Chemical Principles II

Chemical Principles II

NPTEL-NOC IITM via YouTube Direct link

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Chemical Principles II

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