在无外界影响下, 平衡态(equilibrium state):在无外界影响下, 平衡态 在无外界影响下 系统所有可观察的宏观性质不随时间改变。 系统所有可观察的宏观性质不随时间改变。
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equilibrium state diagram 平衡状态图
equilibrium state approximation 平衡态近似法
Limit equilibrium state 极限平衡状态 ; 极限平衡法
thermodynamic equilibrium state [热] 热力学平衡状态 ; 热力学平衡态 ; 平衡状态
Double equilibrium state 复平衡状态 ; 再排浆
chemical equilibrium state 化学平衡状态
long run equilibrium state 长运行平衡状态
thermal equilibrium state 热平衡状态 ; 平衡态
short run equilibrium state 短运行平衡状态
Based on the Boltzmann equation for the equilibrium state, the 1D and 2D shallow water equations were derived from the basic relationship between macroscopic and microcosmic variables.
应用宏观和微观变量基本关系式,以平衡态的Boltzmann方程为基础,导出了基于Boltzmann方程的一维和二维浅水流动方程。
参考来源 - 浅水间断流动数值模拟及其在钱塘江河口涌潮分析中的应用·2,447,543篇论文数据,部分数据来源于NoteExpress
That is the equilibrium state.
这就是平衡态。
They aren't the equilibrium state.
它们不是平衡态。
In other words, what is the equilibrium state?
话句话说,哪个是平衡态?
So, these on-changing properties that describe the state of the equilibrium state of the system are called state variables.
这些描述,系统平衡态的,变化的属性,就叫做状态变量。
OK, so now let's try to formulate how to describe the equilibrium state and what dictates spontaneity.
现在我们尝试,找出如何描述平衡态以及,什么东西表明自发性。
The equilibrium state is the one, and it's just one, in which there are no spontaneous changes that can take place to any other state.
平衡态是一个,而且仅仅是一个态,这个态不会发生自发变化,变成其他的态。
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