• And, if we do so, we can actually get a handle on that Born exponent by solving the equation.

    如果我们这样做,我们实际上能够得到波恩指数,通过解这个方程得到。

    麻省理工公开课 - 固态化学导论课程节选

  • The second thing is, just as in the case of the violin string, the wave equation, as posed by Schrodinger, has a plurality of solutions.

    第二,就那个小提琴弦而言,波动方程,被薛定谔所提出的,有许多解法。

    麻省理工公开课 - 固态化学导论课程节选

  • If Coke is the low price it sells this amount and its profits are basically given by this equation.

    如果可口可乐价格低那它就销售这个销量,利润基本上就是由这个公式决定

    耶鲁公开课 - 博弈论课程节选

  • And it turns out that the Schrodinger equation is an equation of motion in which you're describing a particle by describing it as a wave.

    结果是薛定谔方程,用描述粒子波动性的方式,来描述这个粒子。

    麻省理工公开课 - 化学原理课程节选

  • Now, the most interesting one for our class the equation of state that's the most interesting, is the Van der Waals equation of state, developed by Mr. Van der Waals in 1873.

    由范德瓦尔斯在1873年发展起来,这个方程的美妙之处,在于它只需要两个参数,下面我们来研究一下。

    麻省理工公开课 - 热力学与动力学课程节选

  • Then we may, from this equation, say a certain force is acting in a given situation by multiplying the m times the a.

    然后根据这个方程,我们就能说,得到给定条件下的作用力,它等于 m 和 a 的乘积

    耶鲁公开课 - 基础物理课程节选

  • After that, we'll move on to matter as a wave, and then the Schrodinger equation, which is actually a wave equation that describes the behavior of particles by taking into account the fact that matter also has these wave-like properties.

    之后,我们会转移到物质,是一种波的话题和薛定谔方程,薛定谔方程是描述粒子,在考虑物质的波动性质后,的行为的方程。

    麻省理工公开课 - 化学原理课程节选

  • Just one strategy for each player and that strategy was given by this equation.

    每个参与人只有一个策略,而那个策略是这个方程的解

    耶鲁公开课 - 博弈论课程节选

  • So, we can do that by using this equation, which is for s orbitals is going to be equal to dr 4 pi r squared times the wave function squared, d r.

    用这个方程,对于s轨道,径向概率分布,4πr的平方,乘以波函数的平方,这很容易理解。

    麻省理工公开课 - 化学原理课程节选

  • We are getting these by plotting the values from the Schrodinger equation.

    我们标注薛定谔方程的值时,也用到了这个。

    麻省理工公开课 - 固态化学导论课程节选

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