Lesson 28 of 34 • 1 upvotes • 4:46mins
Derivation of work done in an isothermal reversible expansion of an ideal gas, conversion of natural log to log base 10, formula in terms of pressure, free expansion
34 lessons • 3h 47m
Overview
2:53mins
Intermolecular Forces
7:21mins
Boyle's Law
7:41mins
Numericals on Boyle's Law
7:40mins
Charles's Law
5:52mins
Gay lussac's law and Avagadro's law
6:09mins
Numericals
7:38mins
Numericals
8:08mins
Density relations and numericals
9:24mins
Combined gas law and ideal gas equation
5:42mins
Dalton's law of partial pressure
5:47mins
Kinetic molecular theory of gases
6:09mins
Numericals
9:00mins
Numericals
9:06mins
Thermodynamic processes
5:59mins
Properties of system
4:51mins
Thermodynamics
8:47mins
Ideal gas v/s real gas
6:37mins
Heat enthalpy (contd)
6:51mins
Heat enthalpy
7:05mins
Numericals
7:05mins
Numericals
7:00mins
Heat of reaction
4:04mins
Pressure volume work
4:25mins
First law of thermodynamics
5:27mins
Measurement of dH and dU
5:27mins
Enthalpy change during phase transformation
3:44mins
Work done in isothermal reversible expansion of an ideal gas
4:46mins
Standard enthalpy of formation
5:00mins
Heat capacity
5:15mins
Calculation of bond energy
8:20mins
Thermochemical equation
7:58mins
Hess's law
10:43mins
Numericals
9:15mins