• And it turns out that when you constructively have two p orbitals interfere, and when I say constructively, I mean they're both either positive or they're both the negative lobes, that's when you got bonding.

    当两个p轨道,相长干涉时,我说的相干相长,意思就是说它们要么都是,正的叶瓣要么都是负的叶瓣,这时就能成键。

    麻省理工公开课 - 化学原理课程节选

  • And really, all you're experiencing there is destructive interference in a very bad way.

    我有的,实际上,你们感受的,相干相消的负面影响。

    麻省理工公开课 - 化学原理课程节选

  • see people with them, and what happens here is it's supposed to be those noise cancellation headphones. All they do is they take in the ambient noise that's around it, and there's actually battery in the headphones, that then produces waves that are going to destructively interfere with that ambient noise.

    我从来没有用过这个,但你会看到有人带他们,它们可以作为消噪音耳机,它们所做的就是采入,周围的随机噪声,耳机里面是,有电池的,然后它能产生和,随机噪声相干相消的声波。

    麻省理工公开课 - 化学原理课程节选

  • And what we end up forming is a molecular orbital, because as we bring these two atomic orbitals close together, the part between them, that wave function, constructively interferes such that in our molecular orbital, we actually have a lot of wave function in between the two nuclei.

    最后我们得到了分子轨道,因为当我们把这两个原子轨道放在一起的时候,它们之间的部分,波函数,相干相加,所以在分子轨道里,我们在两个原子核之间有很多波函数。

    麻省理工公开课 - 化学原理课程节选

  • So, it's very well designed such that they've minimized any of these destructive interference dead sounds. So, it's nice, on a student budget you can go and get the worst seat in the house and you can hear just as well as they can hear up front, even if you can't actually see what's going on.

    世界上最好的两三个音乐厅之一,它的设计十分精巧,把任何相干相消,都见到了最低,所以这点对于你们,用学生预算买到一个最差的位置的人,来说是很好的,你们可以听得,像前排一样清楚,虽然你们,可能看不见台上发生了什么。

    麻省理工公开课 - 化学原理课程节选

  • So in this case the cross term represents constructive interference between the two 1 s atomic wave functions.

    在这种情况下交叉项代表两个,1s原子波函数的相干干涉。

    麻省理工公开课 - 化学原理课程节选

  • So, another example of destructive interference is just with the Bose headphones.

    另一个相干相消的粒子,就是Bose耳机。

    麻省理工公开课 - 化学原理课程节选

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