• We can graph out what this is where we're graphing the radial probability density as a function of the radius.

    我们可以,画出它来,这是径向概率密度,作为半径的一个函数图。

    麻省理工公开课 - 化学原理课程节选

  • What I plot on this graph here is as a function time, years, dates, life expectancy as a function of time.

    在这儿的这张图是,一个关于时间,年,日期的函数,将寿命长短作为时间的函数

    耶鲁公开课 - 生物医学工程探索课程节选

  • So, the example that we took on Monday and that we ended with when we ended class, was looking at the 1 s orbital for hydrogen atom, and what we could do is we could graph the radial probability as a function of radius here.

    周一我们,最后讲到了,粒子是氢原子1s轨道,我们可以画出,这幅径向概率分布曲线。

    麻省理工公开课 - 化学原理课程节选

  • So again, if we think of a graph of the wave function, we had the wave function is at its highest amplitude when it's lined up with the nucleus, and then as we got further away from the nucleus, the amplitude of the wave function ends up tapering off until it never hits zero exactly, but it goes down very low.

    同样,如果我们想象一幅波函数的图,波函数在原子核的位置上,有着最高的振幅,随着与原子核距离变远,波函数振幅逐渐变小直到,它永远不会到零,但它会变得很小。

    麻省理工公开课 - 化学原理课程节选

  • And what here is just a graph of the 1 s wave function going across some radius defined this way, and you can see that the probability - well, this is the wave function, so we would have to square it and think about the probability.

    这里是,1s波函数,沿这个方向的图,你们可以看到概率,这是波函数,所以我们可以把它平方,并想成是概率。

    麻省理工公开课 - 化学原理课程节选

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