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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.
(GCSE BUNDLE 4.2) AQA Physics - Electricity
ThePhysicsmasterThePhysicsmaster

(GCSE BUNDLE 4.2) AQA Physics - Electricity

8 Resources
This bundle contains 8 lessons This lesson follows the AQA GCSE Physics specification (post 2016) It contains a complete lesson designed to last around 1 hour, it includes: A recall starter activity and answers An explanation of the key concepts Examples for modelling practice questions with answers
AQA GCSE Physics (4.2.1.4) Electricity - Resistors
ThePhysicsmasterThePhysicsmaster

AQA GCSE Physics (4.2.1.4) Electricity - Resistors

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This lesson follows the AQA GCSE Physics specification (post 2016) It contains a complete lesson designed to last around 1 hour, it includes: A recall starter activity and answers An explanation of the key concepts Examples for modelling Practice questions with answers
A level Physics (7.3) Motion along a line at constant acceleration - Kinematics - (On the move)
ThePhysicsmasterThePhysicsmaster

A level Physics (7.3) Motion along a line at constant acceleration - Kinematics - (On the move)

(1)
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 Distinguish between u and v Calculate the displacement of an object moving with uniform acceleration Explain what else we need to know to calculate the acceleration of an object if we know its displacement in a given time. 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.
(Chapter 18 BUNDLE) A level Physics - Further mechanics - Simple harmonic motion (SHM)
ThePhysicsmasterThePhysicsmaster

(Chapter 18 BUNDLE) A level Physics - Further mechanics - Simple harmonic motion (SHM)

7 Resources
This bundle contains 6 lessons and an end of chapter assessment Each lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lessons are complete and designed to be taught over a period of 90 minutes. They are fully animated and contains fully worked out answers to every question. 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 (18.6) Forced oscillations and resonance (Simple harmonics motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (18.6) Forced oscillations and resonance (Simple harmonics motion)

(0)
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 circumstances in which resonance occurs Distinguish between free vibrations and forced vibrations Explain why a resonant system reaches maximum amplitude of vibration 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 (18.5) Energy and SHM (Simple harmonics motion)
ThePhysicsmasterThePhysicsmaster

A level Physics (18.5) Energy and SHM (Simple harmonics motion)

(0)
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 how, in simple harmonic motion, kinetic energy and potential energy vary with displacement Describe how these energies vary with time if damping is negligible Describe the effects of damping on the characteristics of oscillators 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 (18.4) Application of SHM (Simple harmonics motion)
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A level Physics (18.4) Application of SHM (Simple harmonics motion)

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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 conditions that must be satisfied for a mass-spring system or simple pendulum to oscillate with simple harmonic motion Describe how the period of the mass-spring system depends on the mass Describe how the period of a simple pendulum depends on its length 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 (18.3) More about sine waves (Simple harmonics motion)
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A level Physics (18.3) More about sine waves (Simple harmonics motion)

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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 equation that relates displacement to time for a body moving with simple harmonic motion State the point at which the oscillations must start for this equation to apply Calculate the velocity for a given displacement 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 (18.2) Principles of SHM (Simple harmonics motion)
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A level Physics (18.2) Principles of SHM (Simple harmonics motion)

(0)
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 fundamental conditions about acceleration that apply to simple harmonic motion Describe how displacement, velocity, and acceleration vary with time Describe the phase difference between displacement, velocity, and 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 (18.1) Oscillations (Simple harmonics motion)
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A level Physics (18.1) Oscillations (Simple harmonics motion)

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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 what is meant by one complete oscillation Define amplitude, frequency, and period Describe the phase difference between two oscillators that are out of step 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.
(Chapter 17 BUNDLE) A level Physics - Further mechanics - Motion in a circle
ThePhysicsmasterThePhysicsmaster

(Chapter 17 BUNDLE) A level Physics - Further mechanics - Motion in a circle

5 Resources
This bundle contains 4 lessons and an end of chapter assessment Each lesson follows the AQA Physics: A Level Year 2 textbook https://amzn.to/3DG6pIP The lessons are complete and designed to be taught over a period of 90 minutes. They are fully animated and contains fully worked out answers to every question. 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 (17.4) At the fairground (Motion in a circle)
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A level Physics (17.4) At the fairground (Motion in a circle)

(0)
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 when the contact force on a passenger on a rollercoaster ride is the greatest Describe the condition that applies when a passenger just fails to keep in contact with their seat. Calculate the apparent weight felt when going around a big wheel 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 (17.3) On the road (Motion in a circle)
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A level Physics (17.3) On the road (Motion in a circle)

(0)
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 why a passenger in a car seems to be thrown outwards if the car rounds a bend too quickly. Describe what happens to the force between the passenger and his seat when travelling over a curved bridge Identify the forces that provide the centripetal force on a banked track 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.