• 这种情况下老化必须根据物理化学热力学定律进行

    Ageing in this case must occur according to the laws of physical chemistry and of thermodynamics.

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  • 金字塔、大教堂火箭存在并不是因为几何形状热力学而是因为它们首先建造它们脑海中的图画

    Pyramids, cathedrals, and rockets exist not because of geometry or thermodynamics, but because they were first a picture in the minds of those who built them.

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  • 我们知道热力学关于平衡的。

    But we know thermodynamics is all about equilibrium.

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  • 我们已经热力学了解平衡

    And we already know about equilibrium from thermodynamics.

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  • 然后抽象这些一般的热力学定律

    We formulate these broad thermodynamic laws.

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  • 教授热力学好的我们开始吧

    PROFESSOR: Thermodynamics, all right, let's start.

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  • 这些依赖热力学,平衡态的性质。

    They also do depend on thermodynamics and where equilibrium states are.

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  • 总体可以说热力学限制这些特性

    Collectively, these features can be said to arise via thermodynamic constraints.

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  • 可以非平衡热力学,应用经济学

    You can apply non-equilibrium thermodynamics to economics.

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  • 方程里面,基本相同热力学图像

    In your equations, it's the same thermodynamic picture.

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  • 我们前面学到的热力学

    The thermodynamics that we've seen so far.

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  • 现在一下关于这个热力学知识

    So now, I want to take a look at the energetics of that.

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  • 热力学或者统计力学

    In statistical mechanics and in thermodynamics.

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  • 热力学没有任何关系。

    It has nothing to do with thermodynamics.

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  • 它是热力学微观描述。

    The microscopic underpinnings of thermodynamics.

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  • 就是热力学第零定律。

    And that's the zeroth law thermodynamic.

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  • 什么热力学量,VNT自然函数

    What thermodynamic function is naturally a function of N, V, T?

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  • 现在开始推导热力学

    Now, what I want to do is start deriving thermodynamics.

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  • 改变热力学过程。

    It doesn't change the thermodynamics.

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  • 热力学第一定律

    That's the first law of thermodynamics.

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  • 看到高温低温极限下,热力学形式。

    And also with the high and low temperature limits of the thermodynamics turned out to be.

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  • 热力学的是鸟瞰

    But thermodynamics takes a bird's eye view.

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  • 因为所有热力学都是函数

    Since these are all state functions.

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  • 条指责误解热力学第二定律

    This argument derives from a misunderstanding of the Second Law.

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  • 热力学框架下我们已经处理这些问题。

    On the thermodynamic framework e've been working with all term.

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  • 如果是个平衡系统那么热力学描述它。

    If it's an equilibrium system, then thermodynamics can describe it.

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  • 因此热力学研究平衡系统

    So it only talks about equilibrium systems.

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  • 这样我们就能开始写出不同结果热力学性质

    And then we can start writing out the results for the various thermodynamic properties.

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  • 这样我们可以马上开始得到所有热力学对吧

    And so we can immediately start in deriving all of the thermodynamics, right?

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  • 渗透压之后,你们热力学完了

    And after osmotic pressure, you'll be done with thermo.

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