• The high temperature limit.

    高温极限

    youdao

  • So that's the low temperature limit.

    就是低温极限

    youdao

  • High temperature limit.

    高温极限

    youdao

  • Namely, the low temperature limit is zero.

    也就是低温极限

    youdao

  • So now let's look at the high temperature limit.

    那么现在我们看看高温极限。

    youdao

  • You immediately go to the high temperature limit.

    马上就达到高温极限。

    youdao

  • And we've seen what the high temperature limit is.

    高温极限下振动部分我们

    youdao

  • We're in the low temperature limit for vibrations.

    我们低温极限处理振动。

    youdao

  • Then you have the same high temperature limit to it.

    然后相同高温极限

    youdao

  • What was the low temperature limit of the heat capacity?

    低温极限什么

    youdao

  • So we know it's got to be zero at the low temperature limit.

    应该,我们知道低温极限下

    youdao

  • And I'm going to assume we're in the high temperature limit.

    假设我们高温极限

    youdao

  • The maximum temperature limit is based on the Gasket material.

    最大温度界限以垫片材料基础。

    youdao

  • And in the low temperature limit, now go to the opposite limit.

    对于低温极限相反的极限。

    youdao

  • So in the high temperature limit we can easily calculate things.

    因此高温极限下我们可以很简单进行计算

    youdao

  • There's only one allowed possible state in the low temperature limit.

    只有一种允许的可以被占据的低温极限下。

    youdao

  • So in the high temperature limit, the energy does change with temperature.

    所以高温极限下能量温度变化而变化

    youdao

  • So the energy doesn't change with temperature in that low temperature limit.

    所以能量温度改变低温极限。

    youdao

  • And we know that it's this constant value in the high temperature limit.

    常数我们知道高温极限时

    youdao

  • So the high temperature limit, physically, is one that's simple to understand.

    因此高温极限从物理的角度容易理解的。

    youdao

  • I'm at the low temperature limit for the molecular vibrations of nitrogen or oxygen.

    在低温极限下对于分子振动

    youdao

  • And in the other case in the low temperature limit, now let's say kT is really low.

    对于种情况低温极限现在比方kT

    youdao

  • Now it turns out that that high temperature limit doesn't just obtain for vibrations.

    现在结果证明高温极限,不仅只适用于振动。

    youdao

  • So even in the high temperature limit, we don't have them, there's not a maximum total energy.

    高温极限下,我们没有他们没有最大温度。

    youdao

  • The limiting factor in valve selection is the lowest temperature limit of the packing or seat.

    阀门选型考虑因素之一填料阀座的最高温度限制

    youdao

  • The vibrational frequencies are usually high, so that you're not in the high temperature limit.

    振动频率一般比较所以通常我们不能高温极限

    youdao

  • But what we've found is that in the high temperature limit, we had the equipartition of energy result.

    但是我们会发现高温极限下,我们可以得到能量均分原理

    youdao

  • What'll happen in the high temperature limit might vary, depending on the structure of the energy levels.

    高温极限下不同自由度配分函数有不同,这依赖于他们具体能级结构

    youdao

  • So du/dT isn't going to be zero in the high temperature limit, in this case. But it stops changing at some point.

    所以du/dT这样高温极限不会,一点就不再变化

    youdao

  • But if we're in the low temperature limit, maybe we're in such low temperature that only the lowest possible state is occupied.

    如果我们考虑低温极限比如温度如此以至于,只有能量最低的状态可以被占据。

    youdao

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