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Basic Notions of the Theory of Heat, systems in equilibrium. Empirical temperature and several scales used to measure temperature are defined. The so-called “zeroth law of thermodynamics” is formulated which says that systems which are in mutual equilibrium have the same temperature. Thermodynamic ensembles corresponding to different陶醉 发表于 2025-3-22 01:04:04
Thermodynamics: Classical Framework, This is followed by an excursion to some important global properties of materials such as specific heat, expansion coefficients and others. The thermodynamic relations provide the basis for a discussion of continuous changes of state which are illustrated by the Joule-Thomson effect and the Van deropalescence 发表于 2025-3-22 05:57:58
Geometric Aspects of Thermodynamics, excursion to differentiable manifolds we summarize the properties of functions, of vector fields and of one-forms on thermodynamic manifolds. This summary centers on exterior forms over Euclidean spaces and the corresponding differential calculus. In particular, one-forms provide useful tools for tVEN 发表于 2025-3-22 09:20:16
Probabilities, States, Statistics,uccessively, by the classical Maxwell-Boltzmann statistics, by Fermi-Dirac statistics and by Bose-Einstein statistics. We discuss observables and their eigenvalue spectrum as well as entropy and we calculate these quantities for some examples. The chapter closes with a comparison of statistical desc折磨 发表于 2025-3-22 15:47:41
Mixed Phases, Phase Transitions, Stability of Matter,r around us. Mixed phases can be analyzed and illustrated in a nice geometric way. Phase transitions are dealt with from the point of view of classical thermodynamics as well as in the framework of models of statistical mechanics.六边形 发表于 2025-3-22 17:33:13
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Geometric Aspects of Thermodynamics,he analysis of thermodynamics. A theorem by Carathéodory is developed which is closely related to the second law of thermodynamics. The chapter closes with a discussion of systems which depend on two variables and for which there is an interesting analogy to classical mechanics.