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Completeness of Classical Thermodynamics: The Ideal Gas the Unconventional Systems the Rubber Band the Paramagnetic Solid and the Kelly Plasma

机译:经典热力学的完整性:理想的气体非传统系统橡皮筋顺磁性固体和凯利等离子体

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摘要

A method is developed to complete an incomplete set of equations of state of a thermodynamic system. Once the complete set of equations is found, in order to verify the thermodynamic validity of a system, the Hessian and entropy methods are exposed. An original approach called the completeness method in order to complete all the information about the thermodynamic system is exposed. The Hessian method is improved by developing a procedure to calculate the Hessian when it is not possible to have an expression of the internal energy as a fundamental equation. The entropy method is improved by showing how to prove the first-degree homogeneous property of the entropy without having a fundamental expression of it. The completeness method is developed giving a total study of the thermodynamic system by obtaining the set of independent TdS equations and a recipe to obtain all the thermodynamics identities. In order to show the viability of the methods, they are applied to a typical thermodynamic system as the ideal gas. Some well-known and unknown thermodynamic identities are deduced. We also analyze a set of nonphysical equations of state showing that they can represent a thermodynamic system, but in an unstable manner. The rubber band, the paramagnetic solid and the Kelly equation of state for a plasma are corrected using our methods. In each case, a comparison is made between the three methods, showing that the three of them are complementary to the understanding of a thermodynamic system.
机译:开发了一种方法来完成热力学系统的不完整方程集。一旦找到完整的方程集,为了验证系统的热力学有效性,均暴露Hessian和熵方法。一种称为完整性方法的原始方法,以完成关于热力学系统的所有信息。通过开发一种过程来改进Hessian方法,以便在不可能具有内部能量作为基本方程的情况下计算Hessian。通过展示如何证明熵的第一度均质性质而不具有它的基本表达,改善了熵方法。通过获得独立的TDS方程和配方来制定完整性的热力学系统,以获得所有热力学标识。为了展示该方法的可行性,它们应用于典型的热力系统作为理想气体。推导出一些众所周知的和未知的热力学标识。我们还分析了一组状态的非物理方程,表明它们可以代表热力学系统,但以不稳定的方式。使用我们的方法校正橡皮带,顺磁体固体和亚孔式等离子体状态。在每种情况下,在三种方法之间进行比较,显示它们中的三种与对热力学系统的理解互补。

著录项

  • 期刊名称 Entropy
  • 作者单位
  • 年(卷),期 2020(22),4
  • 年度 2020
  • 页码 398
  • 总页数 39
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:基本方程式;黑森州;熵;状态方程;

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