Physics
Grade 9
Distance and Displacement→Speed and Velocity→Acceleration (a = Δv/Δt)→Uniform Motion→Newton's First Law (Inertia)→Force and Net Force→Mass vs Weight (W = m·g)→Density (ρ = m/V)→Pressure (P = F/A)→Forms of Energy→Temperature and Heat→Average Velocity→Instantaneous Velocity→Kinematic Equations→Tension Force→Weight and Gravitational Force→Simple Machines→Lever and Mechanical Advantage→Pulley Systems→Inclined Plane→Mechanical Advantage and Efficiency→Wavelength and Frequency→Sound Waves and Speed of Sound→Interference and Diffraction→Laws of Reflection→Refraction and Snell's Law→Properties of Light→Plane Mirrors and Image Formation→Curved Mirrors: Concave and Convex→Buoyancy Force→Archimedes' Principle→Heat Transfer: Conduction, Convection, Radiation→Temperature Scales: Celsius, Fahrenheit, Kelvin→Thermal Expansion→Electric Current→Electric Circuits and Circuit Elements→
Grade 10
Newton's Second Law (F = ma)→Newton's Third Law (Action–Reaction)→Friction Force→Work (W = F·d)→Kinetic Energy (½mv²)→Potential Energy (mgh)→Conservation of Energy→Power (P = W/t)→Momentum (p = m·v)→Impulse (J = F·Δt)→Projectile Motion→Free Fall→Displacement, Velocity, and Acceleration→Newton's First Law of Motion→Newton's Second Law of Motion→Newton's Third Law of Motion→Friction: Static and Kinetic→Weight, Mass, and Gravity→Circular Motion and Centripetal Force→Work and Work Formula→Gravitational Potential Energy→Elastic Potential Energy→Power and Energy Transfer→Momentum and Its Definition→Conservation of Momentum→Elastic and Inelastic Collisions→Pressure and Pressure Formula→Pressure in Fluids→Archimedes' Principle and Buoyancy→Levers and Mechanical Advantage→Pulleys and Systems→Inclined Plane, Wedge, and Screw→Wave Properties: Amplitude, Wavelength, Frequency→Wave Speed Formula→Transverse and Longitudinal Waves→Sound Wave Properties and Speed→Doppler Effect→Laws of Light Reflection→
Light Refraction and Snell's Lawsoon
Plane Mirrors and Image Formation→Curved and Spherical Mirrors→Converging and Diverging Lenses→Lens Formula and Magnification→Electric Field and Electric Force→Electric Potential and Voltage→Electric Current and Ampere→Ohm's Law and Resistance→Electrical Power and Energysoon
Series and Parallel Circuits→Magnetic Field and Magnetic Strength→Magnetic Force on Moving Charges→Electromagnetic Induction and Faraday's Law→Alternating Current and AC Circuits→Equilibrium and Moments of Force→Density and Relative Density→Hooke's Law and Elasticity→Grade 11
Electric Charge→Coulomb's Law→Electric Field→Ohm's Law (V = I·R)→Electric Power (P = V·I)→Series and Parallel Circuits→Magnetic Field→Electromagnetic Induction→Refraction of Light (Snell's Law)→Lenses→Mirrors→Simple Harmonic Motion→First Law of Thermodynamics→Heat Transfer by Conduction→Specific Heat Capacity→Entropy and Disorder→Wave Properties: Amplitude and Frequency→Velocity of Sound in Different Media→Faraday's Law of Electromagnetic Induction→Lenz's Law→Induced EMF→
Transformer Equationsoon
AC Circuits and Impedance→Power Factor in AC Circuits→Capacitor Charging and Discharging→Dielectric Constant→Electric Field Intensity→Electric Potential→Equipotential Surfaces→Magnetic Field Strength→Lorentz Force→Motion of Charged Particles in Magnetic Field→Magnetic Flux→Permeability and Permittivity→Laws of Reflection in Optics→Refraction and Snell's Law→Lens Equation→Lens Maker's Equation→Dispersion of Light→Prism Angle and Deviation→Diffraction at Single Slit→Interference from Double Slit→Young's Double Slit Experiment→Polarization of Light→Critical Angle and Total Internal Reflection→Chromatic Aberration→Planck's Equation for Energy of Photons→Bohr Model of Hydrogen Atom→Atomic Spectra→Half-Life in Radioactivity→Nuclear Decay: Alpha, Beta, and Gamma Rays→Mass Defect and Nuclear Binding Energy→Conservation of Momentum in Collisionssoon
Grade 12
Newton's Law of Gravitation→Kepler's Laws→Circular Motion→Torque (τ = F·d)→Rotational Motion→Ideal Gas Law (PV = nRT)→Laws of Thermodynamics→Photoelectric Effect→Special Relativity (E = mc²)→Atomic Models→Nuclear Physics→Oscillations and Waves→Wave Interference and Diffraction→Standing Waves and Resonance→RMS Voltage and Current→Impedance in AC Circuits→Coulomb's Law→Ampere's Law→Electromagnetic Waves→Photon Energy and Planck Constant→Matter Waves and de Broglie→Bohr Model of Hydrogen→Energy Levels and Transitions→Atomic Spectroscopy→Radioactive Decay→Half-Life and Activity→Nuclear Reactions and Binding Energy→Mass-Energy Equivalence→Time Dilation→Length Contraction→Laws of Thermodynamics→Heat Capacity and Specific Heat→Entropy and Second Law→Carnot Cycle and Efficiency→Newton's Law of Universal Gravitation→Orbital Mechanics and Kepler's Laws→Escape Velocity→Elastic and Inelastic Collisions→
University — Year 1
Displacement and Distancesoon
Velocity and Speedsoon
Kinematic Equations of Motionsoon
Reference Frames and Relative Motionsoon
Normal Forcesoon
Tension in Ropes and Cablessoon
Work: Definition and Calculationsoon
Gravitational Potential Energysoon
Conservation of Mechanical Energysoon
Linear Momentumsoon
Impulse and Momentum Theoremsoon
Inelastic Collisionssoon
Center of Masssoon
Angular Displacement, Velocity, and Accelerationsoon
Rotational Kinematicssoon
Rotational Dynamics and Angular Newton's Second Lawsoon
Rotational Kinetic Energysoon
Conservation of Angular Momentumsoon
Energy in Simple Harmonic Motionsoon
Simple and Physical Pendulumsoon
Wave Properties: Wavelength and Frequencysoon
Sound Waves and Doppler Effectsoon
Interference and Superpositionsoon
First Law of Thermodynamicssoon
University — Year 2
Lorentz Transformationsoon
Relativistic Momentumsoon
Doppler Effect for Wavessoon
Polarizationsoon
Reflection and Refractionsoon
Resonancesoon
Angular Momentum in Quantum Mechanicssoon
Second Law of Thermodynamicssoon
Heat Engines and Efficiencysoon
Interference and Diffractionsoon
Young's Double-Slit Experimentsoon
Diffraction Gratingsoon
Snell's Lawsoon
Lenses and Mirrorssoon
Ray Opticssoon
Wave Opticssoon
Faraday's Law of Inductionsoon
Ampère's Lawsoon
Maxwell's Equationssoon
Wave Functionsoon
Schrödinger Equationsoon
Heisenberg Uncertainty Principlesoon
Quantum Numberssoon
Atomic Orbitalssoon
Compton Effectsoon
de Broglie Wavelengthsoon
Energy Quantizationsoon
Atomic Emission Spectrasoon
Blackbody Radiationsoon
Planck's Constantsoon
Special Relativity Postulatessoon