等温吸附线可由下列三种方式推导获得:(1)状态方程式(Equations of state);(2)统计热力学的 分配函数(partition function);以及(3)动力学。
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...Danner Systems with select gases and light hydrocarbons 气和轻烃选择系统 MBWR HYSYS 提供的状态方程(Equations of State)见表 2-3。值得注意的是,HYSYS PR和SRK状态方程计算结果,不一定与其它商业软件的PR和SRK状态方程一致。
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In thermodynamics the equations of state are prominently used.
在热力学中状态方程的概念被突出地使用。
The internal energy is related to other variables through the equations of state.
借助状态方程,内能和其它变量发生关系。
Melting properties of materials at shock compression are of particular importance in the equations of state.
冲击熔化研究在材料状态方程研究中具有重要的意义和地位。
That is, in terms of equations of state. For any material Then we would really be able to essentially calculate anything. Anything thermodynamic.
换句话说,利用任何一种物质的状态方程,我们就能够实质上,计算所有物理量,所有热力学量。
We've done temperature, equations of state.
温度以及状态方程的概念。
But because in many cases we can reasonably either model or measure equations of state, collect data for a material for its temperature, pressure, volume relations, then in fact if we can relate all these quantities to those then in fact we really can calculate essentially all of the thermodynamics. For the material.
但是因为在很多情况下,我们能够合理的给出状态方程的模型,或者通过收集一个物质的,温度,压强和体积之间的关系,来测量其状态方程,所以实际上我们可以给出压强等物理量,和热力学势之间的关系,并计算出所有的热力学势,对于给定的物质。
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