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mod12lec68
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Chemical Principles II
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- 1 mod12lec69
- 2 History of Thermodynamic
- 3 Thermodynamic Systems and Variables
- 4 Heat is a path function
- 5 Adiabatic Irreversible Work.
- 6 Ideal Stirling Engine
- 7 Zeroth Law of Thermodynamic
- 8 Microscopic Definition of Temperature Part - 01
- 9 Microscopic Definition of Temperature Part - 02
- 10 Different Forms of Energy
- 11 Real Gas and Virial Equation
- 12 Work and Heat Part - 01
- 13 Microscopic Definition of Heat and Work
- 14 Work done at a Constant Temperature
- 15 Joule-Thomson Effect (For Ideal Gases)
- 16 Joule-Thomson Effect (For Van der Waals gas)
- 17 Adiabatic Reversible Work
- 18 Tutorial Problem - 01
- 19 Tutorial Problem - 02
- 20 Thermochemistry Part - 02
- 21 Statements of the Second Law of Thermodynamics
- 22 Carnot Cycle and Definition of Entropy
- 23 Gasoline Engine and Diesel Engine
- 24 Thermodynamic Temperature
- 25 Definition of Entropy.
- 26 Tutorial Problem 002
- 27 Tutorial Problem - 04
- 28 Tutorial Problem - 05
- 29 Tutorial Problem - 06
- 30 Tutorial Problem - 07
- 31 Statistical Formulation of the Second Law
- 32 Probability
- 33 Microstates and Distributions
- 34 Two-Level Systems
- 35 Calculation with Multi-Level systems
- 36 Bose-Einstein, Fermi-Dirac and Maxwell-Boltzmann distribution
- 37 Most Probable Distribution is the Boltzmann Distribution
- 38 Estimating Entropy for Various Processes
- 39 Microscopic equivalent of Heat and Work
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- 47 mod12lec68
- 48 Introduction to The Thermodynamics
- 49 Van der Waals Gas
- 50 Work and Heat Part - 02
- 51 First Law of Thermodynamics
- 52 Thermochemistry Part - 01
- 53 Second Law of Thermodynamics
- 54 Carnot’ Cycle: The Most Efficient Engine
- 55 Tutorial Problem - 08
- 56 Permutation and Combination
- 57 Most Probable Distribution
- 58 Calculation with Multi-Level systems with fixed energy - Part 01
- 59 Calculation with Multi-Level systems with fixed energy - Part 02
- 60 Calculation with Multi-Level systems with fixed energy - Part 03
- 61 Demonstration of Boltzmann Distribution
- 62 Probability and Boltzmann Distribution
- 63 Thermodynamic Observables: It is all in the Average
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