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GRE · GRE Subject Test · GRE Physics

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Course units and learning goals →These lessons teach selected course objectives. Check the remaining coverage gaps; the material is not a complete preparation programme.
1 CM · Classical mechanics 0 / 1
2 EM · Electromagnetism 0 / 1
3 WO · Waves and optics 0 / 1
4 TS · Thermodynamics and statistical mechanics 0 / 1
5 QM · Quantum mechanics and atomic physics 0 / 1
6 RA · Relativity, laboratory methods and specialised topics 0 / 1
7 AT · Atomic spectra and selection rules 0 / 1
8 SN · Solid-state, nuclear and particle models 0 / 1
9 AH · Hamiltonian mechanics and astrophysical scaling 0 / 1
10 CM.1 · Collisions, work and oscillator energy 0 / 1
11 CM.2 · Rotation, buoyancy and terminal-speed balances 0 / 1
12 CM.3 · Coupled acceleration and relative motion 0 / 1
13 EM.1 · Electrostatic superposition, flux and conductors 0 / 1
14 EM.2 · Circuit power, induction and charged-particle motion 0 / 1
15 EM.3 · Maxwell waves, energy flow and boundary conditions 0 / 1
16 WO.1 · Acoustic Doppler echoes and standing-wave boundaries 0 / 1
17 WO.2 · Optical instruments, path differences and refraction 0 / 1
18 WO.3 · Fourier symmetry and wave superposition 0 / 1
19 TS.1 · Gas processes, entropy and reversible cycles 0 / 1
20 TS.2 · Speed distributions and statistical ensembles 0 / 1
21 LM.1 · Counting statistics, uncertainty and dimensional models 0 / 1
22 RA.1 · Relativistic lifetime, energy and Doppler shift 0 / 1
23 AT.1 · Photoelectrons, reduced mass and atomic excitation 0 / 1
24 QM.1 · Scattering, degeneracy and Pauli operators 0 / 1
25 SN.1 · Nuclear binding, particle families and Hall carriers 0 / 1
26 CM.4 · Constraints, variational equations and cyclic coordinates 0 / 1
27 CM.5 · Accelerating and rotating reference frames 0 / 1
28 CM.6 · Fluid continuity, pressure energy and viscous flow 0 / 1
29 EM.4 · Polarisation, magnetisation and material fields 0 / 1
30 EM.5 · RC and RL transients, impedance and resonance 0 / 1
31 WO.4 · Polarisation, analyser chains and phase 0 / 1
32 WO.5 · Diffraction envelopes and missing interference orders 0 / 1
33 WO.6 · Signed lens and mirror images 0 / 1
34 TS.3 · Thermal transport, calorimetry and expansion 0 / 1
35 TS.4 · Partition derivatives, energy fluctuations and heat capacity 0 / 1
36 TS.5 · Quantum occupations and limits of equipartition 0 / 1
37 QM.2 · Weak perturbations and degenerate subspaces 0 / 1
38 QM.3 · Exchange symmetry, spin pairs and Pauli exclusion 0 / 1
39 QM.4 · Finite-well bound states and hydrogenic quantum numbers 0 / 1
40 AT.2 · Atomic field shifts and spectral differences 0 / 1
41 AT.3 · Thermal spectra and one-electron scaling 0 / 1

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IGCSE, A-Level & AP