| AQA Physics (8463) | Atomic structure and radioactivity | Half-Life: GCSE Radioactive Decay Game | — |
|---|
| AQA Physics (8463) | Electric circuits | Circuit Builder: Series and Parallel Circuits Game | — |
|---|
| AQA Physics (8463) | Electromagnetism | Electromagnet Workshop: Electromagnets and the Motor Effect | Force on a current in a magnetic field: F = BIl |
|---|
| AQA Physics (8463) | Energy stores and efficiency | Energy Stores: GCSE Energy Transfers Game | — |
|---|
| AQA Physics (8463) | Equations and units | Equation Rearranger: GCSE Physics Equations Game | Acceleration formula: a = (v − u)/t, Charge equation: Q = It, Density formula: ρ = m/V, Efficiency formula, Elastic potential energy formula: E = ½ k e², Electrical power equation: P = VI, Energy transferred = charge × potential difference (E = QV), Energy transferred equation: E = Pt, Force formula: F = ma, Force and change in momentum: F = mΔv/Δt, Force on a current in a magnetic field: F = BIl, Pressure and volume of a gas: pV = constant, Gravitational potential energy formula: E = m g h, Kinetic energy formula: E = ½mv², Pressure in a liquid: p = hρg, Moment of a force: M = F d, Momentum formula: p = mv, Potential difference equation: V = IR, Power equation: P = E/t, Power equation: P = I²R, Power formula: P = W/t, Pressure formula: p = F ÷ A, Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L, Speed formula: distance = speed × time, Spring force equation: F = k e, The equation v² − u² = 2as, Transformer power equation: Vp Ip = Vs Is, Transformer turns equation: Vp/Vs = Np/Ns, Wave speed equation: v = fλ, Weight formula: W = mg, Work done formula: W = Fs |
|---|
| AQA Physics (8463) | Forces and moments | Moments Balance: Principle of Moments Game | Moment of a force: M = F d |
|---|
| AQA Physics (8463) | Forces and motion | Motion Graphs: GCSE Distance-Time and Velocity-Time Game | Acceleration formula: a = (v − u)/t, Speed formula: distance = speed × time |
|---|
| AQA Physics (8463) | Forces and motion | Resultant Force: Free Body Diagram Game for GCSE | Force formula: F = ma |
|---|
| AQA Physics (8463) | Pressure | Pressure Dive: Pressure Calculations on Land and Under Water | Pressure in a liquid: p = hρg, Pressure formula: p = F ÷ A |
|---|
| AQA Physics (8463) | Specific heat capacity and latent heat | Heat It Up: Specific Heat Capacity and Latent Heat Game | Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L |
|---|
| AQA Physics (8463) | Units and prefixes | Unit Sprint: Unit Conversion Game for GCSE Physics | — |
|---|
| AQA Physics (8463) | Waves | Wave Lab: Wave Speed and Electromagnetic Spectrum Game | Wave speed equation: v = fλ |
|---|
| AQA Combined Science (8464) | Acceleration formula: a = (v − u)/t | — | Acceleration formula: a = (v − u)/t |
|---|
| AQA Combined Science (8464) | Balancing equations | Balance It: Balancing Equations Game | — |
|---|
| AQA Combined Science (8464) | Cell structure | Cell Builder: Animal and Plant Cells Game | — |
|---|
| AQA Combined Science (8464) | Charge equation: Q = It | — | Charge equation: Q = It |
|---|
| AQA Combined Science (8464) | Chromatography and Rf values | Rf Race: Chromatography Rf Value Game | — |
|---|
| AQA Combined Science (8464) | Density formula: ρ = m/V | — | Density formula: ρ = m/V |
|---|
| AQA Combined Science (8464) | Efficiency formula | — | Efficiency formula |
|---|
| AQA Combined Science (8464) | Elastic potential energy formula: E = ½ k e² | — | Elastic potential energy formula: E = ½ k e² |
|---|
| AQA Combined Science (8464) | Electrical power equation: P = VI | — | Electrical power equation: P = VI |
|---|
| AQA Combined Science (8464) | Energy transferred = charge × potential difference (E = QV) | — | Energy transferred = charge × potential difference (E = QV) |
|---|
| AQA Combined Science (8464) | Energy transferred equation: E = Pt | — | Energy transferred equation: E = Pt |
|---|
| AQA Combined Science (8464) | Force formula: F = ma | — | Force formula: F = ma |
|---|
| AQA Combined Science (8464) | Force on a current in a magnetic field: F = BIl | — | Force on a current in a magnetic field: F = BIl |
|---|
| AQA Combined Science (8464) | Gravitational potential energy formula: E = m g h | — | Gravitational potential energy formula: E = m g h |
|---|
| AQA Combined Science (8464) | Kinetic energy formula: E = ½mv² | — | Kinetic energy formula: E = ½mv² |
|---|
| AQA Combined Science (8464) | Magnification | Magnification Challenge: Magnification Formula Game | — |
|---|
| AQA Combined Science (8464) | Momentum formula: p = mv | — | Momentum formula: p = mv |
|---|
| AQA Combined Science (8464) | Periodic table | Periodic Table Challenge: Periodic Table Game for GCSE | — |
|---|
| AQA Combined Science (8464) | Photosynthesis | Photosynthesis Lab: Photosynthesis Equation and Limiting Factors Game | — |
|---|
| AQA Combined Science (8464) | Potential difference equation: V = IR | — | Potential difference equation: V = IR |
|---|
| AQA Combined Science (8464) | Power equation: P = E/t | — | Power equation: P = E/t |
|---|
| AQA Combined Science (8464) | Power equation: P = I²R | — | Power equation: P = I²R |
|---|
| AQA Combined Science (8464) | Power formula: P = W/t | — | Power formula: P = W/t |
|---|
| AQA Combined Science (8464) | Respiration | Respiration Equations: Aerobic and Anaerobic Respiration Equation Game | — |
|---|
| AQA Combined Science (8464) | Specific heat capacity equation: ΔE = m c Δθ | — | Specific heat capacity equation: ΔE = m c Δθ |
|---|
| AQA Combined Science (8464) | Specific latent heat equation: E = m L | — | Specific latent heat equation: E = m L |
|---|
| AQA Combined Science (8464) | Speed formula: distance = speed × time | — | Speed formula: distance = speed × time |
|---|
| AQA Combined Science (8464) | Spring force equation: F = k e | — | Spring force equation: F = k e |
|---|
| AQA Combined Science (8464) | The equation v² − u² = 2as | — | The equation v² − u² = 2as |
|---|
| AQA Combined Science (8464) | Transformer power equation: Vp Ip = Vs Is | — | Transformer power equation: Vp Ip = Vs Is |
|---|
| AQA Combined Science (8464) | Wave speed equation: v = fλ | — | Wave speed equation: v = fλ |
|---|
| AQA Combined Science (8464) | Weight formula: W = mg | — | Weight formula: W = mg |
|---|
| AQA Combined Science (8464) | Work done formula: W = Fs | — | Work done formula: W = Fs |
|---|
| Edexcel Physics (1PH0) | Atomic structure and radioactivity | Half-Life: GCSE Radioactive Decay Game | — |
|---|
| Edexcel Physics (1PH0) | Electric circuits | Circuit Builder: Series and Parallel Circuits Game | — |
|---|
| Edexcel Physics (1PH0) | Electromagnetism | Electromagnet Workshop: Electromagnets and the Motor Effect | Force on a current in a magnetic field: F = BIl |
|---|
| Edexcel Physics (1PH0) | Energy stores and efficiency | Energy Stores: GCSE Energy Transfers Game | — |
|---|
| Edexcel Physics (1PH0) | Equations and units | Equation Rearranger: GCSE Physics Equations Game | Acceleration formula: a = (v − u)/t, Charge equation: Q = It, Density formula: ρ = m/V, Efficiency formula, Elastic potential energy formula: E = ½ k e², Electrical power equation: P = VI, Energy transferred = charge × potential difference (E = QV), Force formula: F = ma, Force and change in momentum: F = mΔv/Δt, Force on a current in a magnetic field: F = BIl, Pressure and volume of a gas: pV = constant, Gravitational potential energy formula: E = m g h, Kinetic energy formula: E = ½mv², Pressure in a liquid: p = hρg, Moment of a force: M = F d, Momentum formula: p = mv, Potential difference equation: V = IR, Power equation: P = E/t, Power equation: P = I²R, Power formula: P = W/t, Pressure formula: p = F ÷ A, Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L, Speed formula: distance = speed × time, Spring force equation: F = k e, The equation v² − u² = 2as, Transformer power equation: Vp Ip = Vs Is, Transformer turns equation: Vp/Vs = Np/Ns, Wave speed equation: v = fλ, Weight formula: W = mg, Work done formula: W = Fs |
|---|
| Edexcel Physics (1PH0) | Forces and moments | Moments Balance: Principle of Moments Game | Moment of a force: M = F d |
|---|
| Edexcel Physics (1PH0) | Forces and motion | Motion Graphs: GCSE Distance-Time and Velocity-Time Game | Acceleration formula: a = (v − u)/t, Speed formula: distance = speed × time |
|---|
| Edexcel Physics (1PH0) | Forces and motion | Resultant Force: Free Body Diagram Game for GCSE | Force formula: F = ma |
|---|
| Edexcel Physics (1PH0) | Pressure | Pressure Dive: Pressure Calculations on Land and Under Water | Pressure in a liquid: p = hρg, Pressure formula: p = F ÷ A |
|---|
| Edexcel Physics (1PH0) | Specific heat capacity and latent heat | Heat It Up: Specific Heat Capacity and Latent Heat Game | Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L |
|---|
| Edexcel Physics (1PH0) | Units and prefixes | Unit Sprint: Unit Conversion Game for GCSE Physics | — |
|---|
| Edexcel Physics (1PH0) | Waves | Wave Lab: Wave Speed and Electromagnetic Spectrum Game | Wave speed equation: v = fλ |
|---|
| Edexcel Combined Science (1SC0) | Acceleration formula: a = (v − u)/t | — | Acceleration formula: a = (v − u)/t |
|---|
| Edexcel Combined Science (1SC0) | Balancing equations | Balance It: Balancing Equations Game | — |
|---|
| Edexcel Combined Science (1SC0) | Cell structure | Cell Builder: Animal and Plant Cells Game | — |
|---|
| Edexcel Combined Science (1SC0) | Charge equation: Q = It | — | Charge equation: Q = It |
|---|
| Edexcel Combined Science (1SC0) | Chromatography and Rf values | Rf Race: Chromatography Rf Value Game | — |
|---|
| Edexcel Combined Science (1SC0) | Density formula: ρ = m/V | — | Density formula: ρ = m/V |
|---|
| Edexcel Combined Science (1SC0) | Efficiency formula | — | Efficiency formula |
|---|
| Edexcel Combined Science (1SC0) | Elastic potential energy formula: E = ½ k e² | — | Elastic potential energy formula: E = ½ k e² |
|---|
| Edexcel Combined Science (1SC0) | Electrical power equation: P = VI | — | Electrical power equation: P = VI |
|---|
| Edexcel Combined Science (1SC0) | Energy transferred = charge × potential difference (E = QV) | — | Energy transferred = charge × potential difference (E = QV) |
|---|
| Edexcel Combined Science (1SC0) | Force and change in momentum: F = mΔv/Δt | — | Force and change in momentum: F = mΔv/Δt |
|---|
| Edexcel Combined Science (1SC0) | Force formula: F = ma | — | Force formula: F = ma |
|---|
| Edexcel Combined Science (1SC0) | Force on a current in a magnetic field: F = BIl | — | Force on a current in a magnetic field: F = BIl |
|---|
| Edexcel Combined Science (1SC0) | Gravitational potential energy formula: E = m g h | — | Gravitational potential energy formula: E = m g h |
|---|
| Edexcel Combined Science (1SC0) | Kinetic energy formula: E = ½mv² | — | Kinetic energy formula: E = ½mv² |
|---|
| Edexcel Combined Science (1SC0) | Magnification | Magnification Challenge: Magnification Formula Game | — |
|---|
| Edexcel Combined Science (1SC0) | Momentum formula: p = mv | — | Momentum formula: p = mv |
|---|
| Edexcel Combined Science (1SC0) | Photosynthesis | Photosynthesis Lab: Photosynthesis Equation and Limiting Factors Game | — |
|---|
| Edexcel Combined Science (1SC0) | Potential difference equation: V = IR | — | Potential difference equation: V = IR |
|---|
| Edexcel Combined Science (1SC0) | Power equation: P = E/t | — | Power equation: P = E/t |
|---|
| Edexcel Combined Science (1SC0) | Power equation: P = I²R | — | Power equation: P = I²R |
|---|
| Edexcel Combined Science (1SC0) | Power formula: P = W/t | — | Power formula: P = W/t |
|---|
| Edexcel Combined Science (1SC0) | Respiration | Respiration Equations: Aerobic and Anaerobic Respiration Equation Game | — |
|---|
| Edexcel Combined Science (1SC0) | Specific heat capacity equation: ΔE = m c Δθ | — | Specific heat capacity equation: ΔE = m c Δθ |
|---|
| Edexcel Combined Science (1SC0) | Specific latent heat equation: E = m L | — | Specific latent heat equation: E = m L |
|---|
| Edexcel Combined Science (1SC0) | Speed formula: distance = speed × time | — | Speed formula: distance = speed × time |
|---|
| Edexcel Combined Science (1SC0) | Spring force equation: F = k e | — | Spring force equation: F = k e |
|---|
| Edexcel Combined Science (1SC0) | The equation v² − u² = 2as | — | The equation v² − u² = 2as |
|---|
| Edexcel Combined Science (1SC0) | Transformer power equation: Vp Ip = Vs Is | — | Transformer power equation: Vp Ip = Vs Is |
|---|
| Edexcel Combined Science (1SC0) | Wave speed equation: v = fλ | — | Wave speed equation: v = fλ |
|---|
| Edexcel Combined Science (1SC0) | Weight formula: W = mg | — | Weight formula: W = mg |
|---|
| Edexcel Combined Science (1SC0) | Work done formula: W = Fs | — | Work done formula: W = Fs |
|---|
| OCR Gateway Physics A (J249) | Atomic structure and radioactivity | Half-Life: GCSE Radioactive Decay Game | — |
|---|
| OCR Gateway Physics A (J249) | Electric circuits | Circuit Builder: Series and Parallel Circuits Game | — |
|---|
| OCR Gateway Physics A (J249) | Electromagnetism | Electromagnet Workshop: Electromagnets and the Motor Effect | Force on a current in a magnetic field: F = BIl |
|---|
| OCR Gateway Physics A (J249) | Energy stores and efficiency | Energy Stores: GCSE Energy Transfers Game | — |
|---|
| OCR Gateway Physics A (J249) | Equations and units | Equation Rearranger: GCSE Physics Equations Game | Acceleration formula: a = (v − u)/t, Charge equation: Q = It, Density formula: ρ = m/V, Efficiency formula, Elastic potential energy formula: E = ½ k e², Electrical power equation: P = VI, Energy transferred = charge × potential difference (E = QV), Energy transferred equation: E = Pt, Force formula: F = ma, Force on a current in a magnetic field: F = BIl, Pressure and volume of a gas: pV = constant, Gravitational potential energy formula: E = m g h, Kinetic energy formula: E = ½mv², Pressure in a liquid: p = hρg, Moment of a force: M = F d, Momentum formula: p = mv, Potential difference equation: V = IR, Power equation: P = I²R, Power formula: P = W/t, Pressure formula: p = F ÷ A, Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L, Speed formula: distance = speed × time, Spring force equation: F = k e, The equation v² − u² = 2as, Transformer power equation: Vp Ip = Vs Is, Transformer turns equation: Vp/Vs = Np/Ns, Wave speed equation: v = fλ, Weight formula: W = mg, Work done formula: W = Fs |
|---|
| OCR Gateway Physics A (J249) | Forces and moments | Moments Balance: Principle of Moments Game | Moment of a force: M = F d |
|---|
| OCR Gateway Physics A (J249) | Forces and motion | Motion Graphs: GCSE Distance-Time and Velocity-Time Game | Acceleration formula: a = (v − u)/t, Speed formula: distance = speed × time |
|---|
| OCR Gateway Physics A (J249) | Forces and motion | Resultant Force: Free Body Diagram Game for GCSE | Force formula: F = ma |
|---|
| OCR Gateway Physics A (J249) | Pressure | Pressure Dive: Pressure Calculations on Land and Under Water | Pressure in a liquid: p = hρg, Pressure formula: p = F ÷ A |
|---|
| OCR Gateway Physics A (J249) | Specific heat capacity and latent heat | Heat It Up: Specific Heat Capacity and Latent Heat Game | Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L |
|---|
| OCR Gateway Physics A (J249) | Units and prefixes | Unit Sprint: Unit Conversion Game for GCSE Physics | — |
|---|
| OCR Gateway Physics A (J249) | Waves | Wave Lab: Wave Speed and Electromagnetic Spectrum Game | Wave speed equation: v = fλ |
|---|
| OCR Twenty First Century Physics B (J259) | Atomic structure and radioactivity | Half-Life: GCSE Radioactive Decay Game | — |
|---|
| OCR Twenty First Century Physics B (J259) | Electric circuits | Circuit Builder: Series and Parallel Circuits Game | — |
|---|
| OCR Twenty First Century Physics B (J259) | Equations and units | Equation Rearranger: GCSE Physics Equations Game | Acceleration formula: a = (v − u)/t, Charge equation: Q = It, Density formula: ρ = m/V, Efficiency formula, Elastic potential energy formula: E = ½ k e², Electrical power equation: P = VI, Energy transferred = charge × potential difference (E = QV), Energy transferred equation: E = Pt, Force formula: F = ma, Force and change in momentum: F = mΔv/Δt, Force on a current in a magnetic field: F = BIl, Pressure and volume of a gas: pV = constant, Gravitational potential energy formula: E = m g h, Kinetic energy formula: E = ½mv², Pressure in a liquid: p = hρg, Moment of a force: M = F d, Momentum formula: p = mv, Potential difference equation: V = IR, Power equation: P = E/t, Power equation: P = I²R, Pressure formula: p = F ÷ A, Specific heat capacity equation: ΔE = m c Δθ, Specific latent heat equation: E = m L, Speed formula: distance = speed × time, Spring force equation: F = k e, The equation v² − u² = 2as, Transformer power equation: Vp Ip = Vs Is, Transformer turns equation: Vp/Vs = Np/Ns, Wave speed equation: v = fλ, Weight formula: W = mg, Work done formula: W = Fs |
|---|
| OCR Twenty First Century Physics B (J259) | Forces and moments | Moments Balance: Principle of Moments Game | Moment of a force: M = F d |
|---|
| OCR Twenty First Century Physics B (J259) | Forces and motion | Motion Graphs: GCSE Distance-Time and Velocity-Time Game | Acceleration formula: a = (v − u)/t, Speed formula: distance = speed × time |
|---|
| OCR Twenty First Century Physics B (J259) | Waves | Wave Lab: Wave Speed and Electromagnetic Spectrum Game | Wave speed equation: v = fλ |
|---|
| Edexcel 1CH0 | Balancing equations | Balance It: Balancing Equations Game | — |
|---|
| Edexcel 1CH0 | Chromatography and Rf values | Rf Race: Chromatography Rf Value Game | — |
|---|
| Edexcel 1CH0 | Flame tests | Flame Test Lab: Flame Test Colours Game | — |
|---|
| Edexcel 1CH0 | Moles and reacting masses | Mole Ratio Rush: Moles Calculation Game | — |
|---|
| Edexcel 1CH0 | Periodic table | Periodic Table Challenge: Periodic Table Game for GCSE | — |
|---|
| Edexcel 1CH0 | pH and neutralisation | pH Detective: pH Scale and Neutralisation Game | — |
|---|
| Edexcel 1CH0 | Reactivity series and displacement | Reactivity Rank: Reactivity Series Game | — |
|---|