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Physics Practice
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2,286 matching questions · Page 1 of 191
Original GioPhysics questions with worked guidance, not official past papers. Difficulty labels describe question demand.
Choose the reading you can defend
Four students measure the width of a notebook with a ruler whose smallest division is 1 mm. Which reported result is the most appropriate?
Repeated timing of ten swings
A student times ten complete swings of the same pendulum five times. The stopwatch reads to 0.01 s.
A fair test of a toy car ramp
A team claims that increasing the release height of a toy car increases its speed at the bottom of a ramp. They have one ramp, a metre rule, two light gates, blocks, and the same toy car.
A lap that ends where it began
A runner completes one 400 m lap and stops at the starting line after 80 s. Which statement is correct?
A delivery robot changes pace
A delivery robot moves in a straight corridor. Its position is measured from a fixed doorway.
Choosing a model for a water jet
A designer aims a fountain nozzle horizontally from a platform 1.25 m above a pool. Water leaves at 4.0 m s⁻¹. A simple projectile model uses g = 10 m s⁻² and ignores air resistance. The…
Forces on a rising lift
A lift is moving upward at constant speed. Which statement about the lift is correct?
Finding cart mass from force data
A cart is pulled along a horizontal track. The same resistive force acts in every run.
Grip, rolling resistance, and a wheelchair tyre
A school is choosing wheelchair tyres. Tyre P needs an average push of 18 N on a smooth floor and 31 N on carpet; it stops in 1.8 m on a wet ramp. Tyre Q needs 23 N on the floor and 38 N on…
Momentum belongs to a chosen system
A 2.0 kg trolley moves east at 3.0 m s⁻¹ and a 1.0 kg trolley moves west at 4.0 m s⁻¹. Take east as positive. What is the total momentum of the two-trolley system?
Impulse from a force sensor
A 0.20 kg ball approaches a bat at 10 m s⁻¹. Take the ball's initial direction as negative. A force sensor records the force on the ball; straight lines may be drawn between the data points.
Safer barriers for a skate park
A 55 kg rider reaches a barrier at 6.0 m s⁻¹ and comes to rest. Barrier X gives an average stopping time of 0.12 s and can be reused after impact. Barrier Y gives 0.30 s but its foam…
Featured practice sets
Useful question selections from the existing bank.




Atomic & nuclear challenge
Apply atomic models and reason through nuclear changes.
Practice papers & marking guides
Prefer a full paper? Find original curriculum papers, or follow links to official board resources.
Practice for your goals
Complete problem-studio directory 29 modules · six connected phases
Motion & mechanics
- 01 · Motion ApplicationsGuided motion problems with hints and worked solutions.→
- 02 · Forces ApplicationsBuild and test force models from Easy to Expert.→
- 03 · Work ApplicationsPractise signed work, graph area, power, and efficiency.→
- 04 · Energy ApplicationsSolve energy-store, conservation, and modelling challenges.→
- 05 · Momentum ApplicationsPractise impulse, conservation, collisions, vectors, calculus, and simulation.→
- 06 · Circular Motion ApplicationsSolve circular, rotational, rolling, angular-momentum, orbit, and game models.→
Matter & structures
- 07 · Matter: Density & Pressure ApplicationsPractise matter, density, pressure, manometers, hydraulics, and buoyancy.→
- 08 · Solid Deformation ApplicationsSolve spring, elastic-energy, stress–strain, and material-response problems.→
- 09 · Statics ApplicationsBuild equilibrium models for moments, stability, beams, supports, and ladders.→
Charges & circuits
- 10 · Electric Charges ApplicationsPractise charge counting, charging methods, Coulomb's law, and equilibrium.→
- 11 · Electric Fields ApplicationsModel field strength, point-charge fields, null points, and parallel plates.→
- 12 · Electric Potential ApplicationsWork with potential energy, voltage, superposition, and capacitors.→
- 13 · Circuits ApplicationsSolve current, resistance, resistivity, network, and power problems.→
- 14 · Advanced Circuits ApplicationsApply Kirchhoff's laws, internal resistance, dividers, and RC calculus.→
Waves, light & fields
- 15 · Waves ApplicationsPractise SHM, the wave equation, interference, gratings, and Doppler.→
- 16 · Light ApplicationsTrace reflection, Snell's law, total internal reflection, and dispersion.→
- 17 · Optics ApplicationsSolve mirror, lens, instrument, resolution, and thin-film problems.→
- 18 · Magnetism ApplicationsCompute fields from currents and forces on currents and moving charges.→
- 19 · Electromagnetism ApplicationsPractise flux, Faraday's and Lenz's laws, generators, and transformers.→
- 20 · Electricity & Magnetism ApplicationsPractise cells, heating, magnetic effects, and motor problems.→
Thermal & oscillations
Modern, space & medical
- 24 · Atomic Physics ApplicationsPractise spectra, decay, half-life, and binding-energy problems.→
- 25 · Quantum ApplicationsPractise photoelectric, matter-wave, Bohr, and nuclear-size problems.→
- 26 · Advanced Fission & Fusion ApplicationsPractise criticality, reactor power, fusion, and dose problems.→
- 27 · Galilean & Special Relativity ApplicationsPractise gamma, dilation, velocity-addition, and energy problems.→
- 28 · Space & Stars Physics ApplicationsPractise orbit, luminosity, parallax, and Hubble-law problems.→
- 29 · Medical Physics ApplicationsPractise attenuation, impedance, tracer, and imaging problems.→
University problem routes Physics I–V and Quantum Mechanics I
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