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ENTROPY-ENTHALPY COMPENSATION - PERTURBATION AND RELAXATION IN THERMODYNAMIC SYSTEMS

机译:热力学系统中的熵-焓补偿-摄动和弛豫

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The response of an equilibrium molecular system to perturbations depends on its environmental constraints. For example, the response of an equilibrium P, V, T system to a small temperature perturbation (specific heat) depends on whether the environmental constraint on the system is constant pressure or constant volume. In general,;there are two classes of thermodynamic quantities of a system; one is completely determined by its equilibrium distribution, and the other also depends on how the distribution responds to macroscopic changes. The former class is independent of the environment of the thermodynamic system, while the latter class is a function of environmental constraints, In response to a small perturbation, the free energy change of an equilibrium system belongs to the first class but the entropy and enthalpy changes belong to the second. Therefore the thermodynamics of perturbation exhibit compensation between entropy and enthalpy of systems with different environments, The thermodynamic analysis presented here provides a framework for the interpretation of experimental observations of this phenomenon, and is illustrated by a real experimental example. (C) 1996 American Institute of Physics. [References: 26]
机译:平衡分子系统对扰动的响应取决于其环境限制。例如,平衡的P,V,T系统对较小的温度扰动(比热)的响应取决于系统上的环境约束是恒定压力还是恒定体积。通常,系统有两类热力学量。一个完全取决于其平衡分布,另一个也取决于该分布如何响应宏观变化。前一类独立于热力学系统的环境,而后一类则是环境约束的函数。响应较小的扰动,平衡系统的自由能变化属于第一类,但熵和焓变化属于第二。因此,摄动的热力学表现出在具有不同环境的系统的熵和焓之间的补偿。此处给出的热力学分析为解释该现象的实验观察提供了框架,并通过一个真实的实验示例进行了说明。 (C)1996年美国物理研究所。 [参考:26]

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