Kinematics in one and two dimensions (Cartesian coordinates only), projectiles
Uniform circular motion
Relative velocity
Newton's laws of motion
Inertial and uniformly accelerated frames of reference
Static and dynamic friction
Kinetic and potential energy
Work and power
Conservation of linear momentum and mechanical energy
Systems of particles; centre of mass and its motion; impulse
Elastic and inelastic collisions
Rigid body, moment of inertia, parallel and perpendicular axes theorems, moment of inertia of uniform bodies with simple geometrical shapes
Angular momentum, torque, conservation of angular momentum
Dynamics of rigid bodies with fixed axis of rotation
Rolling without slipping of rings, cylinders and spheres
Equilibrium of rigid bodies
Collision of point masses with rigid bodies
Forced and damped oscillation (in one dimension), resonance
Linear and angular simple harmonic motions
Hooke's law, Young's modulus
Law of gravitation, gravitational potential and field, acceleration due to gravity
Kepler's law, geostationary orbits, motion of planets and satellites in circular orbits, escape velocity
Pressure in a fluid, Pascal's law, buoyancy
Surface energy and surface tension, angle of contact, drops and bubbles, capillary rise
Viscosity (Poiseuille's equation excluded), Stoke's law, terminal velocity
Streamline flow, equation of continuity, Bernoulli's theorem and its applications
Wave motion (plane waves only), longitudinal and transverse waves, superposition of waves
Progressive and stationary waves, vibration of strings and air columns
Resonance, beats, speed of sound in gases, Doppler effect (in sound)