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Studying physics unlocks the rules of the universe. Through many years of teaching, I have carefully designed a set of lessons to guide students to unlock and master this knowledge. Each lesson contains recall questions, an explanation of key concepts in a logical order, modelled examples to help guide students through answering questions, and practice questions for them to apply the knowledge themselves. All lessons are complete, fully animated, and contain fully worked answers.

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Studying physics unlocks the rules of the universe. Through many years of teaching, I have carefully designed a set of lessons to guide students to unlock and master this knowledge. Each lesson contains recall questions, an explanation of key concepts in a logical order, modelled examples to help guide students through answering questions, and practice questions for them to apply the knowledge themselves. All lessons are complete, fully animated, and contain fully worked answers.
A level Physics (7.1) Speed and velocity - Kinematics - (On the move)
ThePhysicsmasterThePhysicsmaster

A level Physics (7.1) Speed and velocity - Kinematics - (On the move)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Explain how displacement differs from distance Explain the difference between instantaneous speed and average speed Describe when it is necessary to consider velocity rather than speed The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (7.4) Free fall - Kinematics - (On the move)
ThePhysicsmasterThePhysicsmaster

A level Physics (7.4) Free fall - Kinematics - (On the move)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Define free fall Explain how the velocity of a freely falling object changes as it falls Discuss if objects of different masses or sizes all fall with the same acceleration The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (6.6) Equilibrium rules (Forces in equilibrium)
ThePhysicsmasterThePhysicsmaster

A level Physics (6.6) Equilibrium rules (Forces in equilibrium)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Explain what condition must apply to the forces on an object in equilibrium Explain what condition must apply to the turning effects of the forces Describe how we can apply these conditions to predict the forces acting on a body in equilibrium The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect answers exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (7.8) Projectile motion 2 - Kinematics - (On the move)
ThePhysicsmasterThePhysicsmaster

A level Physics (7.8) Projectile motion 2 - Kinematics - (On the move)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe where else we meet projectile motion Describe what would happen if we could switch gravity off Describe how projectile motion is affected by the air it passes through The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (8.5) Vehicle safety (Newton's laws of motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (8.5) Vehicle safety (Newton's laws of motion)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe the force on a moving body if it is suddenly stopped, for example in a road accident. Explain what should be increased to give a smaller deceleration from a given speed. State which design features attempt to achieve this in a modern vehicle. The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (9.2) Impact forces (Force and momentum)
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A level Physics (9.2) Impact forces (Force and momentum)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe what happens to the impact force (and why) if the duration of impact is reduced. Calculate the change in momentum for a moving object that stops or reverses. Describe what happens to the momentum of a ball when it bounces off a wall. The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (8.4) On the road (Newton's laws of motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (8.4) On the road (Newton's laws of motion)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe what is happening to a vehicle’s speed while a driver is reacting to a hazard ahead. Distinguish between braking distance and stopping distance. Describe how road conditions affect these distances. The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (8.2) Using F=ma (Newton's laws of motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (8.2) Using F=ma (Newton's laws of motion)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Apply F = ma when the forces on an object are in opposite directions. Explain why you experience less support as an ascending lift stops. Describe any situation in which F = ma cannot be applied The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (8.1) Force and acceleration (Newton's laws of motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (8.1) Force and acceleration (Newton's laws of motion)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe what effect a resultant force produces. Describe what would happen to a body that was already in motion if there was no resultant force acting on it. Explain how weight is different to mass The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (8.3) Terminal speed (Newton's laws of motion)
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A level Physics (8.3) Terminal speed (Newton's laws of motion)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Explain why the speed reaches a maximum when a driving force is still acting. Explain what we mean by a drag force. Explain what determines the terminal speed of a falling object or a vehicle. The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (9.1) Momentum and impulse (Force and momentum)
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A level Physics (9.1) Momentum and impulse (Force and momentum)

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Each lesson follows the AQA Physics: A Level Year 1 and AS textbook https://amzn.to/3BGFsD5 The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Calculate momentum. Describe the connection between Newton’s first and second laws of motion and momentum. Define the impulse of a force, and calculate it from a force versus time graph. The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (25.5) Transformers (Electromagnetic induction)
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A level Physics (25.5) Transformers (Electromagnetic induction)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Explain the purpose of transformers Describe the energy changes that take place in a transformer Discuss how the efficiency of transformers is improved by better design The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (26.3) More about alpha, beta, and gamma radiation (Radioactivity)
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A level Physics (26.3) More about alpha, beta, and gamma radiation (Radioactivity)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe what happens to the nucleus in a radioactive change Describe how the intensity of gamma radiation changes with distance Explain how to represent the change in a nucleus when it emits alpha, beta, or gamma radiation The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (25.1) Generating electricity (Electromagnetic induction)
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A level Physics (25.1) Generating electricity (Electromagnetic induction)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Describe what must happen to a conductor (or to the magnetic field in which it’s placed) for electricity to be generated State the factors that would cause the induced emf to be greater Discuss whether an induced emf always causes a current to flow The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (26.2) The properties of alpha, beta, and gamma radiation (Radioactivity)
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A level Physics (26.2) The properties of alpha, beta, and gamma radiation (Radioactivity)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Define alpha, beta, and gamma radiation Explain why they are dangerous Describe the properties of alpha, beta, and gamma radiation The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (25.3) The alternating current generator (Electromagnetic induction)
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A level Physics (25.3) The alternating current generator (Electromagnetic induction)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives State the two features of the output voltage waveform that change if the coil is turned faster Explain why the output alternates Explain why it is preferable for practical generators to have fixed coils and a rotating (electro)magnet The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (26.1) The discovery of the nucleus (Radioactivity)
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A level Physics (26.1) The discovery of the nucleus (Radioactivity)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives State how big the nucleus is Describe how the nucleus was discovered Explain why it was not discovered earlier The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (25.2) The laws of electromagnetic induction (Electromagnetic induction)
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A level Physics (25.2) The laws of electromagnetic induction (Electromagnetic induction)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Define the magnetic flux and the magnetic flux linkage Relate the induced emf in a coil to the magnetic flux linkage through it State Lenz’s law and the conservation law that explains it The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (25.4) Alternating current and power (Electromagnetic induction)
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A level Physics (25.4) Alternating current and power (Electromagnetic induction)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Define an alternating current Explain what is meant by the rms value of an alternating current Calculate the power supplied by an alternating current The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.
A level Physics (26.9)  Nuclear radius  (Radioactivity)
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A level Physics (26.9) Nuclear radius (Radioactivity)

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This lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lesson is complete and designed to be taught over a period of 90 minutes. It is fully animated and contains fully worked out answers to every question. Learning objectives Discuss whether more massive nuclei are wider Describe how the radius of a nucleus depends on its mass number A Describe how dense the nucleus is The format A recall starter activity to help store key definitions and ideas to long term memory. Clear slides presented in a logical order, which can be used to talk through and explain the key concepts of the lesson. Questions and example slides, which can be used to model perfect exam ready answers. Summary questions to practice and consolidate the new knowledge gained from the lesson.