Edexcel A-level Physics
Free Edexcel A-level Physics revision for Edexcel Physics (9PH0): 13 topics and 166 short lessons, each with R.E.C.I.P.E. recall steps and a quiz. The topics follow the Edexcel specification.
1. Further Mechanics
- Uniform Circular Motion
- Angular Displacement
- Angular Speed
- Centripetal Acceleration
- Proof - centripetal acceleration
- Centripetal Force
- On the Road
- The London Eye
- A Spin Dryer
- Momentum as a Vector
- Conservation of Momentum in Two Dimensions
- Resolving Momentum in Collisions
- Kinetic Energy and Momentum - Ek = p2/2m
- Elastic and Inelastic Collisions
- Two-Dimensional Collision Questions
2. Simple Harmonic Motion
3. Gravitational Fields
- Gravitational Fields.
- The Strength of a Gravitational Field.
- Free fall in a gravitational field.
- The Earth's gravitational field
- Gravitational Potential.
- Gravitational Potential.
- Equipotentials.
- The potential gradient.
- Newton's Law of Gravitation.
- Gravitational Field Strength - g.
- Gravitational Potential.
- Potential Gradients
- Area Under a Force vs Distance Graph
- Satellites
4. Electric Fields
- Static Electricity
- Shuttling Ball Experiment
- Gold Leaf Electroscope
- Electric Fields
- Electric field strength
- Lightning Conductor
- Electric Field between Two Parallel Plates
- Permittivity of free Space - ε0
- Van de Graaf generator
- Electric Potential
- Equipotentials
- Potential gradient
- The Force between Two Charged Objects
- Coulombs Law
- Point Charges
- Electric Field Strength
- Electric Potential
5. Capacitors
- A Capacitor
- Charging a Capacitor and Constant Current
- Capacitance
- Use of Capacitors
- Energy Stored in a Charged Capacitor
- Measuring the Energy Stored in a Charged Capacitor.
- Energy stored in a Thundercloud
- Discharging a Capacitor through a Fixed Resistor
- Exponential Decay.
- The Time Constant RC
- Measurement with Oscilloscope. Capacitor Smoothing
- Charging a Capacitor through a fixed resistor
6. Magnetic Fields
7. Electromagnetic Induction
8. Radioactivity
- Rutherford's α-Particle Scattering Experiment.
- Rutherford's Interpretation
- Radioactivity
- Radioactivity Observations
- Geiger Tube
- The nature of α, β and γ Radiation.
- Gamma radiation
- Radioactive Change
- The Dangers of Radioactivity
- Background Radiation
- Radioactive Decay and Half-life
- Activity
- Radioactive Decay
- Decay Constant
- Radiocarbon dating
- Argon Dating
- Radioactive Tracers
- Thickness monitoring and Engine Wear
- Power Sources
- N-Z Graph
- Decay Series
- Energy Levels
- Technetium
- Electron Diffraction
- Nuclear Radius and Density
9. Nuclear Energy
10. Thermal Physics
11. Gases
12. Particle Physics
- Alpha Particle Scattering and the Nuclear Model
- Particle Accelerators
- The Linear Accelerator
- The Cyclotron
- Particle Detectors
- Tracks in a Magnetic Field
- Relativistic Energies and GeV
- Mass in MeV/c2
- Particles and Antiparticles
- Pair Production
- Annihilation
- The Standard Model
- Quarks
- Leptons
- Baryons and Mesons
- Quark Composition of Hadrons
- Conservation Laws in Particle Interactions
- Charge, Baryon Number and Lepton Number
- Particle Interaction Questions
13. Space
- Black-Body Radiation
- Stefan-Boltzmann Law
- Wien's Law
- Luminosity and Intensity
- The Inverse Square Law for Intensity
- Estimating Stellar Radius and Temperature
- The Hertzsprung-Russell Diagram
- Formation of a Star
- Life Cycle of a Star
- White Dwarfs, Neutron Stars and Black Holes
- Trigonometric Parallax
- Standard Candles
- The Doppler Effect and Red Shift
- Hubble's Law
- The Age of the Universe
- The Expanding Universe
- Dark Matter
- The Fate of the Universe