Introduction to Nonequilibrium Theory: Onsager Reciprocity and Maximum Entropy Production - Lecture 21

Introduction to Nonequilibrium Theory: Onsager Reciprocity and Maximum Entropy Production - Lecture 21

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- Fourier Law of Thermal Conduction

12 of 14

12 of 14

- Fourier Law of Thermal Conduction

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Classroom Contents

Introduction to Nonequilibrium Theory: Onsager Reciprocity and Maximum Entropy Production - Lecture 21

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  1. 1 - Introduction
  2. 2 - Introduction to Part III: Nonequilibrium
  3. 3 - Rates and Affinities Far and Near Equilibrium
  4. 4 - Hydrocarbon Oxidation: Detailed Kinetic Mechanisms
  5. 5 - Rates and Affinities for Independent Reactions
  6. 6 - Linearization of Rate-Affinity Relations
  7. 7 - Example: Two Rates and Two Affinities
  8. 8 - Onsager Relations from Maximum Entropy Production
  9. 9 - Ziegler Orthogonality Relation
  10. 10 - Onsager Symmetry of Thermal Conductivity Tensors
  11. 11 - Steady-State Heat Flux
  12. 12 - Fourier Law of Thermal Conduction
  13. 13 - Anisotropic Fourier Conduction in 2D
  14. 14 - Cattaneo-Vernotte Heat Conduction Equation

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