst gamers, medical specialists, and retail and modeling.

Regarding extended reality, gaming is a crucial area for popular careers that don’t require high-level qualifications but rather a passion for online gaming. You can pursue game design, animation or even editing programs to pursue a successful career in this specialization. Meanwhile, check out the best jobs in AR, VR as well as ER:

  • Extended Reality Architect
  • Front Lead Engineer
  • Software Developer
  • AR/VR Support Engineers
  • Game Designers
  • Creative Directors

Become a AI & Machine Learning Professional

  • $267 billion Expected global AI market value by 2027
  • 37.3% Projected CAGR of the global AI market from 2023-2030
  • $15.7 trillion Expected total contribution of AI to the global economy by 2030

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  • Live sessions on the latest AI trends, such as generative AI, prompt engineering, explainable AI, and more
  • Advanced Executive Program in Cybersecurity completion certificate from IIIT Bangalore

Here's what learners are saying regarding our programs:

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Personal Financial Consultant , OCBC Bank

The live sessions were quite good; you could ask questions and clear doubts. Also, the self-paced videos can be played conveniently, and any course part can be revisited. The hands-on projects were also perfect for practice; we could use the knowledge we acquired while doing the projects and apply it in real life.

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I had an incredible learning experience with Simplilearn, and the course helped boost my career. My company promoted me from Cybersecurity Analyst Level -1 to Cybersecurity Analyst Level -2 with a 40% salary hike.

With people being accommodated and tangled with devices and technologies, confidence and trust have been built towards digital technologies. This familiar digital trust is another vital trend leading to more innovations. With digital conviction, people believe that technology can create a secure, safe and reliable digital world and help companies invent and innovate without worrying about securing the public’s confidence. 

To create a safer space for digital users, cybersecurity and ethical hacking are the major specializations you can check out. In these two, there is an array of jobs you can discover from junior to senior levels. For ethical hacking, you might have to take up professional certifications, while for cybersecurity, a diploma or even a master’s qualification is sufficient to aim for a high-salary role. Here are the top jobs you can find in cybersecurity and ethical hacking:

  • Cybersecurity Analyst
  • Penetration Tester
  • Security Engineer
  • Security Architect
  • Security Automation Engineer
  • Network Security Analyst

A key trend in innovation and technology is 3D printing which is used to formulate prototypes. This technology has been impactful in the biomedical and industrial sectors. None of us thought of printing a real object from a printer, while right now, it’s a reality. So, 3D printing is another innovation that’s here to stay. For companies in the data and healthcare sector that require a lot of 3D printing for their products, various jobs pay well and are international. You only need a sound knowledge of AI, Machine Learning, Modeling, and 3D printing. Let’s check out the best jobs in this specialization:

  • CX Program Manager
  • 3D Printer Engineer
  • Emulation Prototyping Engineer
  • Robotics Trainer
  • Operations Manager
  • Organ & Prosthetic Designer

Imagine a technology that can study and use your DNA to improve your health, helping you fight diseases and whatnot! Genomics is precisely that technology that peruses upon the make-up of genes, DNAs, their mapping, structure, etc. Further, this can help quantify your genes and result in finding diseases or any possible problems that can later be a health issue. When it comes to a specialization like Genomics, one can find a variety of technical as well as non-technical roles. Technical jobs in this area are all about designing, analyzing, and diagnostics, while non-technical jobs are concerned with higher levels of research and theoretical analysis. Here are the top jobs in Genomics:

  • Bioinformatics Analyst
  • Genome Research Analyst
  • Full Stack Developer
  • Software Engineer
  • Bioinformatician
  • Genetics Engineer

The world has agreed to be greener for the sake of its landscapes and the energy we use. This results in cars running on electricity or battery and houses using greener choices like solar and renewable energy. What’s even better is that people are conscious of their carbon footprints and waste; thus, minimizing it or turning those into renewable energy is even more helpful. 

This gave rise to another technology trend -  energy solutions! This alternative energy arena is also boosting environment-related and data-oriented careers. These careers pertain to those in Science specializations and social science qualifications. Let’s take a look at the top jobs you can find in New Energy:

  • Energy Specialist (Solar, Thermal, Hydro-power etc.)
  • Solar Plant Design Energy
  • Climate Strategy Specialist
  • Project Manager
  • Chemical Energy
  • Biotechnology Specialist
  • Renewable Energy Technologist

Like AI and Machine Learning, Robotic Process Automation is another technology that automates jobs. RPA is the use of software to automate business processes such as interpreting applications, processing transactions, dealing with data, and even replying to emails. RPA automates repetitive tasks that people used to do. 

Although Forrester Research estimates RPA automation will threaten the livelihood of 230 million or more knowledge workers or approximately 9 percent of the global workforce, RPA is also creating new jobs while altering existing jobs. McKinsey finds that less than 5 percent of occupations can be totally automated , but about 60 percent can be partially automated.

For you as an IT professional looking to the future and trying to understand latest technology trends, RPA offers plenty of career opportunities, including developer, project manager, business analyst, solution architect and consultant. And these jobs pay well- making it the next technology trend you must keep a watch on! Mastering RPA will help you secure high-paying jobs like:

  • RPA Developer
  • RPA Analyst
  • RPA Architect

Formerly a new technology trend to watch, cloud computing has become mainstream, with major players AWS (Amazon Web Services), Microsoft Azure and Google Cloud Platform dominating the market. The adoption of cloud computing is still growing, as more and more businesses migrate to a cloud solution. But it’s no longer the emerging technology trend. Edge is.

As the quantity of data organizations is dealing with continues to increase, they have realized the shortcomings of cloud computing in some situations. Edge computing is designed to help solve some of those problems as a way to bypass the latency caused by cloud computing and getting data to a data center for processing. It can exist “on the edge,” if you will, closer to where computing needs to happen. For this reason, edge computing can be used to process time-sensitive data in remote locations with limited or no connectivity to a centralized location. In those situations, edge computing can act like mini datacenters.

Keeping in line with cloud computing (including new-age edge and quantum computing) will help you grab amazing jobs like:

  • Cloud Reliability Engineer
  • Cloud Infrastructure Engineer
  • Cloud Architect and Security Architect
  • DevOps Cloud Engineer

The next remarkable technology trend is quantum computing , which is a form of computing that takes advantage of quantum phenomena like superposition and quantum entanglement. This amazing technology trend is also involved in preventing the spread of the coronavirus, and to develop potential vaccines, thanks to its ability to easily query, monitor, analyze and act on data, regardless of the source. Another field where quantum computing is finding applications is banking and finance, to manage credit risk, for high-frequency trading and fraud detection.

Quantum computers are now a multitude times faster than regular computers and huge brands like Splunk, Honeywell, Microsoft, AWS, Google and many others are now involved in making innovations in the field of Quantum Computing. The revenues for the global quantum computing market are projected to surpass $2.5 billion by 2029. And to make a mark in this new trending technology, you need to have experience with quantum mechanics, linear algebra, probability, information theory, and machine learning.

The next exceptional technology trend - Virtual Reality (VR) and Augmented Reality (AR), and Extended Reality (ER). VR immerses the user in an environment while AR enhances their environment. Although this technology trend has primarily been used for gaming thus far, it has also been used for training, as with VirtualShip , a simulation software used to train U.S. Navy, Army and Coast Guard ship captains.

In 2024, we can expect these forms of technologies being further integrated into our lives. Usually working in tandem with some of the other emerging technologies we’ve mentioned in this list, AR and VR have enormous potential in training, entertainment, education, marketing, and even rehabilitation after an injury. Either could be used to train doctors to do surgery, offer museum goers a deeper experience, enhance theme parks, or even enhance marketing, as with this Pepsi Max bus shelter .

While some employers might look for optics as a skill-set, note that getting started in VR doesn’t require a lot of specialized knowledge - basic programming skills and a forward-thinking mindset can land a job; another reason why this new technology trend should make up to your list of lookouts!

Although most people think of blockchain technology in relation to cryptocurrencies such as Bitcoin, blockchain offers security that is useful in many other ways. In simplest terms, blockchain can be described as data you can only add to, not take away from, or change. Hence the term “chain” because you’re making a chain of data. Not being able to change the previous blocks is what makes it so secure. In addition, blockchains are consensus-driven, so no one entity can take control of the data. With blockchain, you don’t need a trusted third party to oversee or validate transactions.

Several industries are involving and implementing blockchain, and as blockchain technology's use increases, so does the demand for skilled professionals. From a birds eye view, a blockchain developer specializes in developing and implementing architecture and solutions using blockchain technology. 

If you are intrigued by Blockchain and its applications and want to make your career in this trending technology, then this is the right time to start. To get into Blockchain, you need hands-on experience in programming languages, OOPS fundamentals, flat and relational databases, data structures, web app development, and networking. Mastering blockchain can help you scale up in a variety of fields and industries:

  • Risk Analyst
  • Tech Architect
  • Crypto Community Manager
  • Front End Engineer

Another promising new technology trend is IoT. Many “things” are now being built with WiFi connectivity, meaning they can be connected to the Internet—and to each other. Hence, the Internet of Things, or IoT. The Internet of Things is the future, and has already enabled devices, home appliances, cars and much more to be connected to and exchange data over the Internet.

As consumers, we’re already using and benefitting from IoT. We can lock our doors remotely if we forget to when we leave for work and preheat our ovens on our way home from work, all while tracking our fitness on our Fitbits. However, businesses also have much to gain now and in the near future. The IoT can enable better safety, efficiency and decision making for businesses as data is collected and analyzed. It can enable predictive maintenance, speed up medical care, improve customer service, and offer benefits we haven’t even imagined yet.

And we’re only in the beginning stages of this new technology trend: Forecasts suggest that by 2030 around 50 billion of these IoT devices will be in use around the world, creating a massive web of interconnected devices spanning everything from smartphones to kitchen appliances. And if you wish to step foot in this trending technology, you will have to learn about Information security, AI and machine learning fundamentals, networking, hardware interfacing, data analytics , automation, understanding of embedded systems, and must have device and design knowledge.

The next technology trend that follows the IoT is 5G. Where 3G and 4G technologies have enabled us to browse the internet, use data-driven services, increased bandwidths for streaming on Spotify or YouTube and so much more, 5G services are expected to revolutionize our lives. By enabling services that rely on advanced technologies like AR and VR, alongside cloud-based gaming services like Google Stadia, NVidia GeForce Now and much more. It is expected to be used in factories, HD cameras that help improve safety and traffic management, smart grid control and smart retail too.

Just about every telecom company like Verizon, Tmobile, Apple, Nokia Corp, QualComm, are now working on creating 5G applications. 5G Network subscriptions will reach 4.4 billion by the end of 2027 , making it an emerging technology trend you must watch out for, and also save a spot in.

Cyber security might not seem like an emerging new technology trend, given that it has been around for a while, but it is evolving just as other technologies are. That’s in part because threats are constantly new. The malevolent hackers trying to access data illegally will not give up any time soon, and they will continue to find ways to get through even the toughest security measures. It’s also partly because new technology is being adapted to enhance security. As long as we have hackers, cybersecurity will remain a trending technology because it will constantly evolve to defend against those hackers.

According to Gartner , by 2025, 60% of organizations will use cybersecurity risk as a primary determinant in conducting third-party transactions and business engagements. You must note that however challenging the field is it also offers lucrative six-figure incomes, and roles can range from 

  • Ethical Hacker 
  • Malware Analyst
  • Security Engineer 
  • Chief Security Officer

offering a promising career path for someone who wants to get into and stick with this new trending technology. 

Full stack development refers to the practice of developing both the front-end (user interface) and back-end (server-side) components of a web or software application. Full stack developers are proficient in multiple programming languages and technologies, allowing them to work on the entire software stack. This trend has gained momentum as businesses seek versatile developers who can build end-to-end solutions efficiently. Full stack development streamlines the development process and enables faster product development and deployment.

DevOps is a set of practices that focuses on collaboration and communication between software development (Dev) and IT operations (Ops) teams. It aims to automate and streamline the software development and deployment lifecycle, allowing for more frequent and reliable releases. DevOps practices include continuous integration, continuous delivery, infrastructure as code, and automated testing. Adopting DevOps leads to faster development cycles, improved software quality, and greater agility in responding to changes and customer needs.

The metaverse is a virtual, interconnected digital universe where users can interact with each other and digital environments in real-time. It combines augmented reality (AR), virtual reality (VR), and various technologies to create immersive, shared experiences. Companies are exploring metaverse applications in gaming, social networking, education, healthcare, and beyond. This trend represents a convergence of digital and physical worlds and is expected to have far-reaching impacts on communication, entertainment, and business collaboration.

Digital twins are virtual replicas of physical objects, processes, or systems. These digital representations are created using data from sensors, IoT devices, and other sources. Digital twins enable organizations to monitor, simulate, and analyze real-world assets and operations in a virtual environment. They find applications in manufacturing, urban planning, healthcare, and more. By creating digital twins, businesses can optimize processes, improve decision-making, and enhance efficiency, safety, and sustainability.

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Although technologies are emerging and evolving all around us, these 18 technology trends offer promising career potential now and for the foreseeable future. And most of these trending technologies are welcoming skilled professionals , meaning the time is right for you to choose one, get trained, and get on board at the early stages of these trending technologies, positioning you for success now and in the future.

1. What are technology trends?

Technology trends refer to the prevailing developments, innovations, and advancements in the world of technology. These trends often shape the direction of industries, businesses, and society as a whole, influencing how we interact, work, and live.

2. Why are technology trends important?

Following technology trends is crucial for individuals and businesses alike because it allows them to stay competitive and relevant in a rapidly evolving digital landscape. By keeping abreast of emerging technologies, one can make informed decisions about adopting new tools, improving processes, and leveraging opportunities for growth.

3. How do you keep up with technology trends?

You can stay updated with technology trends by following reputable technology news sources, subscribing to industry newsletters, attending conferences and webinars, participating in online communities, and engaging in continuous learning and skill development.

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Introduction Paragraph for Technology Essay: Effective Guide

Table of Contents

The introduction is an integral part of any essay and an excellent opportunity to impact your reader. It sets the tone for the argument and gives the reader an insight into the topic. A good  introduction of essay about technology  comprises three main parts.

The hook grabs the reader’s attention and encourages them to read on. Background presents more details on the topic, and the thesis statement summarizes the essay’s central focus. 

The introduction can be challenging to write, but with some guidance, anyone can master the art of writing a compelling introduction. This guide discusses how to write an effective introductory paragraph for a technology essay.

What is A Technology Essay?

Technology has a significant impact on our society. Its numerous benefits have become a vital part of our life. It has improved and is still improving the efficiency of medicine, transportation, education, entertainment, and more. Technology also impacts social interaction; you can easily find lost friends on social networks. 

A technology essay discusses a technological phenomenon or technological advancement. It could also discuss a personal experience related to a technological issue. Depending on your professor’s instructions, a technology essay could be argumentative, informative, persuasive, or otherwise.

How to Write An Introduction Paragraph For Technology Essay

Like other essays, a technology essay comprises three main parts: the introduction, the body, and the conclusion. The introduction provides the reader with an overview of the argument you’ll develop in the body of your essay.

Body of the paper is where you discuss the details of the argument. The conclusion represents the logical ending you reach regarding the idea presented in the essay’s body.

The introduction paragraph of a technology essay should provide context for the technological trends you address and the argument you develop. It should include a hook that will pull the reader in and keep him/her interested.

Here’s how to write a good introduction paragraph .

1. Hook the reader

The essay’s opening sentence sets the tone for the entire piece; it should intrigue the readers and pull them in. Begin with a hook that will grab the reader’s attention, hold their interest and make them want to read the rest of your work.

The hook should be exciting and lead the reader into the essay, giving them an idea of the topic you’re writing about. It should also be clear, catchy, and concise and spark the reader’s curiosity. Here’s how you can grab the attention of your audience.

  • Present a shocking statistic or fact.
  • Offer an anecdote or a relevant example.
  • Ask a thoughtful rhetorical question.

2. Create Context and Provide Background

Now that you have the reader’s attention, provide details on your topic. The next two to three sentences you make should explain how the hook connects to the rest of the essay.

Provide necessary background information to help the readers better understand your argument and the points you intend to make. If you include key terms that may be wrongly interpreted, let your readers know what the term means in your essay.

3. Present Your Thesis

A thesis is the pivot point of your paper, and the single most important idea that you convey in your work. Present the main points you intend to make throughout your essay.

Provide your readers with a roadmap of what you’ll cover in the rest of the paper to support your thesis statement. The last sentence of your introduction should allow smooth transition into the body of the essay.

Introduction of Essay About Technology

Technology has made our lives more comfortable. The products we use, our lifestyle, and our society are products of technology. Without technological advancements, the world would be different and most likely unrecognizable to us. Today, technology extends to every part of our life. Experts, business entrepreneurs, and non-professionals use technology to expand their livelihoods. However, with the good comes bad. Technology, quite frankly, harms society. Pollution, cybercrime, and war are only a few of the effects of technology on society. But does the good outweigh the bad? 

Technology has impacted modern life immensely. It has drastically changed our world. We now travel in planes and cars and have better health facilities and education. We also have ways to communicate with people worldwide in seconds. However, these increased levels of technology did not come about by accident. It resulted from planned and systematic research by a group of people. 

Technology is giving us a new shape. We’ve made more progress in the last 200 years than in the previous 20000 years. Earth has become a global village where most countries and people can connect through the internet, but it has some deadly consequences. Many countries have nuclear weapons, global warming and growing Co2 emissions threaten the existence of the whole population.

With the advent of technology, we are making such amazing developments that couldn’t even be imagined 100 or 200 years ago. We’ve found cures for deadly diseases, we’re constantly working on education, and most people have freedom to express themselves. Science has made huge leaps, but at the same time new diseases, deadlier than before, kill millions of people every year.

Technology is the application of information for building and developing devices and equipment that can be used in diverse ways. We live a very active day-to-day life with technology today. While technology has done a lot to make life easier for everyone, it has also had a few adverse effects that can’t be ignored. Here’s a look at how technology has affected our lives and how we can balance it to overcome it.

Example 6 

Technology has changed society drastically. Before modern technology came along, life was too hard, and everyday chores took up a lot of time. We’re getting many opportunities out of technologies that play a significant role in our lives. Access to medicine, education, industry, and transportation is easier. Our lives have changed dramatically. 

person holding on red pen while writing on book

A technology essay can be tricky to write, but a good essay introduction paragraph is key to the successful execution of your topic .

The introduction to a technology essay must be clear, concise, and persuasive to draw the reader in. It should establish the topic and provide as much detail as possible to help readers understand and empathize with the topic. This guide on introduction of essay about technology would help you write a gripping essay introduction.

Introduction Paragraph for Technology Essay: Effective Guide

Abir Ghenaiet

Abir is a data analyst and researcher. Among her interests are artificial intelligence, machine learning, and natural language processing. As a humanitarian and educator, she actively supports women in tech and promotes diversity.

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essay about latest technology

Unique Technology Essay Topics

Technology has developed in rapid pace in the past few years. Innovations in this field and the opportunities for the future seem to be limitless. However, the rapid growth of technology has also brought fears and uncertainties among some people.

This article highlights the most trendy and interesting technology essay topics. It will guide you through the process of picking the right subject for your tech essay.

The field of science and technology covers a a vast subject, so the possibilities for research are endless. Be sure to select the subject that is interesting to you to make write an essay that is enjoyable to work on.

If you're having trouble choose a topic for your technology essay This article can serve as a helpful guide to help you jump off the process of writing your research.

The Advancement of Technology:

Technology has cut down on effort and time, and also enhanced the efficiency of manufacturing requirements in all fields. It has made our lives easier comfortable, healthy, and fun. It has revolutionized our lives in the field of transportation and communications. Technology advancement as well as science has allowed us become self-sufficient throughout all aspects of life. Thanks to the advancement of a particular technology it becomes a part of society and integrated into human lives at a certain point in the past.

Topics for science and technology essays concepts

Looking for some interesting but practical technology topics to use to write your essay or dissertation? Here are some topics to consider and select from:

  • The relationship between technology and war rules.
  • How has the human persona changed in the age of technology ?
  • Do social media technologies take over traditional media as the primary sources of news in near future? Examine specific examples.
  • Consider the advantages and disadvantages that nuclear power can bring as an energy source.
  • Investigating technological advances in the field of health care across the UK.
  • Analyzing the consequences of technological advancements within the realm of robotics, and the implications for the human identity.
  • An analysis of the genetic technology for modification.
  • The battle between humans and computers - Who will win the battle?
  • Examining the different reproduction technologies that are emerging out of the United States
  • What technologies are expected to develop in the coming years A look at what life will be like in 2050.
  • Can our modern society survive without mass media and television?
  • Technology has made communication more efficient,, but it's not personal communication. Does smart contact on devices equivalent to face-to-face contact?
  • The benefits and drawbacks of technology. Do we over-rely on computers for our day-to- requirements?
  • Technology's impact in human resources management within large organizations.
  • Comparing our lives today to the past. Are the human lives of today superior or inferior?
  • Do websites spread hatred or bring people closer one another?
  • Technology's impact in improving the standard of living of the people all over the globe.
  • The industrial revolution has played a majorly in the climate change?
  • Do you think that the usage of smartphones has made people socially less active?
  • What are the pros and cons to machines performing the job that earlier performed by humans?
  • Evaluation of Chinese policy to regulate the actions of citizens on social media using technological applications?
  • Are people from all nations are able to access the same technological advances?
  • Can the problem of hunger in less developed countries be resolved with the use of genetically modified food?
  • Analyzing the impact gaming games have on the early child development.
  • Natural food and processed foods A brief overview of evolving trends on the market for food, from a technological perspective.
  • Are digital marketing methods more effective than traditional marketing?
  • The world is small - how is the internet technology has made this planet a tiny place?
  • The implications of E-commerce technology for small and medium-sized companies.
  • Comparing brains with computers Which is more intelligent?
  • Traditional cards vs electric cars Which will win?

TOP 20 topics for technology essays

You're having trouble coming up with a notion for your perfect topic? Why not choose from our excellent selection that we've compiled for you?

  • In what ways has technology changed how people communicate?
  • Choose one technical invention (Internet/television/electro cars/mobile phones, for example) and describe how it has changed people's lives.
  • History of technological progress The first technical breakthroughs.
  • What would life be like without technological advancements?
  • Are there any technologies that offer more benefits or drawbacks?
  • Are the Internet making people closer to one another or is it separating them?
  • Investigate the role of technology in your daily life: to what extent are you reliant on it? What are the technologies that can be eliminated?
  • Consider what we are losing as a result of technological growth.
  • Choose a device and write about its advantages and disadvantages.
  • What type of technological knowledge should children be taught today?
  • Define the most crucial technology in your opinion. Explain your reasons.
  • The role of technology in the globalisation process.
  • Work and technology: What are the pros and cons of workplace technology?
  • The future is in the realm of tech: what will be within 20 years?
  • Humans vs computers: Who is the winner?
  • Reproduction technology.
  • Health technology has changed the world.
  • Genetic engineering technology is advancing.
  • Relationship between technological advancement and the human identitiy.
  • What have the technological advances done to how war rules are governed?

Technology related to robotics

Here are some fascinating robotics-related topics to consider.

  • The significance of robotics in health sector
  • Do we really need an updated computer language? Is it any superior to the ones we have now?
  • A review of the top five computer languages around the globe.
  • What are humans going to do when computers assume the tasks currently carried out by humans?
  • Is the internet able to be improved? What are the problems with the internet that require to be addressed?
  • Virtual reality is a crucial aspect in the field of education.
  • Virtual reality and the current generation A review of the studies
  • What is the impact of virtual reality on the world we live in?
  • The machine learning process and the consequences.
  • With the many applications for open source technology How are developers supposed to safeguard devices?

Topics of technology that are prominent to write about

The below subjects are more specific, but they're certainly thought-provoking.

  • The technology used in education.
  • Amazing technology is being developed at the moment.
  • The most shocking new technology inventions that the majority of people don't know about.
  • List the technology you think are totally destructive and harmful. Discuss your reasons for choosing them.
  • Space studies and technology.
  • Technology's impact on the health of people and their values.
  • Robots can replace humans completely in the workplace? Why?
  • Specific country and the contribution it has made to the advancement of technology.
  • Transport safety and technology.
  • Nanotechnology and the possibilities of their application.
  • Utilization of technology in medical practice.
  • What technology can impact the mental health of people? How?
  • Technology has changed our lives.
  • Are technology's effects positive or negative impact on safety of individuals?
  • Technology can help in improving the education process?

Information and communication technology (ICT) issues

Information Communication Technology (ICT) has transformed how researchers conduct their research as well as absorb information. Here are some subjects that are relevant to this field.

  • Are search engines making us dumb? The benefits and disadvantages of the search engines
  • Search engines provide results based on the preferences of their users and algorithms. Do we trust that data?
  • The benefits of reading and research could be lost due to the advent of the internet.
  • The importance and benefits of computers such as iPad as well as social media as well as other smart devices, in schools.
  • Google as well as Bing search engines What have they done to mankind in the last 10 years?
  • Is there a method to determine the amount of intelligence in search engines?
  • Answering health related questions on Google The search engine is full of falsehoods and misconceptions.
  • Does the format of blogs used by news sites in general make readers look at the blog rather than fully absorb details?
  • The search engines, and also our diminishing capabilities to read.
  • A comparison of traditional books and blogs.
  • The distinctions between reading a book and reading a digital piece.
  • Should parents be dissuading youngsters from using devices or social media?
  • What is the importance of having to be aware of the web and social media technologies for your customers? A review from a research standpoint.
  • Are search engines affecting the concentration span of young people?
  • It is crucial to teach traditional techniques to youngsters with the advent of internet-based technology.

Social wellbeing and technology issues

Technology and wellbeing are in an intimate connection in our current world and in the current. Here are a few issues related to technology and well-being that could draw your attention.

  • Our relationships with social media Positive and negative aspects that social media can bring to our lives.
  • Should everyone be limiting their time spent on social media to ensure their health?
  • The addiction of young people to smartphones - Is this something to be worried about?
  • The decrease in workplace productivity. Is social media a factor in this?
  • Technology and relationship management A comprehensive investigation
  • Sharing your personal information and news on social media - the pros and pros and.
  • The increasing rate of suicide and the impact of social media - is there a connection between these two?
  • A growing number of people are utilising social media to meet new people and develop new acquaintances. Certain experts say that technology has brought people closer together, while others contend that they are more lonely than ever. Discuss all views and express your own viewpoint.
  • Use of computers in class Examine the advantages and disadvantages.
  • How can educators make better use of technology to teach.
  • Should colleges and schools permit students to use mobile phones?
  • Should the use of smartphones during working hours be restricted? discuss the pros and cons.
  • Are social media sites strengthening family ties or weaker?
  • Do we need to have training programs that teach you how to handle social media accounts amid the age of fake news and hacking?
  • Are there any reasons to establish stricter rules to protect the privacy of social media?

Best Essay Topics on Technology

  • Goal Line Technology and Football
  • Virtual Reality Technology: Theory, Practice and Research
  • The Impact of Information Technology on Healthcare Marketing Strategy Information Technology Enabled Online Learning
  • LED Lighting and Lighting Technology in the Future
  • Technology and Its Impact on Society Information Mining Technology
  • Concepts for Understanding How Science and Technology Have Shaped the Modern World
  • The Role of Science and Technology in the Making of the Modern World
  • Technology and Personal Contact in Communications Education Issues: Differentiation and Technology
  • Technology's Negative Impact on Society Technology as a Tool for Governments
  • Successful Negotiation by Vendros Technology Company
  • Healthcare Information Technology Role Healthcare Information Technology: Information Needs and Health Information System Implementation
  • Technology History: The Cost of Technological Advances
  • Food Science and Technology of Genetic Modification
  • Technology and Communication: The Impact of Information Technologies and the Lack of Personal Contact
  • Technology of iPhone Jailbreak: Guide in 5 Steps
  • Technology and Communication in Today's World
  • Technology and Interpersonal Communication
  • Has Technology Killed Personal Contact?
  • The Effect Technology on International Relations
  • Volkswagen Company's Information Technology
  • How Technology Has Changed Communication?
  • Are We too Dependent on Technology?
  • Technology in Nursing Practice
  • Using New Technology in Nursing Practice
  • Technology's Influence on Design Evolution

Some Other Essay Topics on Technology

  • Information Technology in Emergency Cardiac Care
  • Science and Technology Roles in Society
  • Medication Errors Prevention by Information Technology Systems
  • Information Technology - Network Security Tools
  • Unix System Technology for Legal Company
  • Information Technology Project Failures in 2006-08
  • Cisco's Change in Information Technology Structure
  • Radiofrequency Identification Technology vs Barcodes
  • Training New Technology in the Classroom
  • Technology in Learning and Its Social Relevance
  • Information Technology Standards in Health Care
  • Technology for Human Capability Development
  • Adoption of New Technology Systems: Rogers' Theory
  • Technology in Nursing and Governmental Financing
  • Transitional Nursing Technology and Education
  • Wells Fargo Company's Technology and Training Systems
  • Healthcare Technology's Integration and Interoperability
  • Business Information Technology Governance Models
  • Information Technology Trainer Job Analysis
  • QR Codes as a Physical Marketing Technology
  • Reading & Technology. Curriculum & Assessment
  • Health Information Technology and Interoperability
  • Personal Isolation and Technology in Communication
  • Bring Your Own Device: Embracing Technology
  • Impact of Technology: Nicholas Carr's Views
  • Leadership in Health Information Technology
  • Reproductive Technology in Ethical Debates
  • Social Media: Science, Technology and Government
  • Technology in Health Care: Current Trends
  • How the iPhone Is Changing Technology?

Space technology related topics

The field of space technology has seen significant advancements in the last century. If this is an area that interests you, then you should think about any of these areas of space technology.

  • The implementation the use of GIS technologies in India.
  • Problems within the philosophical framework of Cosmology
  • Can man be on other planets? with no challenges and limits
  • What is the cosmic triangle?
  • A review of the future of space technology in 2050.
  • Does space technology have the potential to solve Earth's issues?
  • Should we spend more on human beings on Earth instead of exploring space?
  • Are space technologies important for the average person living on Earth?
  • Examine the role played by quantum physics in understanding nature laws.

Technologies for e-commerce

The internet has created the opportunity to compete with small and medium-sized companies across the globe. Here are some interesting concepts to think about in this area.

  • E-commerce has provided an equal playing field for small and medium-sized enterprises across the globe.
  • The ease of e-commerce in our modern world and its advantages for small-scale enterprises located in UK.
  • The increasing significance of technology for mobile transactions and the implications it has on our future.
  • The e-commerce industry is expected to determine the future of our industry.
  • How can tech-based partnerships keep the growth of E-commerce going?
  • B2B E-commerce technology - Discussion of the pros and pros and
  • Analyzing the size of the online retailing for apparel business
  • The evolution of e-commerce in the last decade - Expectations and actual.
  • How artificial intelligence can be used in the retail industry.

How do I write a tech essay?

These are steps to follow for writing a technology-related essay.

  • Find relevant information based on your needs.
  • Create an inquiry question which has to be addressed.
  • Write an essay outline that includes an outline of your essay, so that you are aware of precisely what information needs to be part of your paper.
  • Introduce yourself to give background information on the topic you intend to study.
  • Write your main body and then provide arguments and explanations to support your argument.
  • Finish with the conclusion.

Tech topics you should stay clear of

The topic ideas can determine the academic grade, regardless of whether it's in an essay, or dissertation. It is recommended to avoid the following kinds of topics which include:

  • Too broad and aren't focused.
  • They are too narrow, and there isn't enough research available on them.
  • You are not interested in this.
  • Are not within the scope of the applications of science and technology.
  • Your supervisor is not happy.
  • This issue cannot be solved without costly initial research.

Frequently asked questions

What is the best topic about technology .

7 Subjects You Must Understand to Keep Up With Technology

  • simulated intelligence. Artificial intelligence (AI), while it was initially established as a field of study in the 1950s, is now gaining significant ground.
  • deep understanding
  • Amazon Development
  • Cryptocurrency.
  • Development of mobile platforms.
  • Additional Reality.

What is technology short essay ?

The first definition of technology is the application of technical and scientific knowledge to the development, control, and design of machines. Additionally, technology aids in the creation of additional things that benefit humanity.

How do I start an essay about technology ?

How to Conduct Research for Your Technology Essay.

  • Recognize the Assignment.
  • Look for an intriguing technology topic.
  • Read about your subject and find relevant sources.
  • Select a Research Question.
  • Use keywords to Locate Additional Sources.
  • As You Read the Sources, Take Notes.
  • Introduction.
  • Sections of the body.

What should I write about technology ?

  • How much has technology altered how people communicate?
  • Choose one modern invention (such as the Internet, television, electric vehicles, cell phones, etc.).
  • The first technical discoveries in the history of technology.
  • Without the use of contemporary technology, how would life be?

What are the 8 advantages of technology ?

Contents page.

  • Accessibility of Information
  • reduces time.
  • Ease of Movement.
  • improved communication techniques.
  • Cost-effectiveness.
  • Innovation in Several Sectors.
  • Better Banking.
  • Improved Learning Methods.

What are 5 positive effects of technology ?

  • With the use of modern technology, improvements have also been achieved in communication, trade, and statistics.
  • precise statistics In the past, statistics were incredibly scarce.
  • Improved Communication
  • Flower Trade
  • Increasing the production of income.
  • Influence on advertising
  • Medical investigation

What is the best research title for technology ?

  • virtual reality's effects on education
  • 5 main robotics domains.
  • Biometrics' perils and risks.
  • Medicine and nanotechnology
  • The effects of digital technology on globalization.
  • Is open-source software more secure than proprietary software?
  • the distinction between machine learning and deep learning.

Why technology is important in our life ?

Information sharing, food preparation, clothing cleaning, and transportation are all things we do with the help of technology. However, even commonplace technology like door locks, floor tiles, and furniture are things we now take for granted and that we consider to be less spectacular than 3D printing or self-driving automobiles.

How do I write a tech essay ?

  • Identify pertinent data depending on your requirements.
  • Create a research question that needs to be answered.
  • To know exactly what material has to be in your article, create an essay outline that comprises an outline of your essay.
  • As you introduce yourself, briefly discuss the subject you plan to study.
  • After writing your primary body, reinforce your thesis with justifications and arguments.
  • finalize your conclusion.

Why is technology good for students ?

Technology offers students quick access to knowledge, rapid learning, and enjoyable chances to put what they have learned into practice. Particularly in STEM, it allows students to go deeper into challenging ideas and explore new disciplines.

What are three good reasons for technology ?

  • Communication is improved through technology.
  • Technology increases efficiency.
  • Technology Aids in the Launch of New Businesses.

What are the 7 benefits of technology in education ?

  • Integrated education.
  • Gamification.
  • accessible distance education
  • Experience with personalized education.
  • favored among students.
  • a hybrid learning setting.
  • improved involvement.

What is the most important new technology for solving world problems ?

The Internet is the most significant new technology that will address all of the world's key difficulties, including all major social problems like the high population rate, poverty, hunger, hygiene issues, and more, by raising awareness of these and other critical social issues.

What is the most important new technology ?

Artificial Intelligence (AI)

What technologies can help the students ?

Excellent New Technologies for Students

  • clever pens.
  • electronic books.
  • tech-related bags.
  • smart lamps
  • electronic keyboards.
  • headphones with noise cancellation.
  • flash drives with encryption.
  • more educational technology.

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Technology is the study of scientific knowledge with the goal of developing tools and procedures that have the potential to transform the world by making practically every aspect of our lives more efficient. Our lives have been made simpler by technology, and everyone depends on it completely.

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First and foremost, technology is the process of developing, maintaining, and designing machines using technical and scientific knowledge. Technology also aids in the production of other things that benefit humanity.

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How technology has changed our education ?

Effective learning possibilities have multiplied in the educational system as a result. With the help of new innovative platforms provided by technology, instructors and students may connect, debate, and share knowledge about their learning.

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Jessica Grose

Get tech out of the classroom before it’s too late.

An illustration of a large open laptop computer with many teeth, biting down on a small schoolhouse.

By Jessica Grose

Opinion Writer

Jaime Lewis noticed that her eighth-grade son’s grades were slipping several months ago. She suspected it was because he was watching YouTube during class on his school-issued laptop, and her suspicions were validated. “I heard this from two of his teachers and confirmed with my son: Yes, he watches YouTube during class, and no, he doesn’t think he can stop. In fact, he opted out of retaking a math test he’d failed, just so he could watch YouTube,” she said.

She decided to do something about it. Lewis told me that she got together with other parents who were concerned about the unfettered use of school-sanctioned technology in San Luis Coastal Unified School District, their district in San Luis Obispo, Calif. Because they knew that it wasn’t realistic to ask for the removal of the laptops entirely, they went for what they saw as an achievable win: blocking YouTube from students’ devices. A few weeks ago, they had a meeting with the district superintendent and several other administrators, including the tech director.

To bolster their case, Lewis and her allies put together a video compilation of clips that elementary and middle school children had gotten past the district’s content filters.

Their video opens on images of nooses being fitted around the necks of the terrified women in the TV adaptation of “The Handmaid’s Tale.” It ends with the notoriously violent “Singin’ in the Rain” sequence from “A Clockwork Orange.” (Several versions of this scene are available on YouTube. The one she pointed me to included “rape scene” in the title.) Their video was part of a PowerPoint presentation filled with statements from other parents and school staff members, including one from a middle school assistant principal, who said, “I don’t know how often teachers are using YouTube in their curriculum.”

That acknowledgment gets to the heart of the problem with screens in schools. I heard from many parents who said that even when they asked district leaders how much time kids were spending on their screens, they couldn’t get straight answers; no one seemed to know, and no one seemed to be keeping track.

Eric Prater, the superintendent of the San Luis Coastal Unified School District, told me that he didn’t realize how much was getting through the schools’ content filters until Lewis and her fellow parents raised concerns. “Our tech department, as I found out from the meeting, spends quite a lot of time blocking certain websites,” he said. “It’s a quite time-consuming situation that I personally was not aware of.” He added that he’s grateful this was brought to his attention.

I don’t think educators are the bad guys here. Neither does Lewis. In general, educators want the best for students. The bad guys, as I see it, are tech companies.

One way or another, we’ve allowed Big Tech’s tentacles into absolutely every aspect of our children’s education, with very little oversight and no real proof that their devices or programs improve educational outcomes. Last year Collin Binkley at The Associated Press analyzed public records and found that “many of the largest school systems spent tens of millions of dollars in pandemic money on software and services from tech companies, including licenses for apps, games and tutoring websites.” However, he continued, schools “have little or no evidence the programs helped students.”

It’s not just waste, very likely, of taxpayer money that’s at issue. After reading many of the over 900 responses from parents and educators to my questionnaire about tech in schools and from the many conversations I had over the past few weeks with readers, I’m convinced that the downsides of tech in schools far outweigh the benefits.

Though tech’s incursion into America’s public schools — particularly our overreliance on devices — hyperaccelerated in 2020, it started well before the Covid-19 pandemic. Google, which provides the operating system for lower-cost Chromebooks and is owned by the same parent company as YouTube, is a big player in the school laptop space, though I also heard from many parents and teachers whose schools supply students with other types and brands of devices.

As my newsroom colleague Natasha Singer reported in 2017 (by which point “half the nation’s primary- and secondary-school students” were, according to Google, using its education apps), “Google makes $30 per device by selling management services for the millions of Chromebooks that ship to schools. But by habituating students to its offerings at a young age, Google obtains something much more valuable”: potential lifetime customers.

The issue goes beyond access to age-inappropriate clips or general distraction during school hours. Several parents related stories of even kindergartners reading almost exclusively on iPads because their school districts had phased out hard-copy books and writing materials after shifting to digital-only curriculums. There’s evidence that this is harmful: A 2019 analysis of the literature concluded that “readers may be more efficient and aware of their performance when reading from paper compared to screens.”

“It seems to be a constant battle between fighting for the students’ active attention (because their brains are now hard-wired for the instant gratification of TikTok and YouTube videos) and making sure they aren’t going to sites outside of the dozens they should be,” Nicole Post, who teaches at a public elementary school in Missouri, wrote to me. “It took months for students to listen to me tell a story or engage in a read-aloud. I’m distressed at the level of technology we’ve socialized them to believe is normal. I would give anything for a math or social studies textbook.”

I’ve heard about kids disregarding teachers who tried to limit tech use, fine motor skills atrophying because students rarely used pencils and children whose learning was ultimately stymied by the tech that initially helped them — for example, students learning English as a second language becoming too reliant on translation apps rather than becoming fluent.

Some teachers said they have programs that block certain sites and games, but those programs can be cumbersome. Some said they have software, like GoGuardian, that allows them to see the screens of all the students in their classes at once. But classroom time is zero sum: Teachers are either teaching or acting like prison wardens; they can’t do both at the same time.

Resources are finite. Software costs money . Replacing defunct or outdated laptops costs money . When it comes to I.T., many schools are understaffed . More of the money being spent on tech and the maintenance and training around the use of that tech could be spent on other things, like actual books. And badly monitored and used tech has the most potential for harm.

I’ve considered the counterarguments: Kids who’d be distracted by tech would find something else to distract them; K-12 students need to gain familiarity with tech to instill some vague work force readiness.

But on the first point, I think other forms of distraction — like talking to friends, doodling and daydreaming — are better than playing video games or watching YouTube because they at least involve children engaging with other children or their own minds. And there’s research that suggests laptops are uniquely distracting . One 2013 study found that even being next to a student who is multitasking on a computer can hurt a student’s test scores.

On the second point, you can have designated classes to teach children how to keyboard, code or use software that don’t require them to have laptops in their hands throughout the school day. And considering that various tech companies are developing artificial intelligence that, we’re meant to understand, will upend work as we know it , whatever tech skills we’re currently teaching will probably be obsolete by the time students enter the work force anyway. By then, it’ll be too late to claw back the brain space of our nation’s children that we’ve already ceded. And for what? So today’s grade schoolers can be really, really good at making PowerPoint presentations like the ones they might one day make as white-collar adults?

That’s the part that I can’t shake: We’ve let tech companies and their products set the terms of the argument about what education should be, and too many people, myself included, didn’t initially realize it. Companies never had to prove that devices or software, broadly speaking, helped students learn before those devices had wormed their way into America’s public schools. And now the onus is on parents to marshal arguments about the detriments of tech in schools.

Holly Coleman, a parent of two who lives in Kansas and is a substitute teacher in her district, describes what students are losing:

They can type quickly but struggle to write legibly. They can find info about any topic on the internet but can’t discuss that topic using recall, creativity or critical thinking. They can make a beautiful PowerPoint or Keynote in 20 minutes but can’t write a three-page paper or hand-make a poster board. Their textbooks are all online, which is great for the seams on their backpack, but tangible pages under your fingers literally connect you to the material you’re reading and learning. These kids do not know how to move through their day without a device in their hand and under their fingertips. They never even get the chance to disconnect from their tech and reconnect with one another through eye contact and conversation.

Jonathan Haidt’s new book, “The Anxious Generation: How the Great Rewiring of Childhood is Causing an Epidemic of Mental Illness,” prescribes phone-free schools as a way to remedy some of the challenges facing America’s children. I agree that there’s no place for smartphones on a K-12 campus. But if you take away the phones and the kids still have near-constant internet connectivity on devices they have with them in every class, the problem won’t go away.

When Covid hit and screens became the only way for millions of kids to “attend” school, not having a personal device became an equity issue. But we’re getting to a point where the opposite may be true. According to the responses to my questionnaire, during the remote-school era, private schools seemed to rely far less on screens than public schools, and many educators said that they deliberately chose lower-tech school environments for their own children — much the same way that some tech workers intentionally send their kids to screen-free schools.

We need to reframe the entire conversation around tech in schools because it’s far from clear that we’re getting the results we want as a society and because parents are in a defensive crouch, afraid to appear anti-progress or unwilling to prepare the next generation for the future. “I feel like a baby boomer attacking like this,” said Lewis.

But the drawbacks of constant screen time in schools go beyond data privacy, job security and whether a specific app increases math performance by a standard deviation. As Lewis put it, using tech in the classroom makes students “so passive, and it requires so little agency and initiative.” She added, “I’m very concerned about the species’ ability to survive and the ability to think critically and the importance of critical thinking outside of getting a job.”

If we don’t hit pause now and try to roll back some of the excesses, we’ll be doing our children — and society — a profound disservice.

The good news is that sometimes when the stakes become clear, educators respond: In May, Dr. Prater said, “we’re going to remove access to YouTube from our district devices for students.” He added that teachers will still be able to get access to YouTube if they want to show instructional videos. The district is also rethinking its phone policy to cut down on personal device use in the classroom. “For me,” he said, “it’s all about how do you find the common-sense approach, going forward, and match that up with good old-fashioned hands-on learning?” He knows technology can cause “a great deal of harm if we’re not careful.”

Jessica Grose is an Opinion writer for The Times, covering family, religion, education, culture and the way we live now.

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The “Epic Row” Over a New Epoch

By Elizabeth Kolbert

An image of an Australian landscape painted over with orange and red.

A few months into the third millennium, a group called the International Geosphere-Biosphere Programme (I.G.B.P.) held a meeting in Cuernavaca, Mexico. Among the researchers in attendance was Paul Crutzen, an atmospheric chemist best known for his research on ozone-depleting chemicals, such as chlorofluorocarbons. For this work, Crutzen, a Dutchman living in Germany, had received a Nobel Prize, in 1995. In his Nobel lecture, he noted that, given humanity’s heedlessness, it had got off lightly. Millions of pounds of CFCs had been released into the air before anyone had considered the possible consequences. As a result of the chemicals’ behavior in the stratosphere, a “hole” had opened up in the ozone layer over Antarctica. But, if CFCs had turned out to behave just slightly differently, the hole would have stretched from pole to pole before scientists had even had the tools to measure it.

“I can only conclude that mankind has been extremely lucky,” Crutzen said.

At the I.G.B.P. meeting in Cuernavaca, Crutzen found himself growing agitated. His colleagues kept referring to the Holocene, the geological epoch that began at the close of the last ice age, about twelve thousand years ago. At the dawn of the Holocene, the global population was maybe four million—barely enough to fill a city like Sydney or St. Petersburg. By the time of the meeting in Mexico, there were more than six billion people on the planet, and human activity was fundamentally altering such basic Earth processes as the carbon cycle.

“Stop using the word ‘Holocene,’ ” Crutzen blurted out. “We’re not in the Holocene any more. We’re in the . . . ” He paused, searching for the right word. “We’re in the Anthropocene!” During the next coffee break, Crutzen’s neologism was the main topic of conversation. Someone suggested that he copyright the term.

As it turned out, the Anthropocene wasn’t Crutzen’s to claim. Eugene Stoermer, a biologist at the University of Michigan, had coined the word back in the nineteen-eighties, out of much the same frustration. Crutzen got in touch with Stoermer, and the two wrote an essay for the I.G.B.P. newsletter, laying out their case for a new age. Human activities, the pair argued, were altering the planet faster and more dramatically than the geological forces that had shaped it for most of its history.

“It seems to us more than appropriate to emphasize the central role of mankind” by using “the term ‘anthropocene’ for the current geological epoch,” the pair wrote. Not many people read the I.G.B.P. newsletter, so in 2002 Crutzen refashioned the essay for the journal Nature . He listed some of the ways that humans were altering the planet: chopping down rain forests, messing with the climate, and manufacturing novel chemicals, such as CFCs. Once again, Crutzen stressed how fortunate humanity had been so far. Had the ozone layer sustained more damage, large parts of the world could have been rendered uninhabitable. “More by luck than by wisdom, this catastrophic situation did not develop,” he observed.

Many researchers found Crutzen and Stoermer’s term useful. Soon the word “Anthropocene” began popping up in scientific papers. This, in turn, piqued the interest of stratigraphers—the subset of geologists who maintain the planet’s official timetable, the International Chronostratigraphic Chart. Had the Earth really entered a new epoch, in the stratigraphic sense of the term? And, if so, when? The International Commission on Stratigraphy (I.C.S.) set up the Anthropocene Working Group (A.W.G.) to look into the matter. It was still working away last month, when, in a vote that one group member described to me as “Putinesque,” a subcommittee of the I.C.S. decided against adding the Anthropocene to the timetable. The vote might have marked the end of the story, were it not that it was probably just the beginning. As another geologist put it to me, “Voting down the Anthropocene is a bit like trying to vote down plate tectonics. It’s real, it’s there, and we are going to have to deal with it.”

Stratigraphers are used to thinking in vast stretches of time. The International Chronostratigraphic Chart starts with the Hadean eon, which began with the birth of the planet, 4.5 billion years ago. The Hadean lasted five hundred million years and was succeeded by the Archean eon, which went on (and on and on) for 1.5 billion years. The Permian period spanned nearly fifty million years, the Cretaceous period eighty million. Within these periods there were many sub-periods—technically known as epochs—which also lasted a long time. The Cisuralian epoch of the Permian, for example, stretched over twenty-six million years.

But, the closer the chart gets to the present, the narrower the divisions become. The second most recent geological period, the Neogene, lasted just twenty million years. The current period, the Quaternary, began with the start of the ice ages, a mere 2.58 million years ago. The Quaternary is further divided into two epochs—the Pleistocene, which spanned 2.57 million years, and the Holocene, which, for now, is still ongoing.

To mark the boundaries between the various epochs and periods, the I.C.S. relies on what are formally called “global boundary stratotype sections and points” and informally known as “golden spikes.” For the most part, golden spikes are layers of rock that contain evidence of some notable shift in Earth’s history—a reversal of the planet’s magnetic poles, say, or the disappearance of a fossilized species. The golden spike for the start of the Triassic period, for example, is a layer of rock found in Meishan, China, and the shift it records is a mass extinction that killed off something like ninety per cent of all species on Earth. (The Chinese have set up a park in Meishan, where visitors can view the two-hundred-and-fifty-million-year-old rock layer in an exposed cliffside.) With golden spikes, again, the closer you get to the present, the more the present intrudes. In the case of the Holocene, the golden spike is a layer in an ice core from Greenland that’s stored in a freezer in Copenhagen. The layer consists of the compressed remains of snow that fell eleven thousand seven hundred years ago, which corresponds to the end of a cold snap known as the Younger Dryas.

With the exception of the Holocene, the start dates for geological ages have been determined millions of years after the fact. This means that whatever signal is being used to set them has withstood the test of time. The rocks of the Anthropocene, of course, do not yet exist. When the Anthropocene Working Group was formed, in 2009, its first task was to decide whether human impacts on the planet would still be discernible millions of years from now.

After several years of study, the group decided that the answer was yes. The carbon emissions from burning fossil fuels will leave a permanent signature in the rocks of the future, as will the fallout from nuclear testing. Novel ecosystems that people have created by moving plants and animals around the world will produce novel fossil assemblages. Meanwhile, traces of some of the trillions of tons of stuff humans have generated, from transistors to tanker ships, will be preserved, meaning that a whole new class of fossils will appear in the record—so-called technofossils. Before aluminum smelting was invented, in the nineteenth century, aluminum existed on Earth only in combination with other elements. Future geologists will thus be able to distinguish the current epoch via the remains of beer cans—the Bud Light layer.

These and other “distinctive attributes of the recent geological record support the formalization of the Anthropocene as a stratigraphic entity,” members of the A.W.G. noted in a paper that appeared in Science in 2016.

When Crutzen and Stoermer initially proposed the Anthropocene, they suggested that it had begun with the first stirrings of the Industrial Revolution, in the late eighteenth century. The A.W.G. considered this possibility, but ultimately rejected it. In the decades following the Second World War, resource consumption skyrocketed—a development that’s become known as the Great Acceleration. The fantastic growth in the production of new materials such as aluminum and plastic, the group decided, made a date closer to 1950 a more logical starting point for the new epoch.

Last summer, under pressure from the International Commission on Stratigraphy to finish its work, the A.W.G. announced its proposal for a golden spike. It chose a marker similar to the one used for the base of the Holocene, although, in this case, the core came not from an ice sheet but from a lake bottom.

Crawford Lake, which is about thirty miles southwest of Toronto, is what’s known as meromictic, which means that its top and bottom waters don’t mix. As a result of this and other unusual qualities, everything that falls into the lake, from pollen grains to radioactive particles, gets preserved in layers of sediment that can be very precisely dated. The idea was to designate the base of the Anthropocene as the layer of Crawford Lake sediment laid down in 1952—and, more specifically, as the 1952 layer preserved in one particular core kept in a freezer in Quebec. (The United States conducted the first H-bomb tests in 1952, and the fallout from these clearly shows up in the lake bed as a spike in plutonium.) The working group announced its choice of the Crawford Lake core while stratigraphers from around the world were gathered for a conference in Lille, France. But, in a sign of things to come, the group was barred from making the announcement at the conference hall and had to rent a room in a nearby hotel.

A photograph of a forested cliff in Australia painted over with blue shades

In the roughly two and a half centuries since the field of geology was founded, debates over dividing time have often turned nasty. In the eighteen-thirties, for example, several of Britain’s most prominent geologists traded insults in a dispute over rocks from what’s now known as the Devonian period, some four hundred million years ago. One of the parties to the controversy, Henry De la Beche, was a talented artist, and he lampooned his critics in a cartoon that pictured them facing a man with a large nose.

“This, gentlemen, is my nose,” the man says.

“My dear fellow!” the critics respond. “Your account of yourself generally may be very well, but as we have classed you, before we saw you, among men without noses, you cannot possibly have a nose.”

More recently, a fight over whether the Quaternary period should be absorbed into the Neogene caused a rift in the geological community that took many years—and almost as many votes—to resolve. (At one point, the International Union of Geological Sciences [I.U.G.S.], the parent organization of the International Commission on Stratigraphy, withheld funding from the I.C.S. over its handling of the dispute.) The Quaternary managed to survive, but many geologists who work on the Neogene viewed the decision as wrongheaded, and, after the final vote was taken, in 2009, petitioned to have it overturned.

“You come to the Neogene-Quaternary boundary, and there is nothing there,” one stratigrapher complained to Nature .

Even given this history, the fight over the Anthropocene has been a bitter one. On one side are those geologists who argue, à la Stoermer and Crutzen, that human activity has so altered the planet that it no longer makes sense to say we live in the Holocene. The most outspoken members of this camp tend—perhaps not surprisingly—to be members of the Anthropocene Working Group.

“To suddenly have these changes and still call it the Holocene, it becomes a little bit like the way some oceanographers talk about coral reefs,” Jan Zalasiewicz, a British geologist who led the Anthropocene Working Group for many years, told me. “It’s become a kind of zombie epoch. It’s formally still here, but the conditions that characterized it no longer exist.”

In the other camp are those who argue that the Anthropocene, pretty much by definition, lies outside the purview of stratigraphy.

“The stratigraphic record is the past,” Stanley Finney, a geologist at California State University who’s also the secretary-general of the International Union of Geological Sciences, wrote with Lucy Edwards, a stratigrapher with the U.S. Geological Survey. The Anthropocene, by contrast, “is the present and future.”

“It’s something we would need to look back on to understand whether this boundary has a function,” Philip Gibbard, a professor emeritus at the University of Cambridge who’s now the secretary-general of the I.C.S., told me. “Those who propose the boundary would say, Well, the Anthropocene is going to continue on into the future. But I’m afraid we don’t deal with the future as geologists. We only deal with what's preserved in the rock record.”

The simmering conflict came to a boil this past winter. As with many such disputes, this one morphed from a substantive argument into a procedural one. The members of the A.W.G. felt that they’d been railroaded by the I.C.S. into submitting a formal proposal before they were ready to. They also complained that, in the run-up to the vote, Anthropocene proponents, including Zalasiewicz, had been sidelined. (At the time, Zalasiewicz was the chairman of the voting subcommittee—the I.C.S.’s Subcommission on Quaternary Stratigraphy [S.Q.S.]—and the vote was held over his objections.)

“It was like a palace coup, basically,” Colin Waters, the chairman of the A.W.G. at the time, told me.

The final tally—twelve against declaring a new epoch, four in favor, and two abstentions—was released to the Times before most members of the A.W.G. had learned of it. Zalasiewicz—who, along with one of the other subcommittee members, had refused to cast a ballot—questioned the legitimacy of the tally on several grounds, including the fact that he, the chair, had not called it. His objections were quickly brushed aside by the I.C.S.’s governing board.

“ Quest to declare Anthropocene an epoch descends into epic row ,” a headline in the Guardian read.

“I can assure you that the claims that have been made by certain members of the Anthropocene Working Group are rubbish,” Gibbard, who, in addition to serving on the I.C.S. executive board, is a member of the Quaternary subcommission, told me. “They’re just sore losers. The trouble is that the Anthropocene Working Group had developed into nothing more than a—what can I say?—kind of a cult.”

In the interest of full disclosure, I should note that I am an Anthropocene partisan. This is not to say I have any particular knowledge of stratigraphy (though, with Zalasiewicz, I once visited the golden spike for the base of the Silurian period, a layer of rock in a cliffside in Scotland). It’s that I find the Anthropocene a helpful neologism—indeed, a necessary one. It’s a succinct way of communicating a messy and profoundly consequential reality. Human activity has become the major driver of change on Earth. And many of the ways in which we’re transforming the planet—by driving once-widespread species extinct or spreading microplastics around the globe—are irreversible across timescales both human and geological.

The term’s utility is, presumably, the reason that it was so widely adopted following Crutzen’s outburst. And its wide adoption, in turn, helps to explain why the recent I.C.S. debate became so charged.

Most laypeople don’t much care about, say, the start date of the Pleistocene. (It was recently moved back almost eight hundred thousand years.) Such abstruse questions seem far removed from present-day concerns. But the debate about the Anthropocene is about the present. It’s where stratigraphy meets the news cycle. Long before the I.C.S. had a chance to rule on it, the Anthropocene had become the subject of movies, books, and art exhibitions. The work of the A.W.G., meanwhile, was generously covered in the press. When the working group announced its decision to plant a golden spike in Crawford Lake, outlets from the Hindustan Times to Deutsche Welle ran stories on the choice.

Many geologists born before the proposed Anthropocene start date seem to have begrudged the would-be time period all this attention. “The Anthropocene epoch was pushed through the media from the beginning—a publicity drive,” Finney, the I.U.G.S. secretary-general, observed to Science dismissively.

The future of the Anthropocene as an official stratigraphic unit is, at this point, unclear. The A.W.G. dissolved after the vote, but, as several members of the group pointed out to me, the leadership of the I.C.S. is due to turn over this summer, after the quadrennial International Geological Congress, set to take place in South Korea. Kim Cohen, a Dutch geologist who, at fifty, is one of the younger members of the Subcommission on Quaternary Stratigraphy and who cast a “yes” vote for the new epoch, told me that he expects to see the Anthropocene added to the geological timescale within his life.

“I think many of my fellow S.Q.S. members will not see it,” he added by way of clarification.

But the Anthropocene’s future as an informal time period is assured. It’s too apt—and too important—a term to be abandoned. As Paul Crutzen pointed out in 2002, barring a “meteorite impact, a world war or a pandemic,” humans “will remain a major environmental force for many millennia.” Science recently summed up the situation this way: “ The Anthropocene is dead. Long live the Anthropocene .”

Crutzen died in 2021, so it’s impossible to know what he would have said about the recent I.C.S. vote. I imagine, though, that he would have responded to it much as he did to a question I posed to him back in 2010. What was important about the Anthropocene, he told me at that time, was not whether it was included in geology texts, but whether it prompted people to think more carefully about the consequences of their collective actions.

“What I hope,” he said, “is that the term ‘Anthropocene’ will be a warning to the world.” ♦

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About 1 in 5 U.S. teens who’ve heard of ChatGPT have used it for schoolwork

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Roughly one-in-five teenagers who have heard of ChatGPT say they have used it to help them do their schoolwork, according to a new Pew Research Center survey of U.S. teens ages 13 to 17. With a majority of teens having heard of ChatGPT, that amounts to 13% of all U.S. teens who have used the generative artificial intelligence (AI) chatbot in their schoolwork.

A bar chart showing that, among teens who know of ChatGPT, 19% say they’ve used it for schoolwork.

Teens in higher grade levels are particularly likely to have used the chatbot to help them with schoolwork. About one-quarter of 11th and 12th graders who have heard of ChatGPT say they have done this. This share drops to 17% among 9th and 10th graders and 12% among 7th and 8th graders.

There is no significant difference between teen boys and girls who have used ChatGPT in this way.

The introduction of ChatGPT last year has led to much discussion about its role in schools , especially whether schools should integrate the new technology into the classroom or ban it .

Pew Research Center conducted this analysis to understand American teens’ use and understanding of ChatGPT in the school setting.

The Center conducted an online survey of 1,453 U.S. teens from Sept. 26 to Oct. 23, 2023, via Ipsos. Ipsos recruited the teens via their parents, who were part of its KnowledgePanel . The KnowledgePanel is a probability-based web panel recruited primarily through national, random sampling of residential addresses. The survey was weighted to be representative of U.S. teens ages 13 to 17 who live with their parents by age, gender, race and ethnicity, household income, and other categories.

This research was reviewed and approved by an external institutional review board (IRB), Advarra, an independent committee of experts specializing in helping to protect the rights of research participants.

Here are the  questions used for this analysis , along with responses, and its  methodology .

Teens’ awareness of ChatGPT

Overall, two-thirds of U.S. teens say they have heard of ChatGPT, including 23% who have heard a lot about it. But awareness varies by race and ethnicity, as well as by household income:

A horizontal stacked bar chart showing that most teens have heard of ChatGPT, but awareness varies by race and ethnicity, household income.

  • 72% of White teens say they’ve heard at least a little about ChatGPT, compared with 63% of Hispanic teens and 56% of Black teens.
  • 75% of teens living in households that make $75,000 or more annually have heard of ChatGPT. Much smaller shares in households with incomes between $30,000 and $74,999 (58%) and less than $30,000 (41%) say the same.

Teens who are more aware of ChatGPT are more likely to use it for schoolwork. Roughly a third of teens who have heard a lot about ChatGPT (36%) have used it for schoolwork, far higher than the 10% among those who have heard a little about it.

When do teens think it’s OK for students to use ChatGPT?

For teens, whether it is – or is not – acceptable for students to use ChatGPT depends on what it is being used for.

There is a fair amount of support for using the chatbot to explore a topic. Roughly seven-in-ten teens who have heard of ChatGPT say it’s acceptable to use when they are researching something new, while 13% say it is not acceptable.

A diverging bar chart showing that many teens say it’s acceptable to use ChatGPT for research; few say it’s OK to use it for writing essays.

However, there is much less support for using ChatGPT to do the work itself. Just one-in-five teens who have heard of ChatGPT say it’s acceptable to use it to write essays, while 57% say it is not acceptable. And 39% say it’s acceptable to use ChatGPT to solve math problems, while a similar share of teens (36%) say it’s not acceptable.

Some teens are uncertain about whether it’s acceptable to use ChatGPT for these tasks. Between 18% and 24% say they aren’t sure whether these are acceptable use cases for ChatGPT.

Those who have heard a lot about ChatGPT are more likely than those who have only heard a little about it to say it’s acceptable to use the chatbot to research topics, solve math problems and write essays. For instance, 54% of teens who have heard a lot about ChatGPT say it’s acceptable to use it to solve math problems, compared with 32% among those who have heard a little about it.

Note: Here are the  questions used for this analysis , along with responses, and its  methodology .

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Olivia Sidoti is a research assistant focusing on internet and technology research at Pew Research Center

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Jeffrey Gottfried is an associate director focusing on internet and technology research at Pew Research Center

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Amanda Hoover

Students Are Likely Writing Millions of Papers With AI

Illustration of four hands holding pencils that are connected to a central brain

Students have submitted more than 22 million papers that may have used generative AI in the past year, new data released by plagiarism detection company Turnitin shows.

A year ago, Turnitin rolled out an AI writing detection tool that was trained on its trove of papers written by students as well as other AI-generated texts. Since then, more than 200 million papers have been reviewed by the detector, predominantly written by high school and college students. Turnitin found that 11 percent may contain AI-written language in 20 percent of its content, with 3 percent of the total papers reviewed getting flagged for having 80 percent or more AI writing. (Turnitin is owned by Advance, which also owns Condé Nast, publisher of WIRED.) Turnitin says its detector has a false positive rate of less than 1 percent when analyzing full documents.

ChatGPT’s launch was met with knee-jerk fears that the English class essay would die . The chatbot can synthesize information and distill it near-instantly—but that doesn’t mean it always gets it right. Generative AI has been known to hallucinate , creating its own facts and citing academic references that don’t actually exist. Generative AI chatbots have also been caught spitting out biased text on gender and race . Despite those flaws, students have used chatbots for research, organizing ideas, and as a ghostwriter . Traces of chatbots have even been found in peer-reviewed, published academic writing .

Teachers understandably want to hold students accountable for using generative AI without permission or disclosure. But that requires a reliable way to prove AI was used in a given assignment. Instructors have tried at times to find their own solutions to detecting AI in writing, using messy, untested methods to enforce rules , and distressing students. Further complicating the issue, some teachers are even using generative AI in their grading processes.

Detecting the use of gen AI is tricky. It’s not as easy as flagging plagiarism, because generated text is still original text. Plus, there’s nuance to how students use gen AI; some may ask chatbots to write their papers for them in large chunks or in full, while others may use the tools as an aid or a brainstorm partner.

Students also aren't tempted by only ChatGPT and similar large language models. So-called word spinners are another type of AI software that rewrites text, and may make it less obvious to a teacher that work was plagiarized or generated by AI. Turnitin’s AI detector has also been updated to detect word spinners, says Annie Chechitelli, the company’s chief product officer. It can also flag work that was rewritten by services like spell checker Grammarly, which now has its own generative AI tool . As familiar software increasingly adds generative AI components, what students can and can’t use becomes more muddled.

Detection tools themselves have a risk of bias. English language learners may be more likely to set them off; a 2023 study found a 61.3 percent false positive rate when evaluating Test of English as a Foreign Language (TOEFL) exams with seven different AI detectors. The study did not examine Turnitin’s version. The company says it has trained its detector on writing from English language learners as well as native English speakers. A study published in October found that Turnitin was among the most accurate of 16 AI language detectors in a test that had the tool examine undergraduate papers and AI-generated papers.

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Schools that use Turnitin had access to the AI detection software for a free pilot period, which ended at the start of this year. Chechitelli says a majority of the service’s clients have opted to purchase the AI detection. But the risks of false positives and bias against English learners have led some universities to ditch the tools for now. Montclair State University in New Jersey announced in November that it would pause use of Turnitin’s AI detector. Vanderbilt University and Northwestern University did the same last summer.

“This is hard. I understand why people want a tool,” says Emily Isaacs, executive director of the Office of Faculty Excellence at Montclair State. But Isaacs says the university is concerned about potentially biased results from AI detectors, as well as the fact that the tools can’t provide confirmation the way they can with plagiarism. Plus, Montclair State doesn’t want to put a blanket ban on AI, which will have some place in academia. With time and more trust in the tools, the policies could change. “It’s not a forever decision, it’s a now decision,” Isaacs says.

Chechitelli says the Turnitin tool shouldn’t be the only consideration in passing or failing a student. Instead, it’s a chance for teachers to start conversations with students that touch on all of the nuance in using generative AI. “People don’t really know where that line should be,” she says.

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  • by Greg Watry
  • April 23, 2024

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Manvir Singh , an assistant professor in the Department of Anthropology, recently published an essay in The New Yorker titled " Don't Believe What They're Telling You About Misinformation. " 

Manvir Singh

"Experts who write fearfully about misinformation often depict humans as gullible saps whose zombie mind are infected by lies spread by social media," Singh wrote about his essay on X . "These writers get something fundamentally wrong (about) how beliefs work."  

Singh directs the Integrative Anthropology Lab, "which combines evolutionary, cognitive and sociocultural methods and theory to understand the nature and origins of human behavior, particularly ubiquitous sociocultural traditions such as shamanism, witchcraft, story and music." His research interests also extend to ancestral social organization, drug use and mystical experiences, and evolutionary approaches to mental health.   

Two men sit on the ground, facing each other with one wearing headphones and the other looking at his laptop computer

Learn More About Singh's Research

Sourcing songs from across the globe, Singh and his fellow researchers found that people from different types of societies can successfully identify a song’s type by how it sounds, regardless of the language of its words. 

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essay about latest technology

Chinese Entities Defy U.S. Export Ban

T he latest Nvidia AI chips used by China for its research institutes and universities were recently sold through resellers. The resellers managed to obtain high-end AI chips from the the U.S. despite the U.S. widening the ban prohibiting sales of such technology last year. 

According to Reuters’s review of hundreds of tender papers, China’s supercomputer firms won the high-performance Dell Technologies Inc. products. These products were produced by Super Micro Computer Inc. and Gigabyte Technology Co Ltd. and have contained Nvidia’s latest chips worldwide for at least three weeks since the U.S. announced an expansion of the embargo on November 17.

Chinese entities’ acquisition through resellers

The servers obtained included some of Nvidia’s top chips mentioned in the earlier historically unreported tenders up to the period between November 20 and February 28. Though the USA blocks the export of Nvidia and its Chinese partners’ chips meant for use in 3A chips or above to China, buying and selling other chip types is not immoral in China.

The 11 outlets where the chips were sold were just little-known Chinese supermarkets. It was unknown whether they used up supplies before the U.S. imposed stringent new reforms on chip exports in November.

Although Reuters managed to reach Nvidia concerning the tenders, they mentioned that those two tenders specifically require previously exported products widely available before the embargo was to be used. According to the leader of communication, however, they do not detail who, out of all the partners, should be sanctioned, and the share that such products represent is an undetectable fraction of the ones worldwide.

The buyers’ group included the Chinese Academy of Sciences, Shandong Artificial Intelligence Institute, Hubei Earthquake Management Agency, Shandong and Southwest universities, a science and tech investment firm belonging to the Heilongjiang provincial government, a state-owned aviation research centre, and a space science research centre.

Normally, we would get responses from Chinese buyers and small batch sellers who are likely to be responsible for the selling or buying process.

Washington (US)- based partner Daniel Gerkin from the law firm Kirkland & Ellis stated that the Nvidia chips might have been diverted to China without the manufacturer’s knowledge, as they have been curtailed, making visibility to suppliers very difficult.

If the manufacturer had done the required due diligence,

“it appears almost impossible for the U.S. government to file formal charges as there is not enough evidence.”

Strategic impact

According to the earlier statement by the United States Department of Commerce cited by Reuters , the Department cannot comment on any actual investigations. Still, the Bureau of Industry and Security, its federal agency, monitors any infringement of restricted chips, conducts end-use checks, and considers any possible breaches.

The spokesperson added that one of the main functions of officials is to investigate any alleged offenses, including using film-producing shell companies.

Nvidia says that systems built with its graphic processing units, resold by third parties and used in non-restrictive U.S. laws, must oblige the latter.

The spokesperson said,

“should it turn out that any of the merchandise involved in this transaction was subsequently resold contrary to U.S. export control laws, we will be taking remedial steps in close cooperation with our customers.”

Super Micro claimed that the company had met all the requirements created by the U.S. government regarding GPU systems. These systems are used in some regions and by some countries for the export and sale of which licenses are required.

“Throughneath our own internal control mechanism, we will monitor that no other party has exported or reexported without the needed licenses and then properly investigate and accordingly reaccuse,”

it elaborated.

Clare Locke has written to Reuters on behalf of Super Micro and on this occasion, can attest that Super Micro goes far beyond the call of duty as regards what the export restrictions demand. Indirectly and directly, Super Micro ensures compliance with its customers and its suppliers.

Regarding pushing the potential tender, which represents “older generation or general-purpose” servers, Super Micro has clearly expressed that the products are not the latest versions to be a large used in China before the export control requirements. The offered suppliers of high-version non-known Supermicro have also been identified.

Alex Fetanat of Dell stated that the organization could not find components using the restricted chips the named interference entities provided in its laptop shipments. Nevertheless, the organization will continue its investigations.

“Our distributors and resellers must adhere to all global agency and controls rules. If any of our distributors and resellers are found not to be compliant with the mentioned obligations, we take the appropriate measures, including terminating the relationship,”

The spokesperson said.

An accused person or company who violates U.S. export regulations can face lawsuits (civil or criminal) in the U.S. and receive penalties as high as hundreds of thousands of dollars or even up to twenty years of jail sentencing.

Chinese Entities Defy U.S. Export Ban

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