• So, just looking at putting in the electrons, filling up the energy diagram here, we should be able to see a little bit why this is happening.

    那么,仅仅通过观察这些电子的位置,在能级图上如何填充,我们应该就可以看出一点端倪。

    麻省理工公开课 - 化学原理课程节选

  • So while you're filling that out, let me tell you a little bit about what we're going to be doing here.

    你们一边写一边听我说,我来简单地介绍一下这门课

    耶鲁公开课 - 博弈论课程节选

  • But we'll go over that, particularly some exceptions, when we're filling in electron configurations, and how we would go about doing that for positive ions, which follow a little bit of a different procedure.

    但是我们将会重温它们,特别是一个特例,当我们填充一个电子构型,而且我们会如何着手,处理阳离子,它遵从一些别的不同的过程。

    麻省理工公开课 - 化学原理课程节选

  • So, it turns out that in this case, 2 p and any time that we see we're going from a 2 s to 2 p, filling in of electrons, we actually see that little bit of glitch in ionization energy.

    在这种情形下的结果就是,任何时候我们从,2,s,到,填充进电子,我们都会看到电离能会稍稍偏离我们的规律。

    麻省理工公开课 - 化学原理课程节选

  • I think most and you are familiar with the Aufbau or the building up principle, you probably have seen it quite a bit in high school, and this is the idea that we're filling up our energy states, again, which depend on both n and l, one electron at a time starting with that lowest energy and then working our way up into higher and higher orbitals.

    我认为你们大多数熟悉奥弗堡,或者构建原理,你们可能,在高中见过它,又一次,这是我们填充能级的观点,与n和l有关,一个电子每次从,最低的能级开始,然后以我们的方式上升到,更高更高的轨道。

    麻省理工公开课 - 化学原理课程节选

$firstVoiceSent
- 来自原声例句
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定
小调查
请问您想要如何调整此模块?

感谢您的反馈,我们会尽快进行适当修改!
进来说说原因吧 确定