• So that would probably be de Broglie's answer for why, in fact, we're not observing the wavelength behavior of material on a day-to-day life.

    所以那就可能是德布罗意关于,为什么我们无法再日常生活中,观测到物质的波动行为的答案。

    麻省理工公开课 - 化学原理课程节选

  • Okay, so when you are working with source material that looks like this, there is in fact no such thing as infinite zoom in computer science.

    当我们处理,这样的原数据时,事实上计算机科学中,并不存在无限放大。

    哈佛公开课 - 计算机科学课程节选

  • So, there's a tremendous variety of material in this library, and it follows from the fact that it's not a book but an anthology of diverse works, that it's not an ideological monolith.

    在这座图书馆里有丰富多样的材料,因此这不仅是一本书,而是各种各样文献的合集,这不是什么讲思想道德的长篇大论。

    耶鲁公开课 - 旧约导论课程节选

  • It's simply a convention established after the fact that allows us to organize material in ways that we can grapple with it ways that we can understand it.

    这仅仅是在事后建立的一种惯例,好让我们组织材料,用容易整理的方式,用容易理解的方式

    耶鲁公开课 - 聆听音乐课程节选

  • But because in many cases we can reasonably either model or measure equations of state, collect data for a material for its temperature, pressure, volume relations, then in fact if we can relate all these quantities to those then in fact we really can calculate essentially all of the thermodynamics. For the material.

    但是因为在很多情况下,我们能够合理的给出状态方程的模型,或者通过收集一个物质的,温度,压强和体积之间的关系,来测量其状态方程,所以实际上我们可以给出压强等物理量,和热力学势之间的关系,并计算出所有的热力学势,对于给定的物质。

    麻省理工公开课 - 热力学与动力学课程节选

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