Minimum Work of Partitioning, Gibbs Phase Rule, and Van der Waals Model in Advanced Thermodynamics - Lecture 9

Minimum Work of Partitioning, Gibbs Phase Rule, and Van der Waals Model in Advanced Thermodynamics - Lecture 9

MIT OpenCourseWare via YouTube Direct link

- Review: Microscopic and Mesoscopic vs Macroscopic

3 of 30

3 of 30

- Review: Microscopic and Mesoscopic vs Macroscopic

Class Central Classrooms beta

YouTube videos curated by Class Central.

Classroom Contents

Minimum Work of Partitioning, Gibbs Phase Rule, and Van der Waals Model in Advanced Thermodynamics - Lecture 9

Automatically move to the next video in the Classroom when playback concludes

  1. 1 - Introduction
  2. 2 - Results So Far Hold for Large and Small Systems
  3. 3 - Review: Microscopic and Mesoscopic vs Macroscopic
  4. 4 - Review: Rarefaction Effects Near Walls
  5. 5 - Review: Neglecting Effects of Partitions
  6. 6 - Review: Simple-System Model Limiting Assumptions
  7. 7 - Review: Simple-System Model Implies Euler Relation
  8. 8 - Review: Main Consequence of Euler Relation
  9. 9 - Small Systems: Specific Properties Dependences
  10. 10 - Small Systems: Minimum Work of Partitioning
  11. 11 - Basic Simple-System Models for Pure Substances
  12. 12 - Extensive Properties Definition
  13. 13 - Specific Properties Definition
  14. 14 - Intensive Properties and Intensive State
  15. 15 - Homogeneous vs Heterogeneous States; Phases
  16. 16 - Gibbs Phase Rule Proof
  17. 17 - Gibbs Phase Rule for a Pure Substance
  18. 18 - Fundamental Relation for a Pure Substance
  19. 19 - Ideal Incompressible Solid or Fluid Model
  20. 20 - Ideal Gas Model
  21. 21 - Two-Phase States of a Pure Substance
  22. 22 - Properties Liquid-Vapor States of a Pure Substance
  23. 23 - Graphical Representation of Fundamental Relation
  24. 24 - The u-s-v Fundamental Surface Water
  25. 25 - The Mollier h-s Diagram Water
  26. 26 - The $p$-$v$ Diagram Water
  27. 27 - The $p$-$v$ Diagram Van der Waals Model
  28. 28 - Exergies and Efficiencies in Energy Conversion
  29. 29 - Exergy and Second-Law Efficiency in Cogeneration
  30. 30 - Exergy of Bulk Flow Interactions

Never Stop Learning.

Get personalized course recommendations, track subjects and courses with reminders, and more.

Someone learning on their laptop while sitting on the floor.