熵 Entropy
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化学及热力学中所指的熵(英语:Entropy),是一种测量在动力学方面不能做功的能量总数,也就是当总体的熵增加,其做功能力也下降,熵的量度正是能量退化的指标。熵亦被用于计算一个系统中的失序现象,也就是计算该系统混乱的程度。熵是一个描述系统状态的函数,但是经常用熵的参考值和变化量进行分析比较,它在控制论、概率论、数论、天体物理、生命科学等领域都有重要应用,在不同的学科中也有引申出的更为具体的定义,是各领域十分重要的参量。
单词 | Entropy unit |
释义 |
Entropy unit
中文百科
熵 Entropy(重定向自Entropy unit)
![]() ![]() 化学及热力学中所指的熵(英语:Entropy),是一种测量在动力学方面不能做功的能量总数,也就是当总体的熵增加,其做功能力也下降,熵的量度正是能量退化的指标。熵亦被用于计算一个系统中的失序现象,也就是计算该系统混乱的程度。熵是一个描述系统状态的函数,但是经常用熵的参考值和变化量进行分析比较,它在控制论、概率论、数论、天体物理、生命科学等领域都有重要应用,在不同的学科中也有引申出的更为具体的定义,是各领域十分重要的参量。
英语百科
Entropy 熵(重定向自Entropy unit)
![]() ![]() ![]() ![]() In thermodynamics, entropy (usual symbol S) is a measure of the number of microscopic configurations that correspond to a thermodynamic system in a state specified by certain macroscopic variables. For example, gas in a container with known volume, pressure, and temperature could have an enormous number of possible configurations of the individual gas molecules, and which configuration the gas is actually in may be regarded as random. Hence, entropy can be understood as a measure of molecular disorder within a macroscopic system. The second law of thermodynamics states that an isolated system's entropy never decreases. Such systems spontaneously evolve towards thermodynamic equilibrium, the state with maximum entropy. Non-isolated systems may lose entropy, provided they increase their environment's entropy by that increment. Since entropy is a state function, the change in entropy of a system is constant for any process with known initial and final states. This applies whether the process is reversible or irreversible. However, irreversible processes increase the combined entropy of the system and its environment. |
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