• But he says the United States can't solve the world's problems alone and it is time for all U.N.

    VOA: standard.2009.09.23

  • Don't be intimidated. Even though it is apparently exponential, a lot of times you can actually solve it much, much faster.

    别怕,即使它,很明显是指数型的,很多时候,你都能更快的解决它。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • so that you can solve it in the best and most efficient manner.

    这样便可以用最好,最有效的方式解决问题。

    有印象的教授 - SpeakingMax英语口语达人

  • It literally halves the amount of time it takes to solve that problem but we can actually do better.

    它能把解决问题时间的缩短一半,但其实我们能做的更好。

    哈佛公开课 - 计算机科学课程节选

  • All right, this is what's called a recurrence relation, there are actually cool ways to solve them. We can kind of eyeball it.

    好,这就是所谓的递归关系,也就是解决问题的相当好的办法,我们可以来看看。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • I'll get you to solve it out on a homework assignment, so you can actually prove that.

    我让你们回去做一次作业,你们就都明白了

    耶鲁公开课 - 博弈论课程节选

  • Can't cure it, can't solve it, can't get rid of it?

    你有无法解决,无法摆脱的记忆吗

    耶鲁公开课 - 美国内战与重建课程节选

  • Everyone can solve it, but this question is hard.

    大家都能够回答,但这个问题却很难

    耶鲁公开课 - 心理学导论课程节选

  • You won't have to solve it in this class, you can wait till you get to 18.03 to start solving these types of differential equations, and hopefully, you'll all want the pleasure of actually solving the Schrodinger equation at some point. So, just keep taking chemistry, 18 03 you'll already have had 18.03 by that point and you'll have the opportunity to do that.

    你们不用在课堂上就解它,你们可以等到得到18,03之后,再开始解这些类型的微分方程,希望你们都想得到,实际解薛定谔方程的乐趣,所以,保持来上化学课,你们在那个点将会得到,你们有机会做到的。

    麻省理工公开课 - 化学原理课程节选

  • You'd pull out your pencil and paper, you can do it as a matrix inversion if you know how to do that, or you can just simply do substitution of one equation into another to solve it.

    你知道你在小学的时候是怎么做的对吧?,你拿出你的笔和纸,如果你会的话,你可以解一个方程组,或者你可以单纯地。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • Somebody who's not a math major, tell me how I solve out for the maybe the math majors can't do it actually, it's too simple.

    谁不是数学专业的,告诉我们怎么解呀,数学专业的觉得它太简单而不屑去解

    耶鲁公开课 - 博弈论课程节选

  • There's a tendency for people to say, oh this problem's exponential, I can't solve it.

    人们往往会说,哦这是个指数型的问题我没法解决它。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • We can also talk about it in terms of if we want to solve, if we, for example, we want to find out what that initial energy was, we can just rearrange our equation, or we can look at this here where the initial energy is equal to kinetic energy plus the work function.

    初始能量是多少,也可以,写成另一种形式,我们可以把方程变形,或者我们看这里,初始能量等于,动能加功函数。

    麻省理工公开课 - 化学原理课程节选

  • So, let's say we start off at the distance being ten angstroms. We can plug that into this differential equation that we'll have and solve it and what we find out is that r actually goes to zero at a time that's equal to 10 to the negative 10 seconds.

    也就大约是这么多,所以我们取初始值10埃,我们把它代入到,这个微分方程解它,可以发现,r在10的,负10次方秒内就衰减到零了。

    麻省理工公开课 - 化学原理课程节选

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