• So, she is interested in how this molecule, gemcitabine, inhibits an enzyme. So, to do those studies, she needs to know a lot of the stuff on this list.

    她对这个分子氟脱氧胞嘧啶核苷怎么抑制酶很感兴趣,要做这些研究。

    麻省理工公开课 - 化学原理课程节选

  • And the last example that we're going to talk about is thionyl chloride, so it's s o c l 2. This is another good step forward, because now we actually have four different atoms in our molecule.

    我们要讨论的最后一个例子,是氯化亚砜,就是硫,氧,氯,,这又是一个进步,因为我们的分子中现在有四个不同的原子了。

    麻省理工公开课 - 化学原理课程节选

  • The IgM is really five IgG-type molecules that are linked together through disulfide bonds, such that their FC portions are all pointing in and their antibody binding portions are all pointing out.

    gM是由五个IgG分子组成的,IgG分子之间通过硫键连接,免疫球蛋白尾部的FC片段都指向内侧,而抗体的抗原结合位点都指向外侧

    耶鲁公开课 - 生物医学工程探索课程节选

  • So we'll start to look at molecules and we'll see if we take two atoms and we fill in our molecular orbital and it turns out that they have more anti-bonding orbitals than bonding, that's -- a diatomic molecule we'll never see.

    我们要看开始看一看分子,并且我们会发现如果我们,取两个原子并且填入分子轨道,结果是它们的反键轨道,比成键轨道更多,这就是-一个我们不会看到的元子分子

    麻省理工公开课 - 化学原理课程节选

  • So we're going to finish talking about molecular orbital theory, we'll switch over to discussing bonding in larger molecules, even larger than diatomic, so we'll move on to talking about valence bond theory and hybridization.

    我们要结束关于分子轨道理论的讨论,转向讨论大分子的成键,比原子分子更大的分子,我们会继续讨论价电子成键理论,和杂化。

    麻省理工公开课 - 化学原理课程节选

  • And what I want to point out that we just figured out for molecular orbital theory, is that o 2 is a biradical, because remember, the definition of a radical is when we have an unpaired electron.

    我要指出的是,我们刚利用分子轨道理论,指导了O2是价自由基,因为记住,自由基的定义是,有个未配对的电子。

    麻省理工公开课 - 化学原理课程节选

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