IB Physics Extended Essay Topics for IB

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  • Writing Metier

What’s up, IB scholars? You’re about to start writing your IB Physics Extended Essay, and I know you’re searching for that killer topic that’s going to stand out. Well, guess what? I’ve got over 100 extended essay topics and research questions ready for you. 

You do not need to thank me; you better say thank you to our IB writers at Writing Metier , who have invented and forwarded this awesome list to me for submission.

This isn’t just about getting it done; it’s about crushing it with something you’re passionate about.  So let’s get straight to the point and find you Physics EE ideas that will make some noise and show what you’ve got!

100+ Physics Extended Essay Topics

I’m breaking the list into ten categories for IB Physics extended essay topics, each with three subcategories for easier navigation:

  • Projectile Motion (e.g., trajectory analysis, range equations, effects of air resistance)
  • Circular Motion (e.g., centripetal force in different systems, banking angles, conical pendulums)
  • Dynamics of Rigid Bodies (e.g., rotational inertia, torque, angular momentum conservation)
  • Thermodynamics
  • Heat Transfer (e.g., efficiency of different materials as insulators, rate of cooling, Newton’s law of cooling)
  • Gas Laws (e.g., pressure-volume relationship, temperature effects, real vs. ideal gases)
  • Phase Changes (e.g., specific heat capacities, latent heat, cooling curves)
  • Waves and Oscillations
  • Harmonic Motion (e.g., pendulums, mass-spring systems, resonance)
  • Wave Properties (e.g., speed of sound in various media, diffraction patterns, polarization)
  • Sound and Acoustics (e.g., Doppler effect, sound intensity, acoustic properties of materials)
  • Electricity and Magnetism
  • Circuit Analysis (e.g., Ohm’s law, series vs. parallel circuits, Kirchhoff’s laws)
  • Electromagnetism (e.g., Faraday’s law, magnetic fields around conductors, applications of electromagnets)
  • Capacitance and Inductance (e.g., time constants, LC circuits, energy storage)
  • Modern Physics
  • Quantum Phenomena (e.g., photoelectric effect, electron diffraction, energy levels in atoms)
  • Nuclear Physics (e.g., radioactive decay, half-life, nuclear reactions)
  • Special Relativity (e.g., time dilation, length contraction, mass-energy equivalence)
  • Energy and Power
  • Renewable Energy Sources (e.g., efficiency of solar panels, wind turbine performance, biofuels)
  • Energy Conversion (e.g., internal combustion engines, thermal power plants, regenerative braking)
  • Power Transmission (e.g., electrical grid efficiency, power loss, superconductors)
  • Fluid Dynamics
  • Aerodynamics (e.g., lift and drag forces, Bernoulli’s principle, airfoil shapes)
  • Hydrodynamics (e.g., flow rate, viscosity effects, Reynolds number)
  • Buoyancy and Density (e.g., Archimedes’ principle, floating and sinking, density stratification)
  • Astrophysics and Cosmology
  • Stellar Physics (e.g., Hertzsprung-Russell diagram, star classifications, blackbody radiation)
  • Cosmological Models (e.g., Big Bang theory, cosmic microwave background, dark matter)
  • Orbital Mechanics (e.g., Kepler’s laws, satellite motion, escape velocity)
  • Optics and Light
  • Reflection and Refraction (e.g., Snell’s law, critical angle, optical fibers)
  • Lens and Mirror Optics (e.g., image formation, focal length, magnification)
  • Interference and Diffraction (e.g., double-slit experiment, diffraction gratings, holography)
  • Electromagnetic Waves
  • Radio and Microwave Radiation (e.g., antenna design, signal propagation, communication systems)
  • Infrared and Ultraviolet Light (e.g., thermal imaging, UV radiation effects, spectroscopy)
  • X-rays and Gamma Rays (e.g., medical imaging, radiation therapy, nuclear gamma spectroscopy)

Each of these categories and subcategories can be explored through experiments, data analysis, or theoretical investigation, offering a wide range of possibilities for IB students to develop their IB Physics EE topics.

physics ee topics

Mechanics Topics and Research Questions

Projectile Motion

Topic:  The effect of launch angle on the range of a projectile.

Research Question:  How does changing the launch angle affect the horizontal distance traveled by a projectile?

Topic:  The impact of air resistance on the trajectory of a projectile.

Research Question:  To what extent does air resistance alter the trajectory of a projectile compared to the idealized motion?

Topic:  The accuracy of range equations in predicting projectile motion.

Research Question:  How accurately do standard range equations predict the motion of a projectile in a controlled environment?

Circular Motion

Topic:  Measuring centripetal force in a rotating system.

Research Question:  How does the centripetal force required for circular motion change with the radius and speed of the rotating object?

Topic:  The physics of banking angles in road design.

Research Question:  What is the optimal banking angle for a curve on a road to maximize friction and safety at a given speed?

Topic:  Investigating the period of a conical pendulum.

Research Question:  How does the length of the string affect the period of oscillation of a conical pendulum?

Dynamics of Rigid Bodies

Topic:  The relationship between rotational inertia and angular acceleration.

Research Question:  How does changing the distribution of mass affect the rotational inertia and angular acceleration of a rigid body?

Topic:  The conservation of angular momentum in a closed system.

Research Question:  How does the angular momentum of a system change when the moment of inertia is altered?

Topic:  The effect of torque on rotational motion.

Research Question:  How does the application of torque affect the rotational motion of a rigid body with a fixed axis?

Mechanics shows us how things move and what affects them, but when we start talking about thermodynamics, we’re dealing with heat and energy. 

It’s like going from watching a ball roll down a hill to understanding why it feels warm to the touch on a sunny day.

Thermodynamics Topics and Research Questions

Heat Transfer

Topic:  Comparing the thermal insulation properties of various materials.

Research Question:  Which material provides the best thermal insulation for a given application, and why?

Topic:  The rate of cooling of a liquid in different environments.

Research Question:  How does the rate of cooling of a hot liquid differ between various environmental conditions?

Topic:  Investigating Newton’s law of cooling.

Research Question:  How closely does the cooling of a warm object follow Newton’s law of cooling in a real-world setting?

Topic:  The pressure-volume relationship of a gas at constant temperature.

Research Question:  How does the volume of a gas change with pressure at a constant temperature, and does it align with Boyle’s law?

Topic:  Temperature effects on the pressure of an enclosed gas.

Research Question:  How does the pressure of a fixed amount of gas change with temperature in a sealed container?

Topic:  Real vs. ideal gases under different conditions.

Research Question:  How do the behaviors of real gases deviate from the predictions of the ideal gas law under high-pressure conditions?

Phase Changes

Topic:  Measuring specific heat capacities of different substances.

Research Question:  How do the specific heat capacities of different substances compare, and what implications does this have for their use in heat storage?

Topic:  The energy involved in the phase change of materials.

Research Question:  How much energy is absorbed or released during the phase change of a substance, and how does this relate to its latent heat?

Topic:  Analyzing cooling curves of substances.

Research Question:  What can the cooling curve of a substance tell us about its phase change properties and purity?

After getting a grip on how heat works, it’s pretty cool to see how that energy gets around. Waves are all about energy transfer, whether it’s the sound from your speakers or the ripples on a pond when you toss a stone.

Waves and Oscillations Topics and Research Questions

Harmonic Motion

Topic:  The period of a simple pendulum.

Research Question:  How does the length of a pendulum affect its period, and does this confirm the theoretical model?

Topic:  The behavior of mass-spring systems.

Research Question:  How do different spring constants affect the oscillation of a mass-spring system?

Topic:  Resonance frequencies in mechanical systems.

Research Question:  At what frequencies do various mechanical systems resonate, and what factors influence this?

Wave Properties

Topic:  Measuring the speed of sound in different media.

Research Question:  How does the speed of sound compare in various gases, and what does this tell us about the properties of those gases?

Topic:  Investigating diffraction patterns through different apertures.

Research Question:  How do diffraction patterns change with the shape and size of apertures?

Topic:  Polarization of light by various materials.

Research Question:  How effectively can different materials polarize light, and what does this indicate about their structure?

Sound and Acoustics

Topic:  The Doppler effect and moving sources.

Research Question:  How does the frequency of a sound wave change as the source moves relative to an observer?

Topic:  Sound intensity levels at different distances.

Research Question:  How does the intensity of sound change with distance from the source, and is it consistent with the inverse square law?

Topic:  Acoustic properties of materials in soundproofing.

Research Question:  Which materials are most effective at soundproofing a room, and how do their acoustic properties contribute to this effectiveness?

Each of these topics can be tailored to fit the requirements of an IB Physics extended essay, with the research question guiding the experimental design, data collection, and analysis.

If you are interested, we also have a list of potential  Physics IA topic ideas  for you. Make sure to check them out as well.

Once you’ve got a handle on waves, you’re ready to see how they relate to electricity and magnetism. It’s like connecting the dots between the vibrations in the air and the current in the wires of your headphones.

Electricity and Magnetism Topics and Research Questions

Circuit Analysis

Topic:  The resistance of series and parallel circuits.

Research Question:  How does the total resistance in a circuit vary with the arrangement of resistors in series and parallel configurations?

Topic:  Verification of Kirchhoff’s laws in complex circuits.

Research Question:  How accurately do Kirchhoff’s laws predict the current and voltage distribution in a multi-loop circuit?

Topic:  The temperature dependence of resistivity in conductors.

Research Question:  How does the resistivity of a metallic conductor change with temperature, and what does this imply about electron scattering?

Electromagnetism

Topic:  Faraday’s law of electromagnetic induction.

Research Question:  How does the rate of change of magnetic flux influence the induced EMF in a coil?

Topic:  The magnetic field patterns around different conductor configurations.

Research Question:  How do the configurations of conductors affect the shape and strength of the magnetic fields they produce?

Topic:  The efficiency of electromagnets.

Research Question:  What factors determine the lifting power of an electromagnet, and how can its efficiency be maximized?

Capacitance and Inductance

Topic:  Time constants in RC circuits.

Research Question:  How does the capacitance and resistance in an RC circuit affect its charging and discharging time constants?

Topic:  Resonance in LC circuits.

Research Question:  At what conditions does resonance occur in an LC circuit, and how does this affect the circuit’s impedance?

Topic:  Energy storage in capacitors and inductors.

Research Question:  How do capacitors and inductors store energy, and what factors affect their energy storage capacity?

Electricity and magnetism are pretty easy to see in action, but modern physics? That’s where things get wild. You’re not just looking at what’s in front of you anymore; you’re considering what’s happening on a scale so small or so huge that it bends your mind a bit.

Modern Physics Topics and Research Questions

Quantum Phenomena

Topic:  The photoelectric effect and Planck’s constant.

Research Question:  How can the photoelectric effect be used to determine Planck’s constant, and what does this reveal about the nature of light?

Topic:  Electron diffraction and crystal structure.

Research Question:  How does electron diffraction provide evidence for the wave nature of electrons and the structure of crystals?

Topic:  Energy levels in hydrogen atoms.

Research Question:  How do the observed spectral lines of hydrogen correspond to the theoretical energy levels predicted by quantum mechanics?

Nuclear Physics

Topic:  Radioactive decay series.

Research Question:  How does the decay series of a radioactive isotope correspond to theoretical predictions of half-life and decay pathways?

Topic:  The effect of shielding on radiation intensity.

Research Question:  How effective are different materials at shielding against various types of radioactive emissions?

Topic:  Nuclear reaction energy calculations.

Research Question:  How does the measured energy released in a nuclear reaction compare to the values predicted by the mass-energy equivalence principle?

Special Relativity

Topic:  Time dilation observed in cosmic muons.

Research Question:  How does the observed decay rate of cosmic muons provide evidence for time dilation effects predicted by special relativity?

Topic:  Length contraction and high-speed particles.

Research Question:  How can length contraction be demonstrated or inferred from high-speed particle interactions?

Topic:  Mass-energy equivalence in particle physics.

Research Question:  How does the increase in mass of particles at high velocities provide evidence for the mass-energy equivalence principle?

But even with all that mind-bending stuff, physics isn’t just about theory. It’s also about practical stuff, like how we use energy. From solar panels on your roof to the battery in your phone, it’s all about getting the power we need to do what we want.

Energy and Power Topics and Research Questions

Renewable Energy Sources

Topic:  The efficiency of photovoltaic cells under different conditions.

Research Question:  How do factors such as light intensity, wavelength, and temperature affect the efficiency of solar panels?

Topic:  Performance analysis of wind turbines.

Research Question:  How does blade design affect the efficiency and power output of a wind turbine?

Topic:  The viability of biofuels compared to fossil fuels.

Research Question:  How do the energy outputs and carbon footprints of biofuels compare to those of traditional fossil fuels?

Energy Conversion

Topic:  The efficiency of internal combustion engines.

Research Question:  How do variables such as fuel type and engine temperature affect the efficiency of an internal combustion engine?

Topic:  Thermal efficiency of power plants.

Research Question:  What are the main factors that limit the thermal efficiency of modern thermal power plants?

Topic:  The effectiveness of regenerative braking systems.

Research Question:  How much energy can regenerative braking systems realistically recover during vehicle deceleration?

Power Transmission

Topic:  Electrical grid efficiency and power loss.

Research Question:  How does the distance and cross-sectional area of transmission lines affect power loss in an electrical grid?

Topic:  The potential of superconductors in power transmission.

Research Question:  What are the challenges and potential benefits of using superconductors for power transmission?

Topic:  The impact of load balancing on power grid stability.

Research Question:  How does load balancing affect the stability and efficiency of a power grid?

These topics and research questions are designed to inspire a range of investigations for the Physics Extended Essay, allowing students to delve into both experimental and theoretical aspects of physics.

And speaking of practical, fluid dynamics is all about understanding how liquids and gases move. It’s like figuring out why blowing over a hot soup cools it down or how an airplane stays up in the sky.

Fluid Dynamics Topics and Research Questions

Aerodynamics

Topic:  The effect of airfoil shape on lift generation.

Research Question:  How does altering the curvature and angle of an airfoil affect its lift and drag forces?

Topic:  Application of Bernoulli’s principle to various wing designs.

Research Question:  How do different wing designs in aircraft utilize Bernoulli’s principle to achieve lift?

Topic:  Drag force comparison on streamlined vs. bluff bodies.

Research Question:  How does the shape of an object affect the drag force experienced at different flow velocities?

Hydrodynamics

Topic:  The relationship between flow rate and pipe diameter in fluid dynamics.

Research Question:  How does changing the diameter of a pipe affect the flow rate of a fluid within it, given a constant pressure difference?

Topic:  Viscosity effects on fluid flow in channels.

Research Question:  How does the viscosity of a fluid influence its flow characteristics in narrow channels?

Topic:  Analysis of Reynolds number in predicting fluid flow regimes.

Research Question:  How does the Reynolds number determine the transition from laminar to turbulent flow in a pipe?

Buoyancy and Density

Topic:  Investigating Archimedes’ principle for irregularly shaped objects.

Research Question:  How accurately does Archimedes’ principle predict the buoyant force on objects with complex shapes?

Topic:  The stability of floating bodies and the concept of metacentric height.

Research Question:  How does the distribution of mass affect the stability of a floating vessel?

Topic:  Density stratification in fluids and its impact on layered flow.

Research Question:  How does density stratification affect the movement and mixing of different fluid layers?

From there, it’s a big leap to astrophysics and cosmology—literally. You go from studying the flow of air around a plane to the flow of galaxies in space. It’s about seeing the bigger picture and our place in it.

If you need Physics paper writing help , we have a separate team of experts who can handle almost any tasks.

Astrophysics and Cosmology Topics and Research Questions

Stellar Physics

Topic:  Analyzing the Hertzsprung-Russell diagram for star clusters.

Research Question:  What can the Hertzsprung-Russell diagram reveal about the age and composition of a star cluster?

Topic:  Classification and analysis of star spectra.

Research Question:  How does the classification of stellar spectra correlate with a star’s temperature, luminosity, and lifecycle stage?

Topic:  Investigating blackbody radiation in stars.

Research Question:  How well does the blackbody radiation model fit the observed spectral energy distribution of stars?

Cosmological Models

Topic:  Evidence for the Big Bang theory from cosmic microwave background radiation.

Research Question:  What does the cosmic microwave background radiation tell us about the origins and evolution of the universe?

Topic:  The role of dark matter in galaxy formation and rotation.

Research Question:  How does the presence of dark matter influence the rotational speeds of galaxies?

Topic:  Verifying Kepler’s laws through observation of planetary motion.

Research Question:  How accurately do Kepler’s laws describe the motion of bodies in the solar system?

Orbital Mechanics

Topic:  The energy requirements for satellite launch and achieving escape velocity.

Research Question:  What are the energy considerations and optimal conditions for a satellite to achieve escape velocity from Earth?

Topic:  The effects of orbital perturbations on satellite stability.

Research Question:  How do factors such as atmospheric drag and gravitational influences affect the stability of satellite orbits?

Topic:  Analysis of gravitational slingshot maneuvers in space missions.

Research Question:  How can gravitational assist maneuvers be optimized to increase spacecraft velocity?

But even with our heads in the stars, we can’t forget about light. Optics brings it back down to earth, showing us how light works, whether it’s bending through a lens or bouncing off a mirror.

Optics and Light Topics and Research Questions

Reflection and Refraction

Topic:  The efficiency of optical fibers in transmitting light.

Research Question:  How do imperfections in optical fibers affect the total internal reflection and efficiency of light transmission?

Topic:  Investigating Snell’s law at various interfaces.

Research Question:  How accurately does Snell’s law predict the angle of refraction for different transparent materials?

Topic:  The critical angle for total internal reflection in various media.

Research Question:  How does the critical angle for total internal reflection change with the refractive index of different materials?

Lens and Mirror Optics

Topic:  The formation of images by converging lenses under various conditions.

Research Question:  How does the focal length of a lens affect the properties of the image it forms?

Topic:  The magnification power of compound microscope systems.

Research Question:  How do the focal lengths of the objective and eyepiece lenses in a microscope affect its overall magnification?

Topic:  The aberrations in images formed by lenses and mirrors.

Research Question:  What types of optical aberrations are most prevalent in simple lens systems, and how can they be minimized?

Interference and Diffraction

Topic:  The double-slit experiment and wave-particle duality.

Research Question:  How does the double-slit experiment provide evidence for the wave-particle duality of light?

Topic:  Measuring the wavelength of light using diffraction gratings.

Research Question:  How can diffraction gratings be used to accurately measure the wavelength of light?

Topic:  The application of holography in image storage and retrieval.

Research Question:  How does holography utilize the principles of interference and diffraction to store and reconstruct images?

And light’s just one piece of the whole world of Physics. Electromagnetic waves are everywhere, from the microwave that heats your lunch to the X-rays at the dentist. It’s all part of the same big family that keeps our world connected and our lives running.

Electromagnetic Waves Topics and Research Questions

Radio and Microwave Radiation

Topic:  The design and optimization of antennas for radio communication.

Research Question:  How does the geometry of an antenna affect its radiation pattern and signal reception?

Topic:  Signal propagation in different atmospheric conditions.

Research Question:  How do atmospheric conditions affect the propagation of radio and microwave signals?

Topic:  The effectiveness of microwave radiation in communication systems.

Research Question:  What are the advantages and limitations of using microwave radiation in satellite communications?

Infrared and Ultraviolet Light

Topic:  Thermal imaging and the emissivity of different materials.

Research Question:  How does the emissivity of a material affect its detection in thermal imaging?

Topic:  The effects of UV radiation on various substances.

Research Question:  How does exposure to ultraviolet light affect the chemical structure and properties of different materials?

Topic:  Spectroscopy and the identification of chemical compounds.

Research Question:  How can infrared and ultraviolet spectroscopy be used to identify and analyze different chemical compounds?

X-rays and Gamma Rays

Topic:  The application of X-ray imaging in medical diagnostics.

Research Question:  How do different tissues and materials affect the absorption and transmission of X-rays in medical imaging?

Topic:  Radiation therapy and the optimization of gamma ray dosage.

Research Question:  How can the dosage and targeting of gamma rays in radiation therapy be optimized for cancer treatment?

Topic:  Nuclear gamma spectroscopy and nuclear structure.

Research Question:  What can gamma-ray spectra reveal about the structure and energy states of atomic nuclei?

These topics and research questions are designed to guide students in their exploration of advanced concepts in physics, providing a foundation for a thorough and insightful Extended Essay.

Creating an engaging and contemporary Physics Extended Essay can be particularly rewarding when the topic is relevant to modern situations and challenges. 

Fresh Breath Ideas for Physics IB EE in 2023/2024

Here are 12 topics that connect to current events or recent advancements in technology, along with a brief explanation of their relevance:

The Physics of Electric Vehicles

Investigate the efficiency of regenerative braking systems in electric cars and how they contribute to the overall energy efficiency of the vehicle.

Renewable Energy Harvesting

Analyze the potential of piezoelectric materials in converting mechanical stress from human activities into electrical energy, contributing to sustainable power generation.

Smartphone Sensors

Explore the use of gyroscopes and accelerometers in smartphones for navigation and gaming, and how these sensors rely on principles of mechanics and material science.

Wireless Charging Technologies

Examine the electromagnetic principles behind wireless charging pads and the efficiency of energy transfer at various distances and alignments.

Solar Panel Coatings

Research the effectiveness of anti-reflective coatings on solar panels and their role in enhancing the absorption of light and overall energy conversion efficiency.

Aerodynamics of Drones

Study the impact of drone design on flight stability and energy consumption, which is critical for extending their use in delivery systems and aerial photography.

Physics in Sports Equipment

Investigate the materials and design features that contribute to the performance and safety of modern sports helmets, from bicycles to football.

Thermal Imaging and Disease Detection

Explore the use of thermal imaging in detecting fevers and its potential application in managing pandemics by early identification of symptomatic individuals.

Nanomaterials in Electronics

Analyze the electrical conductivity and properties of graphene and other nanomaterials that are revolutionizing the electronics industry.

Physics of Modern Building Design

Investigate how principles of thermodynamics are applied in the design of eco-friendly and energy-efficient buildings.

Quantum Computing

Study the basic principles of quantum computing and the challenges in maintaining quantum coherence in qubits, which are the fundamental building blocks of quantum computers.

SpaceX and Reusable Rockets

Research the physics behind the reusability of rockets, focusing on the landing mechanisms employed by companies like SpaceX and how they conserve momentum and energy.

Each of these topics is not only grounded in physics principles but also has a wealth of information available due to their current relevance and the ongoing research in these areas. 

They offer a chance to combine theoretical physics with practical application in the modern world, which can be particularly engaging for an Extended Essay.

Need a Hand with Your Physics IB EE?

Hey there, IB students! If you’re stuck on coming up with a topic or diving into writing your Physics IB Extended Essay, don’t sweat it. Our team of IB experts at Writing Metier is here to help you write a custom IB EE on this exciting subject . 

extended essay physics example

Whether you need a spark of inspiration for your topic or you want a custom-written EE following the word count , rubric and criteria that hits all the right notes, we’ve got your back. 

Reach out to us at Writing Metier extended essay writing service and have a rest while experts are working on your task.

So, that’s the rundown. Physics isn’t just about equations and lab coats; it’s the stuff all around us, from the smallest particles to the vastness of space. It’s about getting to the heart of how things work, from the every day to the extraordinary. 

And the more you learn, the more you see how everything’s linked together in one big, amazing picture.

Free topic suggestions

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Vasyl Kafidoff is a co-founder and CEO at WritingMetier. He is interested in education and how modern technology makes it more accessible. He wants to bring awareness about new learning possibilities as an educational specialist. When Vasy is not working, he’s found behind a drum kit.

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Physics Extended Essay: The Complete Guide for IB Students

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by  Antony W

September 3, 2022

physics extended essay

In this guide, you’ll learn everything you need to know about Physics Extended Essay in IB. We’ll look at:

  • What Physics EE is all about
  • How to choose a topic
  • The right approach to handling your topic and
  • Physics EE assessment criteria

What’s Physics EE in IB?  

A physics extended essay is an individual assignment that requires you to utilize a variety of abilities while exploring a topic of personal interest in the discipline of physics.

It focuses on physics within a broader set of scientific standards, and it takes the form of a research that incorporates a hypothesis or model, or a critical analysis that displays argumentation, comparison, or the extraction of pertinent information or data.

How to Choose a Physics Extended Essay Topic 

The first rule when it comes to topic selection is that you must put emphasis on a subject within physics.

In other words, IB students have to ground their extended essays in physical theory and underline the subject's essence.

To write a more comprehensive, extended essay in the subject, you should select a focused, practical, and well-defined topic that allows you to conduct an in-depth analysis.

Avoid broad or complicated subjects, because they will not allow you to explore contradictory views and hypotheses.

Also, a broad topic will not allow you to conduct an in-depth, personal interpretation within the word limit recommended for EE .

Additionally, you should avoid investigating issues that extend outside the bounds of mainstream science, such as metaphysics or pseudoscience. Examples include of investigative issues include:

  • Extrasensory experience
  • The relationship between physics and the existence of God
  • The mysterious forces of pyramids

The IB board considers it helpful if you can specify the subject further in the form of a research question, followed by a statement of purpose that indicates the approach you will employ to answer the question.

If you’re going to focus on an experimental essay, you will need to select a more practical experiment that does not need substantial amounts of time for equipment building.

In some instances, more advanced equipment might create constraints and inhibit the comprehension of a phenomenon. Successful trials will generate the data required for a sound analysis reasonably quickly.

Some Physics Extended Essay topics may not be acceptable for examination due to safety concerns.

For example, you need to avoid topics that requires experiments using hazardous or carcinogenic chemicals, radioactive materials, lasers, microwaves, ultraviolet light, noise, or heavy equipment. 

Physics Extended Essay Writing Help

Do you need help with your Physics Extended Essay but have no idea where to get it online? You can contact Help for Assessment right now.

The  EE writers at Help for Assessment   are ready to offer you the kind of writing necessary to complete your Physics Extended Essay homework on time and score good marks. Whether you need help with topic selection and writing or you already have a topic to work on, you can hire one of our top writers to help you get the work done.

Our Physics Extended Essay writing service involves topic selection, development of a research issue, in-depth research, and writing.

We pay close attention to the Extended Essay requirements to ensure the paper we deliver to you meets the assignment’s scope.

Given that Physics is a technical subject, you shouldn’t wait until the last minute to start working on it. Get started early with our writing help.

How to Write a Physics Extended Essay

The primary goal of this type of assignment is to demonstrate a clear understanding of the topic you’ve selected to work on. So to ensure you write the best EE in the subject:

1. Choose the Right Angle to Direct Your Assignment

It’s important to note that your Physic extended essay will need to express an in-depth study into the history or theory of the particular topic. However, it’s different for long assignments I the subject.

For long subjects, you may focus on:

  • Experimental physics: This area focuses on the design and execution of an experiment, followed by personal data collecting and analysis.
  • Data based physics: It focuses on location and extraction of non-student-collected raw or processed data, which is subsequently refined and analyzed.
  • Theoretical physic: The focus is on the formulation of a quantitative or semi-quantitative description of a physical phenomenon, the application of the model, and the prediction of its behavior and limitations.
  • Survey: It involves the construction of a coherent, organized, analytic, and supported (qualitative and quantitative) discussion of the issue

All long physics essays should include an overview of the work's scope and limits.

This should always include a study of any experimental design, data uncertainties and accuracy, mathematical approaches, links to theoretical models, and the dependability and quality of sources.

2. Give a Direct Analysis of Your Research Topic

The essay's body and progression should directly analyze the research topic. 

Experimental essays can help students to demonstrate their critical thinking more clearly, but experimental activity aren’t necessary for the assignment.

However, you must provide a clear theoretical component for each empirical inquiry.

If you include any experimental effort in your Physics extended essay, ensure to document it thoroughly so that other researchers can produce it with identical findings and conclusions.

If you’ve opted to collect data from secondary sources, use it with extreme caution.

Ensure you provide a comprehensive evaluation of the location and credibility of the sources required for databased essays at the outset of the planning process.

You should apply the same scrutiny to this data and the experimental design as if you had gathered the data yourself.

3. Examine Your Research Techniques Thoroughly

A thorough examination of research techniques is necessary in a Physics extended essay.

That’s because it might reveal severe problems in experimental design or data collection that invalidate or at least limit the interpretation of the results completely or in part.

A purely empirical inquiry linking two or three variables without a theoretical basis is unsatisfactory.

For example, if you utilize a computer simulation of a theoretical model, you should extensively analyze the methods devised or implemented and you should compare simulated results to actual events to determine their validity.

If you’re going to write an essay that contains a theoretical model that describes a physical occurrence, your planning should include the beginning postulates, the important stages for running the model, and the simulation results collected.

4. Explain Your Literary Sources Thoroughly

In theoretical, data based, or survey extended essay in Physics, you must include an assessment of the quality and dependability of the literary sources.

You have to have sufficient knowledge of the issue to evaluate the credibility of the sources.

You can accomplish this by researching secondary sources or calculating independently.

Also, you should not be hesitant to discuss opposing viewpoints and share your own thoughts with supporting evidence.

In survey or theoretical essays, appropriate preparation requires examining source material in light of the research topic so that you utilize the opinions of other scientists to support your own thesis, rather than as a replacement for it.

5. Make Your Analysis Clear and Concise

An analysis must supplement data or information rather than merely duplicate it. And you need to make sure you derive interpretations logically from facts or information. 

Your essay needs to include the avoidance of unfounded, far-fetched extrapolation and the acknowledgement of flaws.

The commentary should not simply a restatement of the data. It should produce a strong interpretation of the results, which ones can compare to previously published research on the subject.

Related Readings 

  • Your Only Guide to EE in Computer Science
  • Learn About IB Math EE Here
  • About IB Chemistry EE

Physics Extended Essay Assessment Criteria

The following is the assessment criteria used to gauge the depth and comprehensiveness of your Physics Extended Essay:

Criterion A: Research Question

The criterion requires that your research topic must be relevant to physics as a science, centered on physics and not on ancillary problems, and clearly recognized and prominently presented in the introduction.

Criterion B: Introduction

The introduction should tie the research question to the existing body of knowledge on the topic.

You should not include your personal experience or viewpoint here, as it’s highly unlikely to be helpful at this point.

You should place the pertinent physics concepts within the context of the issue. You need to view the introduction as a chance to be more precise rather than appearing bloaty.

Criterion C: Investigation

The strategy you use for investigation should show a clear pertinent theory as well as an understanding of the inherent uncertainties and limits of procedures and equipment used in the Physics Extended Essay.

Criterion D: Knowledge and Understanding of the Research Issue

The knowledge and comprehension exhibited in a physics essay should go beyond the course or laboratory.

You have to demonstrate that you can use the essential information obtained in the classroom in a new physical environment that necessitates its interpretation.

Criterion E: Reasoned Argument

Students should be aware of the necessity to provide a developing argument in the body of their writings.

In order to persuade the reader of the correctness of one's opinions, you have to include logical and helpful arguments in your work.

Criterion F: Use of Analytical and Evaluative Skills

You must demonstrate a comprehension of the mathematical and statistical correlations automatically generated by systems.

It is necessary to have a thorough and firm awareness of the inherent constraints of an inquiry and their consequences for the results obtained.

Criterion G: Use of Language and Terminologies Relevant to the Subject

The usage of scientific terminology is required throughout your Physics Extended Essay.

To understand the right format, structure, and presentation of a scientific paper, you should study articles from reputable scientific journals and periodicals.

The essential quality of the language is exactness and common expressions such as "function of" and "proportional to" must have specific meanings. You should specify any symbols used in context.

Criterion H: Conclusion

Make sure that the conclusion of your Physics EE develops from the argument and not introduce new or irrelevant material.

It should not duplicate the information presented in the introduction, but rather give a new synthesis in light of the conversation.

The conclusion should indicate how uncertainties in experimental data, the constraints of a model or experimental design, or the reliability of sources affected the outcomes of your work.

Criterion I: Formal Presentation

This criterion addresses the extent to which the essay complies with academic norms about the format of research papers.  

About the author 

Antony W is a professional writer and coach at Help for Assessment. He spends countless hours every day researching and writing great content filled with expert advice on how to write engaging essays, research papers, and assignments.

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How to Write a Physics Extended Essay? A Guide for IB Students

Theoretical Physics extended essay go into concepts that rely heavily on mathematical models.

Luke MacQuoid

In my years of experience as an IB writer, I’ve come to appreciate the nuances and depth of the Physics extended essay. It is an opportunity for IB students to showcase their knowledge and passion for this subject.

Today, I’d like to share my insights and help guide you on how to write a compelling and well-structured Physics extended essay .

Understanding the Physics Extended Essay Requirements

According to general IB criteria, this work has specific guidelines that students must adhere to, ensuring they remain within the Physics extended essay requirements:

  • Ensure your topic is rooted in Physics. It should focus on experimental work, though some theoretical essays are acceptable if they tackle unconventional issues.
  • While the word limit for the essay is 4,000 words, I’ve often observed that the most impactful papers are concise and straight to the point.
  • A well-defined research question is at the heart of every essay. Ensure it’s precise and relevant to the Physics extended essay topics you’re considering.
  • If you’re leaning towards an experimental Physics extended essay, remember that your experiments should be replicable. They should also provide insights that can be extrapolated to real-world scenarios.

In conclusion, while the Physics extended essay might seem like a mountain to climb, it’s achievable with the proper guidance and a clear understanding of the requirements.

Choosing the Right Topic for Your Physics Extended Essay

Often, students ask me about the best Physics extended essay topics. I think choosing an option that truly resonates with your interests but also aligns with IB’s expectations is essential. It brings me to the specifics of the IB extended essay Physics topics , which get into detailed research scopes and can challenge your analytical skills.

Possible Extended Essay Topics in IB Physics

So, what are the possible extended essay topics in IB Physics ? Here are a few options for you to consider:

  • The Physics of Black Holes.
  • Quantum Entanglement and its Implications.
  • The Effects of Material and Thickness on Solar Cell Efficiency.
  • The Acoustic Properties of Different Woods.
  • Relativity in Modern GPS Systems.
  • The Physics Behind Magnetic Levitation Trains.
  • Fluid Dynamics in Sports.
  • The Correlation Between Altitude and Boiling Points of Liquids.
  • Thermoelectric Materials and their Potential in Waste Heat Recovery.
  • The Harmonics of String Instruments.

Think of areas in Physics that intrigue you: Quantum mechanics? AstroPhysics? Thermodynamics? The options are numerous, but the best topics align with your passion and the IB’s expectations.

Experimental Physics Extended Essay vs. Theoretical: What’s the Difference?

Ah, the age-old debate: Experimental or Theoretical? From my experience, this decision can make or break your essay. So, let’s break it down.

  • Experimental Physics . In essence, this approach is hands-on. It’s about setting up experiments, recording observations, and making inferences. If you enjoy the tangible aspects of Physics and don’t mind getting your hands dirty, this might be your calling.
  • Theoretical Physics . Now, this is where things get abstract. Theoretical Physics deepens into concepts, relying heavily on mathematical models and predictions. It’s less about “doing” and more about “thinking”. If abstract ideas and critical thinking excite you, this path might be the one for you.

In conclusion, always remember to stay true to your passions while adhering to the set standards. From what I know, the path might seem challenging, but the sense of accomplishment at the end is unparalleled!

Proper resources strengthen your research in Physics extended essay.

IB Physics Extended Essay: What Resources You Can Use

Taping into many resources is critical to strengthen your research and arguments. Here’s a comprehensive list that can guide you through this venture:

  • Primary Textbooks . These are the backbone of your foundational knowledge. But don’t just stick to your coursebook. Check advanced-level Physics textbooks for deeper insights.
  • Academic Journals . Google Scholar , JSTOR , and the American Physical Society’s journals offer up-to-date research findings and specialized knowledge.
  • University Libraries . Many institutions allow the public, especially students, access to their libraries. They can be gold mines for specialized books and research papers.
  • Online Platforms & Databases . You can use arXiv — a free distribution service and archive for preprints. NASA AstroPhysics Data System is also a perfect digital library portal for researchers in astronomy and Physics.
  • Research Institutions & Laboratories . Some institutes allow students to access their data or even conduct experiments. Examples are CERN, Fermilab, or local universities with robust Physics departments.
  • Educational Websites . Websites like Khan Academy or The Physics Classroom can elucidate complex topics.
  • Software & Simulation Tools . Use COMSOL MultiPhysics for modeling and simulating experiments. PhET Interactive Simulations offers free interactive math and science simulations.
  • Expert Interviews . Engaging with Physics professors, researchers, or professionals can offer unique insights. They might also point you to niche resources.
  • Seminars & Workshops . Attend these, especially ones that align with your essay topic. They offer cutting-edge insights and networking opportunities.
  • Your School’s Resources . Think about your school’s lab equipment, library, and, most importantly, your Physics teacher!
  • Peer-Reviewed Conferences . Look for published proceedings for the latest in Physics research.
  • Popular Science Books & Magazines . These can be used sparingly for general context or simply explaining complex concepts. Magazines like Scientific American or Physics Today might be helpful.

According to general IB criteria, while it’s essential to gather as much information as possible, always ensure the credibility of your sources. Cross-reference data and opt for primary over secondary sources.

The Structure of the Physics Extended Essay

Structuring your paper can make all the difference. Let’s discuss all parts of the Physics extended essay to ensure clarity and coherence.

1. The Informative Abstract

Venturing forward, you’d step into the abstract. Think of this as your elevator pitch, where you have around 300 words to present the crux of your research. Start by briefly explaining the purpose of your essay.

2. The All-Important Introduction

The introduction is your gateway to captivate the reader. Set the stage by introducing your topic and providing context. Why is it important? What real-world implications does it have? How does it tie into the larger world of Physics?

3. Methodology and Approach

Detail out the methods you’ve employed. Clarity is vital, whether it’s an experimental setup or a theoretical analysis. Describe your approach, any equipment used, variables considered, and how you collected data.

4. To the Body

It’s the heart of your essay. Analyze your findings, relate them to existing theories, and critically evaluate any discrepancies or anomalies. Break down complex concepts, ensuring they’re accessible to the reader. Use diagrams, graphs, or tables if they aid in understanding.

5. Conclusions and Reflections

Summarize your findings, reiterating their significance in the broader context of Physics. Reflect upon the entire research process, discussing your challenges and what you learned from them. Highlight potential areas for further research or unanswered questions that arose.

6. References and Bibliography

Every piece of information, data, or idea that isn’t original to you needs to be cited. Adhere to the citation style preferred by the IB and ensure consistency throughout.

extended essay physics example

Need help with your IB extended essay?

From research and analysis to structuring and editing, our skilled mentors will be by your side, helping you craft an exceptional extended essay that not only meets the wordcount and stringent IB criteria but also reflects your passion for selected IB group .

Writing the Perfect Experimental Physics Extended Essay

Ah, the realm of experimental Physics extended essay. Many students assume this is the most challenging assignment , but this is only sometimes the case. With the right approach, you can quickly reveal your topic and get the highest grade, so do not be afraid to experiment.

What Makes an Experimental Physics Extended Essay Stand Out?

Based on my experience, the most outstanding essays consistently demonstrate these characteristics:

  • They don’t just regurgitate known facts. They take risks, push novel ideas, or offer a fresh perspective on classic experiments.
  • It’s not just about noting observations but explaining why specific results were obtained, possibly linking to underlying Physics principles.
  • A standout essay meticulously details the experiment setup, ensuring reproducibility. Every step, from equipment calibration to data collection, is clearly articulated.
  • Beyond presenting results, these essays interpret data critically, drawing meaningful conclusions and suggesting further research areas.

Remember that the best essays often link findings to real-world applications or implications, showing a broader understanding of Physics in our daily lives.

Tips for a Successful Physics Extended Essay

Throughout my path as an IB tutor, I’ve picked up a few tricks of the trade that I believe can improve any paper:

  • Start Early . Physics, being a comprehensive subject, demands time for research, experimentation (if you’re doing an experimental essay), and analysis.
  • Pick a Manageable Topic . Getting into highly complex areas is tempting, but remember that depth trumps breadth. 
  • Align with Your Interests . Your enthusiasm will shine through in your writing. Choose a topic you’re genuinely curious about. 
  • Prioritize Your Research Question . It should be clear, focused, and researchable within the word limit. Avoid overly broad or vague questions.
  • Use Varied Resources . While textbooks are a good starting point, venture into academic journals, online databases, and expert interviews to gather diverse insights.
  • Stick to the IB Rubric . Familiarize yourself with the IB Physics extended essay criteria . This rubric will be your guiding light, ensuring you hit all the necessary points.
  • Draft, Revise, Repeat . Your first draft is unlikely to be your final one. Write, take a break, return with fresh eyes, revise, and repeat the cycle.
  • Maintain Academic Integrity . Cite all sources diligently. Plagiarism is a strict no-no in the IB world.
  • Understand the Theory . Even if you’re focusing on an experiment, grounding your observations in theoretical concepts is crucial. It shows a holistic understanding of the topic.
  • Maintain a Consistent Structure . Introduction, research question, body, analysis, conclusion, and references — maintaining this flow aids in readability and coherence.

Over the years, I’ve seen students get lost in the vastness of their chosen subjects, but with a straightforward question, you can remain focused. Lastly, avoid straying from the IB extended essay Physics guidelines. They’re there for a reason, and adhering to them can significantly boost your score.

So, writing the Physics extended essay is no small feat, but with the right approach and a sprinkle of dedication, it’s an enriching experience. Follow the guidelines, choose your topic wisely, and structure your essay well, and you’ll be on the path to success. Best of luck to you!

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Luke MacQuoid has extensive experience teaching English as a foreign language in Japan, having worked with students of all ages for over 12 years. Currently, he is teaching at the tertiary level. Luke holds a BA from the University of Sussex and an MA in TESOL from Lancaster University, both located in England. As well to his work as an IB Examiner and Master Tutor, Luke also enjoys sharing his experiences and insights with others through writing articles for various websites, including extendedessaywriters.com blog

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  • Extended Essay

The Extended Essay guide is the ultimate place to go for all official IB information on this aspect of the Diploma. This gives information about what your responsibilities are as an advisor, the assessment criteria and their clarifications for physics essays. On this site we summarise the requirements and reflect on some physics-specific requirements.

As a quick rule of thumb, remember 4 4 4:

  • 40 hours of work
  • 4 hours of meeting time

extended essay physics example

The basic requirements of a physics essay make sense:

  • Develop an area of interest
  • Research a framework on which to conduct an investigation (e.g. an equation or law)
  • Data analysis

However, it is important to familiarise yourself and your student with other key aspects of the Extended Essay before kicking off.

Introduction

Towards the end of the first year of their Diploma Programme, all IB students at your school will start to choose their Extended Essay (EE) subject. Some of them might choose physics, which is where you come in! Your supervisee should already be familiar to you as a student of physics already (probably at Higher Level). Regardless of the subject chosen, the essay has a 4000 word limit and should conduct approximately 40 hours of research. This is the time when students get the chance to go deeper into a subject giving you the supervisor the chance to work on a more individual level with the keenest students (in theory!).

Having supervised about 100 essays in 20 years' of teaching the IB, Chris took up the challenge to have a go at doing one himself!  Here are his thoughts...

Although I didn't use the whole 40 hours the experience has given me a new insight into the process that I hope will be useful. Maybe my first piece of advice should be "go write one", its the best way to learn what it's about. My students thought it was pretty cool but wanted to know why I'd waited until they had submitted theirs. Anyway I submitted it to an experienced marker and got an A , now I feel ready to give advice to both supervisors and students. The essay used the same research question that an ex-student of mine had used, I remembered it to be a neat idea so thought I'd have a go at doing the experiments myself. Recently I met the student and he sent me his original essay and gave me permission to post it ( Dusan's essay ). Unfortunately a couple of the images are missing but it still makes sense. He also got an A and I have to admit that his analysis was more thorough than mine.

extended essay physics example

This will take the form of 3 formal interviews:

  • The first will be early in the process, perhaps during the first hours of data collection and with a sample of writing. This is also to point to check that your supervisee has all the necessary skills for their project (ICT, data collection, research, referencing, writing).
  • The second is an interim meeting, in which you should be intellectually critical of the students' decisions to date and to advise them on the final steps to making a valid conclusion. However, it will probably be too late at this stage to amend the methodological approach.
  • The last is a viva voce, when the student has submitted a final draft of their work.

A written report must be completed by the student after each interview. These reports are signed by the supervisor with brief comments and are submitted to the IB along with the essay. They will be assessed and evidence of a good process with growth in sophistication can get the student 6 out of 34 marks.

Between meetings 2 and 3, you will formatively mark a near-complete draft of the student's work, but without being too prescriptive - there is exemplar guidance in the Guide on the sort of feedback permitted.

Ensure that you liaise regularly with your school's Diploma Coordinator for their in-house supervisor training or to agree to your local procedures (e.g. timing, deadlines).

There are five separate aims that are listed in the IB guide; these are what the student will gain by doing an EE. Essentially an Extended Essay provides the student with the opportunity to:

  • engage in independent research with intellectual initiative and rigour
  • develop research, thinking, self-management and communication skills
  • reflect on what has been learned throughout the research and writing process.

Tthe extended essay should be an opportunity to develop certain skills and experience what it is like to take part in research. It's an introduction to the sort of work that they will be involved in at university. The rest of the IB physics programme is focussed around passing the exam and learning how to fulfil assessment criteria, so this is a brilliant opportunity to go a bit beyond the constraints of the course (but not beyond the constraints of the EE criteria).

Many students will comment on how writing an EE has given them an advantage at university. They already know how to structure an essay, make references, insert diagrams, etc. The process of writing an EE enables the student to develop along the lines of the official aims although not all get to "experience the thrill and excitement".

Interestingly enough there is no mention in the aims of "giving the brilliant student the chance to excel" or "enabling the student to go way beyond the realms of the syllabus" but this is how the EE is sometimes portrayed and that misconception may even have found its way into the minds of some markers. Why would we expect students to be able to write an essay on topics not even touched on in class? The point is they are supposed to use the knowledge they possess to investigate something new. Of course there is nothing wrong with the brilliant student being able to extend their knowledge but this shouldn't be the norm.

There are 10 objectives required in order to meet the aims:

  • To demonstrate knowledge and understanding of the topic chosen and the research question posed.
  • To demonstrate knowledge and understanding of subject specific terminology and/or concepts.
  • To demonstrate knowledge and understanding of relevant and/or appropriate research sources and/or methods used to gather information.
  • To select and apply research that is relevant and appropriate to the research question.
  • To analyse the research effectively and focus on the research question.
  • To be able to discuss the research in terms of a clear and coherent reasoned argument in relation to the research question.
  • To be able to critically evaluate the arguments presented in the essay.
  • To be able to reflect on and evaluate the research process.
  • To be able to present information in an appropriate academic format.
  • To understand and demonstrate academic integrity.

One thing to note about the aims and objectives is that they are very much about what skills the student is going to develop and what they are expected to do. The job of the supervisor is to give advice and encouragement when needed. The supervisor may meet with the student for 4 of the 40 hours, but most of the time the student is alone. This is deliberate: the student should show initiative and experience what it is like to work independently on a big project. If the supervisor gets too involved then the aims will not be met.

IMAGES

  1. Physics Extended Essay: The Complete Guide for IB Students

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  2. Extended Writing in A Level Physics

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  3. Physics Extended Essay

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  4. Extended Essay in Physics by Revision Courses Europe & America

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  6. IB Physics Extended Essay

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  1. IB Physics EE examples | Clastify

    Advertise with Clastify. How does the phase of argon crystal (density, volume, length and MSD) change as the crystal is monotonically heated in the temperature range from 50 to 150 kelvins? EE Physics B. To what extent does the bend radius of a silicone tube affect the loss in light intensity for different incoming wavelengths? EE Physics B.

  2. IB Physics Extended Essay Topics for IB - writingmetier.com

    These topics and research questions are designed to inspire a range of investigations for the Physics Extended Essay, allowing students to delve into both experimental and theoretical aspects of physics. And speaking of practical, fluid dynamics is all about understanding how liquids and gases move.

  3. Physics Extended Essay: The Complete Guide for IB Students

    How to Write a Physics Extended Essay. The primary goal of this type of assignment is to demonstrate a clear understanding of the topic you’ve selected to work on. So to ensure you write the best EE in the subject: 1. Choose the Right Angle to Direct Your Assignment. It’s important to note that your Physic extended essay will need to ...

  4. The Complete IB Extended Essay Guide: Examples, Topics, and Ideas

    References and bibliography. Additionally, your research topic must fall into one of the six approved DP categories, or IB subject groups, which are as follows: Group 1: Studies in Language and Literature. Group 2: Language Acquisition. Group 3: Individuals and Societies. Group 4: Sciences. Group 5: Mathematics.

  5. IB EE examples for all subjects | Clastify

    EE Business and Management A. What is the Effect of Salinity Stress (0, 50, 100, 150, 200 mM NaCl) Measured Through Microscopic (Stomatal Aperture) and Morphological (Leaf Area, Leaf Dry Mass, and Root Length) Characteristics on Pre-Treated Radish (Raphanus sativus) Seeds with Magnetopriming (48 hours)? EE Biology B.

  6. IB Physics Extended Essay: A Step-by-Step Guide

    October 12, 2023. In my years of experience as an IB writer, I’ve come to appreciate the nuances and depth of the Physics extended essay. It is an opportunity for IB students to showcase their knowledge and passion for this subject. Today, I’d like to share my insights and help guide you on how to write a compelling and well-structured ...

  7. Past Essays - IB Extended Essay - LibGuides at Shekou ...

    IB Extended Essay: Past Essays. ... Renaissance Library Past Essays: Links to all subject area examples; ... Physics EE Examples.

  8. Step-by-Step Guide to a Perfect IB Physics EE ... - GradePod

    As an IB Physics student, the prospect of writing a 4000-word extended essay can be both exciting and daunting. Choosing a topic that is both interesting and feasible can be a difficult task, but it's an important first step in ensuring that your EE is a success.

  9. IB Extended Essay in Physics - IB Ace Academy

    Each component has its own challenges. IB Extended Essay in Physics (EE) is a 4,000-word essay-based project that allows students to delve deep into a topic of their choice within the parameters of the IB syllabus. For those who are passionate about the physical realm of the world, the IB extended essay in Physics provides an opportunity to ...

  10. DP Physics: Extended Essay - Subscription websites for IB ...

    The Extended Essay guide is the ultimate place to go for all official IB information on this aspect of the Diploma. This gives information about what your responsibilities are as an advisor, the assessment criteria and their clarifications for physics essays. On this site we summarise the requirements and reflect on some physics-specific requirements.As a quick rule of thumb, remember 4 4 4: