
Explore the states of matter in an introductory session designed for JEE Main, Advance, and NEET exam preparation.
Learn about states of matter with a focus on gas behavior, intermolecular forces (van der waals, dipole-dipole, induced dipoles, London forces), and the role of thermal energy.
Explore the gaseous state, its properties, and key gas laws—Boyle, Charles, Avogadro—and the ideal gas equation, then study diffusion, effusion, and gas density relationships.
Explore the kinetic theory of gases, modeling molecules as microscopic particles with elastic collisions, random motion, negligible volume, and no intermolecular forces, linking heating to kinetic energy and varied velocities.
Explore how states of matter behave as real gases deviate from ideal behavior, applying Boyle's and Charles' laws, van der Waals corrections, and compressibility factor z to identify ideal-gas conditions.
Explore how CO2 undergoes liquefaction by crossing the gas–liquid equilibrium, driven by critical temperature and critical pressure, and observe phase changes with temperature and pressure.
Explore the liquid state, its intermolecular forces, and key properties: vapor pressure, surface tension, and viscosity, explaining boiling, evaporation, and how temperature affects flow.
In this course you will learn about the States of Matter.
Consisting of Below Topics:
1) Inter molecule Force
2) Molecular Interactions
i) Dipole-Dipole Interaction
ii) Non Dipole- Non Dipole Interaction
iii) Dipole- Non Dipole Interaction
3) Forces
i) Attractive
ii) Repulsive
4) Thermal Energy
5) Gaseous State
6) The Gas Law
i) Boyle's Law
ii) Charle's Law
iii) Gas lussac's Law
iv) Avagadre's Law
7) Ideal Gas Law
8) Combined Gas Law
9) Graham's Law
10) Kinetic Molecular theory of Gas
11) Behavior of Real Gas
12) Comprehensibility Factor
13) Liquid State
i) Vapour Pressure
ii) Surface Tension
iii) Viscosity