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Table of Contents: Fundamentals1 Fundamentals2 Scalars and vectors3 Vector calculationsMechanics4 Equations of motion5 Dynamics6 Conditions for equilibrium7 Projectiles and free fall8 Newton’s first law9 Newton’s third law10 Moments, torque and the principle of moments11 Centre of gravity12 Density13 Pressure14 Newton’s second law and momentum15 Collisions and impulse16 Work, energy and power17 Archimedes’ principle and flotation18 Drag and terminal velocity19 Car safety20 Law of conservation of energy21 Energy from the environment I22 Energy from the environment IIRadioactivity23 Background radiation and properties24 Uses of radioisotopes25 Isotopes and nuclear equations I26 Isotopes and nuclear equations II27 Random decay28 Nuclear stability29 Exponential decay and half-life I30 Exponential decay and half-life II31 Experiments with radioactivity I32 Experiments with radioactivity IIParticle physics33 Scattering experiments34 Exchange particles35 Nuclear forces36 Composition of particles37 Particles and anti-particles38 Conservation laws in particle physics39 Feynman diagramsElectricity40 Electric charge41 Conduction in solids, liquids and gases42 Ohm’s law and I–V curves43 Drift velocity of electrons44 Metals, semiconductors and insulators I45 Metals, semiconductors and insulators II46 Resistivity47 Effect of temperature and light on resistance48 Electrical power49 Kirchhoff’s first and second laws50 Ohm’s law for a complete circuit51 Internal resistance I52 Internal resistance II53 Resistors in series and parallel I54 Resistors in series and parallel II55 Potential dividers56 DC circuit theory I57 DC circuit theory II58 AC circuit theory I59 AC circuit theory IISolid materials60 Hooke’s law and spring constant61 Stress–strain curves and Young’s modulus I62 Stress–strain curves and Young’s modulus II63 Work done in stretching wires64 Ductility and brittleness65 Structure of materials66 Work hardening and annealing67 Polymer and rubber properties68 Composite materialsWaves69 Wave motion I70 Wave motion II71 Wave speed72 Phase difference and path difference73 Electromagnetic waves74 Plane polarisation of waves I75 Plane polarisation of waves II76 Inverse square law I77 Inverse square law II78 Wavefronts I79 Wavefronts II80 Principle of superposition81 Stationary (standing) waves I82 Stationary (standing) waves II83 Stationary (standing) waves III84 Young’s slits experiment85 Diffraction86 Diffraction grating87 Wave–particle duality88 Photoelectric effect89 Energy levels and line spectra90 Reflection and refraction at a plane surface91 Snell’s law and refractive index92 Total internal reflection and critical angle93 Refraction through lenses94 Sums over paths: theory95 Sum over paths: applications96 Digital imaging97 Analogue and digital signals98 Signal spectra and bandwidthExperimental method99 Errors of observation and their treatment100 Mathematical and graphical methods