Let's look at the energetics of one of those electrons crashing into a hydrogen atom inside the gas tube.
我们一起来考察一下,其中的一个电子的能量,在阴极射线管中,撞击到氢原子上。
And if you work out the energetics as we've gone with thermochemistry, dH you discover there's a huge negative delta H.
如果你计算能量变化,就像在化学热力学中所作的一样,你会发现很大的负的。
And I think we just got to the point where we were able to start looking at the energetics of that.
我认为我们刚刚到这一点,我们才能够开始学习,这里面的能量学。
You know, we've done a bunch of thermochemistry, and we've kind of seen that the energy of mixing, your energetics don't change too much as a function of temperature.
我们做过很多的化学热力学习题,某种程度上我们发现混合的能量,并不随着能量,发生大的改变。
The Born-Haber cycle was designed to allow us to calculate the energetics of, in particular,the ionic bond.
伯恩哈勃循环,可以让我们计算能量,特别是离子键的。
So, what we're going to do now is look at the energetics associated with that.
所以现在我们要做的就是,看一下与之相关的热力学。
Now, last day, we looked at the energetics of the ionic bond, right?
昨天,我们讲的是离子键的热力学,对么?
Now let's look at the energetics graphically now.
现在我们来看看热力学。
And so, let's go back and take a look at the energetics again.
接下来,我们在回顾下热力学。
So now, I want to take a look at the energetics of that.
现在我想看一下关于这个的热力学知识。
The second point of the Aufbau Principle is just energetics.
构造原理的第二点是,它只和能量相关。
Now let's go and do the energetics.
现在我们来看看热力学。
So this is simply the energetics of crystal formation.
这就是简单的晶体形成的静电原理。
We can do the energetics on this one now.
现在我们给它进行热力学讨论。
Now I want to look at the energetics.
现在我们要从热力学来研究。
And I am going to count the energetics.
我将考虑到热力学。
Let's look at the energetics of Coulomb's Law.
我们来看看库伦定律中的热力学知识。
Let's take another look at the energetics.
让我们再看看热力学。
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