A thorough examination of kinetic theory and its successes in understanding and describing irreversible phenomena in physical systems.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Jay Robert Dorfman is Emeritus Professor at the University of Maryland. He is a Fellow of the American Physical Society and the American Association for the Advancement of Science, and is a recipient of the Chancellor's Medal for distinguished contributions to the University of Maryland. He is also the author of two books: A Course in Statistical Thermodynamics with Joseph Kestin, and An Introduction to Chaos in Non-equilibrium Statistical Mechanics (Cambridge University Press).
Inhaltsangabe
1. Introduction 2. The Boltzmann equation 1: Fundamentals 3. The Boltzmann equation 2: Fluid dynamics 4. Dilute gas mixtures 5. The dilute Lorentz gas 6. Basic tools 7. Enskog theory: Dense hard sphere systems 8. The Boltzmann-Langevin equation 9. Granular gases 10. Quantum gases 11. Cluster expansions 12. Divergences and resummations 13. Long time tails 14. Non-equilibrium steady states 15. What's next Bibliography Index.
1. Introduction 2. The Boltzmann equation 1: Fundamentals 3. The Boltzmann equation 2: Fluid dynamics 4. Dilute gas mixtures 5. The dilute Lorentz gas 6. Basic tools 7. Enskog theory: Dense hard sphere systems 8. The Boltzmann-Langevin equation 9. Granular gases 10. Quantum gases 11. Cluster expansions 12. Divergences and resummations 13. Long time tails 14. Non-equilibrium steady states 15. What's next Bibliography Index.
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