Chemical Kinetics, Arrhenius Law, and Principles of Disequilibrium - Lecture 20

Chemical Kinetics, Arrhenius Law, and Principles of Disequilibrium - Lecture 20

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- Nonequilibrium Gasdynamic Infrared Power Laser

18 of 19

18 of 19

- Nonequilibrium Gasdynamic Infrared Power Laser

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Chemical Kinetics, Arrhenius Law, and Principles of Disequilibrium - Lecture 20

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  1. 1 - Introduction
  2. 2 - Activated Complex in the Simple System Model
  3. 3 - Extension of the Simple System: Assumptions
  4. 4 - Affinities and Non-Equilibrium Law of Mass Action
  5. 5 - Self-Ionization of Pure Liquid Water: pH and pOH
  6. 6 - Introduction to Chemical Kinetics
  7. 7 - Potential Energy Surface and the Activated Complex
  8. 8 - Maxwell-Boltzmann Distribution of Velocities
  9. 9 - Arrhenius Activation Barrier
  10. 10 - Reaction Rates and Collision Probabilities
  11. 11 - Hydrocarbon Oxidation: Detailed Kinetic Mechanisms
  12. 12 - Detailed Balance and Degree of Disequilibrium
  13. 13 - Direction of Reaction and Fluctuation Relation
  14. 14 - Half-Equilibrium of the Activated Complex
  15. 15 - When Some Reactions Are Much Faster than Others
  16. 16 - Nonequilibrium Build Up in Supersonic Nozzle
  17. 17 - Degree of Disequilibrium Build Up in a Nozzle
  18. 18 - Nonequilibrium Gasdynamic Infrared Power Laser
  19. 19 - Vibrational Levels of the CO2 Molecule

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