• And then since we have my red laser pointer, we will also try with the red laser pointer, which is centered at wavelength of 700 nanometers.

    然后因为我们有我的红色激光笔,我们也可以用它试一下,它的波长集中在700纳米处。

    麻省理工公开课 - 化学原理课程节选

  • But luckily we had the control of the red laser pointer where nothing moved at all.

    但是很幸运我们可以,控制红色激光笔,虽然什么都没有移动。

    麻省理工公开课 - 化学原理课程节选

  • So we see that we do not eject electrons in the case of the laser pointer, even if we have this intensity, it is still not related to the energy of an individual photon, so we won't see an effect.

    所以我们看到我们用激光笔,还是没有逐出电子,即使我们有这样的强度,它仍然与一个单个的光子能量无关,所以我们不会看到光电效应。

    麻省理工公开课 - 化学原理课程节选

  • Also, what's the energy per photon of this red laser pointer, and then it's also worth trying a calculation dealing with intensity. So let's also try calculating the numbers of photons that would be emitted by this laser pointer, if, for example, we were to use it for 60 seconds and this were a one milliwatt laser.

    同样,红色激光笔的,每个光子能量是多少,这也值得用处理强度的方法计算一下,让我们也计算一下,有多少光子会从这个激光笔射出,举个例子,如果我们使用它持续60秒,这里会有一毫瓦的激光。

    麻省理工公开课 - 化学原理课程节选

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