• So realize if it doesn't quite sink in today, not a problems in terms of these low level details.

    如果你们没有完全吸收我今天讲的内容,没关系,这些小细节都会在习题集中找得到。

    哈佛公开课 - 计算机科学课程节选

  • If we injected it into a muscle let's say, and your muscle cells took up this plasmid.

    比如说,如果我们将其注射入肌肉内,则肌肉细胞就可以吸收这些质粒

    耶鲁公开课 - 生物医学工程探索课程节选

  • And what we predict as an energy difference between two levels, we know should correspond to the energy of light that's either emitted, if we're giving off a photon, or that's absorbed if we're going to take on a photon and jump from a lower to a higher energy level.

    我们预测,两个能级之间的能量差,我们知道,它要么和发出的光有关,如果它发出光子的话,要么它吸收光子,从低能级跃迁到,更高能级上去。

    麻省理工公开课 - 化学原理课程节选

  • That is, if it can be absorbed through this layer of epithelium.

    就是说食物如果要能够被上皮细胞层吸收

    耶鲁公开课 - 生物医学工程探索课程节选

  • So that's the important take-away message from this slide. If we think about these different types of lights, microwave light, if it's absorbed by a molecule, is a sufficient amount of frequency and energy to get those molecules to rotate. That, of course, generates heat, so that's how your microwaves work.

    重要的信息,如果我们看看,这些不同种类的光,微波,如果被分子吸收,它的频率和能量可以,使分子转动,这当然的,会产生热量,这就是你们微波炉的工作原理。

    麻省理工公开课 - 化学原理课程节选

  • if you don't want to use that, you can also derive it as we did every time, it should intuitively make sense how we got there. But the exams are pretty short, so we don't want you doing that every time, so we'll save the 2 minutes and give you the equations directly, but it's still important to know how to use them.

    吸收的和发射的,如果你不想用公式,你也可以每次都向我们这样推导它,很直观的就能得到结果,但考试时间很短,我们不希望你们每次都推导,所以我们会直告诉你,让你节省2分钟,但知道如何应用它十分重要。

    麻省理工公开课 - 化学原理课程节选

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