Thermodynamics

E. Gyftopoulos
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Abstract

A large number of textbooks and articles on thermodynamics, and classical or quantum physics claim that thermodynamics is a statistical theory applicable only to systems consisting of very large numbers of particles in thermodynamic equilibrium states, entropy is defined as a measure of ultimate disorder and not as a physical property of the system, and disorder is defined as representing motions of particles with different velocities both in values and in directions. The purpose of this article is to show and emphasize once more that none of these claims is valid for the following reasons: Thermodynamics is a science that: (i) applies to all systems, regardless of whether they consist of one spin, one particle, or any number of constituents of any kind, and to all states, regardless of whether the state is unsteady, steady, nonequilibrium, different types of equilibrium, or stable (thermodynamic) equilibrium; (ii) entropy is a nonstatistical physical property of any system in any state, in the same sense that energy is a nonstatistical physical property of any system in any state; and (iii) any stable equilibrium state is a state of ultimate order. Similar comments apply to thermodynamics in its quantum form but are not included for the sake of brevity.
热力学
大量关于热力学和经典或量子物理学的教科书和文章声称,热力学是一种统计理论,仅适用于由大量处于热力学平衡状态的粒子组成的系统,熵被定义为最终无序的度量,而不是系统的物理性质,无序被定义为代表粒子在值和方向上的不同速度的运动。本文的目的是再次表明并强调这些说法都是无效的,原因如下:热力学是一门科学:(i)适用于所有系统,不管它们是由一个自旋、一个粒子还是任何种类的任何数量的成分组成;适用于所有状态,不管状态是不稳定的、稳定的、非平衡的、不同类型的平衡,还是稳定的(热力学)平衡;(ii)熵是任何系统在任何状态下的非统计物理性质,就像能量是任何系统在任何状态下的非统计物理性质一样;(3)任何稳定的平衡状态都是一种终极有序状态。类似的评论也适用于量子形式的热力学,但为了简洁,不包括在内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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