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1)  maximum work of reversible process
可逆过程最大功
2)  reversible process
可逆过程
1.
The ΔG about the reacting process has been calculated according to the reversible process.
按此可逆过程计算了反应的ΔG,所得结果与运用化学势方法计算的结果完全吻合。
2.
This paper discusses two questions about the first and the second lows of thermodynamics in teaching so as to point out that a whole understanding of the reversible process character is the key to the problem.
本文讨论了热力学第一和第二定律教学中 ,两个学生质疑产生的原因 ,指出全面理解可逆过程的特点是问题的关
3.
In terms of the symmetry of the physical variable describing the thermodynamic system, the concept and the characters of entropy is introduced with the analogy method,and the principle of entropy increment has been established based on the relationship between the work and the energy in the reversible process in contrast with the irreversible process.
本文根据物理量之间的对称关系应用类比的方法引出了熵的概念 ,并得到熵的性质 ;利用可逆过程与不可逆过程中的功能关系的对比建立了熵增加原理。
3)  irreversible process
不可逆过程
1.
In terms of the symmetry of the physical variable describing the thermodynamic system, the concept and the characters of entropy is introduced with the analogy method,and the principle of entropy increment has been established based on the relationship between the work and the energy in the reversible process in contrast with the irreversible process.
本文根据物理量之间的对称关系应用类比的方法引出了熵的概念 ,并得到熵的性质 ;利用可逆过程与不可逆过程中的功能关系的对比建立了熵增加原理。
2.
In this paper,We discuss the realizability about the design for reversible processduring which we calculate entrop variation in irreversible process and the arbitrariness,con-vence base on it
讨论不可逆过程熵变计算时,可逆过程设计的可行性及在此基础上的任意性和简便性。
3.
In this paper, the production and numerical value relation of energy degeneration in thermodynamical system were studied by analysing quantitatively two typical irreversible processes.
本文研究热力学系统能量退化现象的产生和数值关系,通过对两个典型不可逆过程的定量分析,结果表明:能量退化的数值与熵变成正比,进一步指出状态函数熵和熵增加原理的重要意义。
4)  reversible Markov process
可逆Markov过程
5)  reversibility of heat conduction process
过程可逆性
6)  irreversibility [英]['iri,və:sə'biliti]  [美][,ɪrɪ,vɝsə'bɪlətɪ]
不可逆过程
补充资料:最大功
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性质:可逆过程所做的功。在这样的过程中,摩擦力等其他消耗系统做功本领的因素不存在。以热力学系统的等温过程为例。根据热力学第一定律,系统对环境做的功-W=-△U+Q,根据热力学第二定律,Q≤T△S,等号只适用于可逆过程。因此,-W≤T△S-△U。在可逆过程中,-W最大=T△S-△U=-△A。即在等温过程中,最大功来自系统的亥姆霍兹自由能(A)的消耗(或降低)。

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