Practise › Questions
Question practice
All 807 questions from the workbooks, one at a time, with the mark scheme a tap away. Write your answer first, then mark yourself against what the examiner is actually looking for; each question comes back on a schedule set by how it went.
Practise the whole course Measurements Mechanics Materials Waves Quantum phenomena Particles Electricity Periodic motion Thermal physics Gravitational fields Electric fields Capacitance Magnetic fields Nuclear physics Astrophysics Turning points Alternating currents Antimatter and photons Black-body radiation and spectral classes Capacitors and energy stored Cathode rays and the electron Charging and discharging Circuits and Kirchhoff's laws Circular motion Classification of particles Collisions of electrons with atoms Comparing electric and gravitational fields Conservation laws Conservation of energy Constituents of the atom Coulomb's law and electric field strength Current, charge and the direction problem Current-voltage characteristics Density and Hooke's law Diffraction and the single slit Diffraction gratings Drag and terminal speed EMF and internal resistance Electric potential Electromagnetic induction: Faraday and Lenz Energy levels and photon emission Estimation and orders of magnitude Fission and fusion Force on a moving charge Forced vibrations and resonance Gravitational potential Ideal gases and the gas laws Interference and Young's double slit Longitudinal, transverse and polarisation Magnetic flux and flux linkage Magnetic flux density and the force on a wire Mass and weight Mass-energy and binding energy Millikan's oil drop experiment Molecular kinetic theory Moments and equilibrium Momentum and impulse Motion graphs and the SUVAT equations Newton's law of gravitation Newton's laws and the resultant force Nuclear radius and density Nuclear reactors and safety Orbits and satellites Particle interactions and exchange particles Potential dividers Progressive waves Projectile motion Quanta and wave-particle duality Quarks and antiquarks Quasars and exoplanets Radioactive decay and half-life Refraction and total internal reflection Resistivity and superconductivity Rutherford scattering and the nuclear atom SHM systems: pendulums and springs SI units and prefixes Scalars and vectors Simple harmonic motion Stable and unstable nuclei Star brightness and magnitude Stationary waves Stress, strain and the Young modulus Telescopes across the spectrum Telescopes and image formation The Doppler effect and Hubble's law The HR diagram and stellar evolution The Michelson-Morley experiment The consequences of special relativity The field concept The nature of light The photoelectric effect The time constant and exponential decay Thermal energy transfer and specific heat capacity Transformers Uncertainty and error Wave-particle duality Work, energy and power at any demand warm-up standard stretch on calculation and explanation calculation only explanation only
Start Practise anything
Or sit a timed paper of 25 marks 50 marks 85 marks, a full paper Build the paper
Manage progress Reset my question progress
A timed paper draws questions from whatever you have selected, orders them easiest first and puts about a minute and a half a mark on the clock, which is roughly the rate the written papers run at. The mark scheme stays shut until you finish, then you mark each answer against it.
Progress lives in this browser, on this device only, with no accounts. 807 questions worth 2414 marks, every one original InkPhysics material rather than past-paper text. Prefer paper? The same questions are in the printable workbooks , with the answers in a separate book.