• I have shown that by taking Avogadro's number of individual ion pairs and putting them all together in a line, the system's energy became more negative.

    我推导出了,从每一个离子对中抽出阿伏常数,再把它们放在一起在一列中,这个系统的能量就变得更负。

    麻省理工公开课 - 固态化学导论课程节选

  • And what I am going to do is say start with this ion, add up the energy associated with the interactions between that ion and everybody else in the row and then multiply it by Avogadro's number, because that is the number of atoms there are in a row.

    接下来我要从这一离子开始,上相互作用的能量,也就是这一离子,和其它所有在这一行的离子之间的能量,再乘以阿伏常数,因为这是在一行的原子的数量。

    麻省理工公开课 - 固态化学导论课程节选

  • Avogadro was a professor of chemistry at the University of Turin who did a lot of work on gas laws, understanding the number of gas particles in a given volume at a given temperature.

    阿伏是一个化学教授,在都灵大学,他做了很多关于气体定律的研究,了解气体微粒,在特定的容量和温度下的数目。

    麻省理工公开课 - 固态化学导论课程节选

  • What I am going to do now is I am going to multiply by N Avogadro and then add Born repulsion.

    我接下来要做的是,将其乘以阿伏常数,再入Born的排斥作用。

    麻省理工公开课 - 固态化学导论课程节选

  • I got Avogadro's number of these things.

    我们得到了阿伏常数倍的这些东西。

    麻省理工公开课 - 固态化学导论课程节选

  • So let's just multiply that by Avogadro's number.

    让我们乘以N,阿伏常数。

    麻省理工公开课 - 固态化学导论课程节选

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