电子排布用英语怎么说,电子排布的英文翻译


词语导航

基本信息

词语:电子排布

繁体:電子排佈

拼音:diàn zǐ pái bù

英语翻译

【化】 electron configuration; electronic configuration

分词翻译

电子的英语翻译:

electron
【化】 electron
【医】 e.; electron

排的英语翻译:

arrange; eject; exclude; line; platoon; raft; range; rank; row; tier
【化】 blower

布的英语翻译:

cloth; fabric
【建】 cloth

翻译例句

1. 看起来你们大多数人都知道我们这里写的是铜的电子排布

It looks like most of you got that the electron configuration that we"re writing here is for copper.

2. 因此,这就是中性原子,正确的电子排布

So this would be for the actual filled, the completely neutral atom.

3. 那么,这次我们要做的是,选出一个离子正确的电子排布

So, in this one we"re selecting the correct electronic configuration for an ion.

4. 看来大多数人,都看出了,这是铜原子的电子排布

So it looks like most of you got that the electron configuration that we"re writing here is for copper.

5. 原子结构式元素周期表是按原子中电子排布状态绘制的。

The element Periodic table of atom construction constitutional formula was drawn by the state of electrons arranged within atom.

6. 那么我们可以开始想一想,好,有没有其它原子,具有相同的电子排布

So we can go ahead and think about, well, are there any other atoms that are going to have the same electron configuration?wWw.wEntIYi.Com

7. 让我们来想一想,锂,钠,钾的电子排布,它们都只有一个价电子

If we"re actually thinking about electron configuration and we look at lithium, sodium and potassium, these all have one valence electron.

8. 当然我们现在思考,这些更喜欢采用电子排布的观点,但在当时还没有这种概念。

So the way that we like to think of things now is in terms of electron configurations, right, but at the time that wasn"t really understood.

9. 这些都是等电子的,它们都有相同的电子排布,而,我们还可以再回想一下原子尺寸的概念。

These are all isoelectronic, they all have the same electron configuration. And we can also think about going back to atomic size for a second.

10. 这些都是等电子的,它们都有相同的电子排布,而,我们还可以再回想一下原子尺寸的概念。

These are all isoelectronic, they all have the same electron configuration. And we can also think about going back to atomic size for a second.

11. 负二价的硒离子将是等电子的,因为如果你给硒原子加上两个电子,你会得到,和氪原子相同的电子排布

So, selenium 2 minus is what"s going to be isoelectronic, because if you add two electrons to selenium, you"ll get the same electron configuration that you have for krypton here.

12. 所以我写出了它们的电子排布,并画成了能级图的形式,这样我们就可以好好想一想,这个问题发生的原因。

So I put the electron configurations and actually drew it on an energy diagram here, so we can actually think about why this might be happening.

13. 因此,这才是铜原子真正的电子排布,而且我们在元素周期表中,会看到与铜原子类似的,其他例外的情况。

So, that"s actually the electron configuration we have when we"re talking about copper and some other exceptions in the periodic table that you"re going to be looking at.

14. 基本上,在当时他只能通过大小,和特性来进行,但是现在我们已经知道了,我们还可以通过电子排布来对它们进行排序。

So basically, at the time he was just going on size and then traits, but what we actually know today is that we can also order things in the periodic table by electron configuration.

15. 我知道刚才关于这次比赛大家有很多话要聊,但是请大家先转换到听讲的模式,来看看如何才能弄清楚,这个离子正确的电子排布

And I know there"s a lot to talk about this competition, but let"s just get into listening mode here and talk about how we can figure out what the correct electron configuration is for this ion.

16. 答案是绝对没有-,如果它们具有相同的电子排布,那么它们,实际上,将都是氖,但是我们可以想一想,有没有其它离子具有这种电子排布呢?

The answer to that is definitely no -- if they had the same electron configuration, they would, in fact be neon. But we can think about different ions that have this electron configuration.

17. 什么是电子在轨道上的排布顺序呢?

What is the filling sequence of electrons in orbitals?

18. 就是能级本身,也会随着电子排布发生变化。

And that is that the energy levels themselves change with electron occupancy.

19. 电子是按其能量递增顺序,排布在轨道上的,首先占满第一级,即最低能级。

Electrons will occupy orbitals in order of ascending energy, occupying the lowest energy first and up.

20. 然后它说,接下来将剩下的电子成对排布,使每个原子都有8个电子

And then it says, OK, distribute the remaining electrons in pairs so that each atom has eight.

21. 计算出价层电子对数,得到电子对的几何排布,从而判断出分子的几何构型。

By calculating the number of valence electron shell, we can gain the geometry array of the electronic pair, and then judge the molecular structures.

22. 计算出价层电子对数,得到电子对的几何排布,从而判断出分子的几何构型。

By calculating the number of valence electron shell, we can gain the geometry array of the electronic pair, and then judge the molecular structures.

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