• He could divide all of that by the absolute value of the charge of the positive particle, all over the mass of the positive particle.

    他可以把这整个,除以正电粒子的,电荷绝对值除以,正电粒子质量

    麻省理工公开课 - 化学原理课程节选

  • If a photon which has no mass can behave as a particle, does it follow then an electron which has mass can behave as a wave? 1920.

    如果一个没有质量的光子,能像粒子一样运动,那么它能像一个,没有质量的电子那样以波的形式运动吗。

    麻省理工公开课 - 固态化学导论课程节选

  • And this spin is an intrinsic quality of the electron, it's a property that is intrinsic in all particles, just like we would say mass is intrinsic or charge is intrinsic.

    自旋是电子的本征量,它是所有粒子的本征性质,就像我们说质量是本征的或者电荷是本征的。

    麻省理工公开课 - 化学原理课程节选

  • It's a particle of mass m and momentum p has this energy so you solve for the energy, you get two answers.

    一个质量为m,动量为p的粒子,有这么大的能量,你解出能量,得到两个解

    耶鲁公开课 - 基础物理课程节选

  • And that's really neat to think about, because photons, of course, are massless particles, they have no mass, so it's neat to think about something that has no mass, but that actually does have a momentum.

    而且那真的不容易想明白,因为光子,当然是无质量粒子,它们没有质量,所以这个真的不容易想明白,一些物体没有质量,但是它们事实上确实有动量。

    麻省理工公开课 - 化学原理课程节选

  • If a proton which has no mass can behave as a particle does it follow that an electron which has mass can behave as a wave?

    如果一个没质量的光子能像粒子一样,具有质量的电子能否,表现得像波一样吗?

    麻省理工公开课 - 固态化学导论课程节选

  • PROFESSOR: Much, much smaller the positive particle.

    教授:非常非常小,比起正电粒子质量

    麻省理工公开课 - 化学原理课程节选

  • that the negative particle travelled - it was deflected much, much further by those plates, what he could also assume and make the conclusion of is that the mass of that negative particle is actually larger or smaller?

    因为他发现负电粒子,运动了很远,它被两块电板偏转了,非常非常远,所以他给出的结论是,负电粒子质量,是比较大还是比较小?

    麻省理工公开课 - 化学原理课程节选

  • If a photon, which has no mass, can behave as a particle --And we know this.

    如果一个没有质量的光子,像粒子一样运动--,我们知道这个。

    麻省理工公开课 - 固态化学导论课程节选

  • And since we are not expecting the mass of the particle to change, what we really are saying is the uncertainty in its velocity times the uncertainty in its position is greater than the ratio of the Planck constant divided by 2 pi.

    因为我们不期望,粒子质量发生变化,我们说的是,它速度的不确定度,乘以它位置的不确定度,比普朗克常量,除以2除以圆周率要大。

    麻省理工公开课 - 固态化学导论课程节选

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