Physics Master Syllabus
Explore fundamental Mechanics, Heat & Thermodynamics, Wave Optics, Electrostatics, and introductory Modern Physics structures.
CH-1: Physical Quantities
Unit: Mechanics. Precision, significant figures, dimensions, and utility vectors of dimensional analysis frameworks.
CH-2: Vectors
Unit: Mechanics. Triangle, parallelogram, polygon vector laws, resolution configurations, unit vectors, scalar and cross products.
CH-3: Kinematics
Unit: Mechanics. Instantaneous velocity, acceleration metrics, relative motions, graphical treatments, and projectile motion applications.
CH-4: Dynamics
Unit: Mechanics. Linear momentum, impulses, conservation laws, torque, equilibrium configurations, and laws of solid friction testing.
CH-5: Work, Energy and Power
Unit: Mechanics. Work-energy theorem, kinetic and potential properties, conservation laws, elastic vs inelastic system collisions.
CH-6: Circular Motion
Unit: Mechanics. Angular kinematics, centripetal acceleration, centripetal forces, conical pendulums, and road banking parameters.
CH-7: Gravitation
Unit: Mechanics. Gravitational field strength, variations in g with altitude/depth, satellite orbital periods, escape velocities, and GPS basics.
CH-8: Elasticity
Unit: Mechanics. Hookes law, young/bulk/shear moduli metrics, Poisson ratio variables, and elastic potential energy.
CH-9: Heat and Temperature
Unit: Heat and Thermodynamics. Thermal molecular energy concepts, Zeroth law of thermodynamics, and mercury thermometer tracking rules.
CH-10: Thermal Expansion
Unit: Heat and Thermodynamics. Linear, superficial, and cubical parameters. Absolute and apparent liquid expansions via Dulong-Petit methods.
CH-11: Quantity of Heat
Unit: Heat and Thermodynamics. Newtons law of cooling, specific heat capacities, phase transformations, latent heats of fusion/vaporization, and triple points.
CH-12: Rate of Heat Flow
Unit: Heat and Thermodynamics. Thermal conductivity conduction parameters, convection setups, ideal black-body radiators, and Stefan-Boltzmann formulas.
CH-13: Ideal Gas
Unit: Heat and Thermodynamics. Ideal gas equation, kinetic-molecular models, pressure derivations, RMS speeds, and gas/solid heat capacities.
CH-14: Reflection at Curved Mirror
Unit: Wave and Optics. Real and virtual imaging calculations, focal boundaries, and complete spherical mirror formula derivations.
CH-15: Refraction at Plane Surfaces
Unit: Wave and Optics. Refractive indices laws, lateral shift matrices, and total internal reflection thresholds.
CH-16: Refraction through Prisms
Unit: Wave and Optics. Minimum deviation conditions, prism angle relations, and structural deviations in small angle prisms.
CH-17: Lenses
Unit: Wave and Optics. Spherical lens structural profiles, angular magnification formulas, lens makers equations, and focal power units.
CH-18: Dispersion
Unit: Wave and Optics. Dispersive power spectrum mappings, chromatic/spherical aberrations, and structural achromatism profiles.
CH-19: Electric Charges
Unit: Electricity and Magnetism. Electrostatic charging properties, induction behaviors, and Coulombs law for single and multiple point charges.
CH-20: Electric Field
Unit: Electricity and Magnetism. Electric field lines, Gauss law calculations, electric flux, and charged sphere/plane line distributions.
CH-21: Potential and Potential Energy
Unit: Electricity and Magnetism. Potential differences, single charge fields, electron-volt limits, equipotential surfaces, and gradient distributions.
CH-22: Capacitor
Unit: Electricity and Magnetism. Parallel plate configurations, series and parallel combinations, energy equations, and dielectric polarization effects.
CH-23: DC Circuits
Unit: Electricity and Magnetism. Drift velocity laws, Ohmic and non-ohmic resistance parameters, potential dividers, EMF, and network power rules.
CH-24: Nuclear Physics
Unit: Modern Physics. Nucleus discovery profiles, Einstein mass-energy conversions, mass defects, packing fractions, and fission/fusion operations.
CH-25: Solids
Unit: Modern Physics. Energy band theory structures, qualitative differences across conductors, semiconductors, and insulators.
CH-26: Recent Trends in Physics
Unit: Modern Physics. Elementary particles (quarks, leptons), Big Bang theories, Hubbles law limits, dark matter tracking, and black hole properties.