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The Boltzmann reservoir: A model constant-temperature environment

机译:玻尔兹曼水库:模型恒温环境

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The Boltzmann reservoir (BR) is a model constant-temperature environment that exhibits highly atypical thermodynamic behavior. Its microcanonical ensemble entropy is a linear, nonconcave function of its internal energy U, and its zero-work heat capacity is infinite. Its canonical partition function diverges because all possible energies are equally likely, so the microcanonical and canonical ensembles are not equivalent. If two BRs with the same temperature T-B are put in thermal contact, either can have any fraction of the total energy; i.e., there is no unique equilibrium state. If two BRs with different temperatures are in thermal contact, the higher temperature BR gives all its energy to the other. A BR's temperature cannot be changed by a heat process but, in principle, can be altered by a work process. These and other properties that challenge conventional wisdom provide thought-provoking examples for thermal physics courses. (C) 2000 American Association of Physics Teachers. [References: 5]
机译:玻尔兹曼油藏(BR)是一个模型恒温环境,表现出高度的非典型热力学行为。它的微规范集合熵是其内部能量U的线性,非凹函数,并且其零功热容量是无限的。由于所有可能的能量均等地存在,因此其规范分配函数有所不同,因此微规范和规范合奏不是等效的。如果将两个具有相同温度T-B的BR进行热接触,则任一个都可以占总能量的任何一部分;即,没有唯一的平衡状态。如果两个温度不同的BR热接触,则较高温度的BR会将所有能量分配给另一个。 BR的温度不能通过加热过程来改变,但原则上可以通过加工过程来改变。挑战传统知识的这些和其他特性为热物理课程提供了发人深省的示例。 (C)2000年美国物理教师协会。 [参考:5]

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