• You can bring any calculator you want, we don't actually have restrictions for calculator types here, but what you can't do, is you can't program any relevant chemical or information about constants in there.

    你可以带你想用的任何一种计算器,我们并不限制计算器的类型,但是有一点是不允许的,那就是你不能使用编程的功能来记录,相关的化学常数或其它信息。

    麻省理工公开课 - 化学原理课程节选

  • And then we're going to try a demo to see if we can convince ourselves that the kind of calculations we make work out perfectly, and we'll do a test up here about half way through class.

    然后我们将会尝试演示去看看,是否可以确信我们能够很好的,做出这个类型计算,我们将在课程中做一个测试。

    麻省理工公开课 - 化学原理课程节选

  • It's going to do a lot of type checking for you before it actually passes things back.

    它会在将输入值进行计算之前,做很多类型检查。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • This is, like, sort of classic Computer Science 101-type question.

    这就有几分像经典的计算机科学,101-类型问题。

    哈佛公开课 - 计算机科学课程节选

  • Alan Turing In 1936, that same guy, Alan Turing, showed that with six simple primitives, anything that could be described in a mechanical process, it's actually algorithmically, could be programmed just using those six primitives.

    在1936年,还是那个人,展示了六个基本类型,可以在计算过程中,表达出任何含义来,其实这是演算性质的,可以根据六个数字编程。

    麻省理工公开课 - 计算机科学及编程导论课程节选

  • But one of the teaching fellas also passed long to us recently, a little real world example of what happens when you're not mindful of various data types and you're not mindful of the imprecision that's inherent in representing data in a computer, at least using a language like C and low level primitives like floats and even doubles.

    最近有个助教告诉我们,一个现实世界中的例子,当你不注意各种各样的数据类型,也不注意在计算机中表示数据时,其内在的不精确性,至少在用像C语言,和float甚至double型数据时,那将会发生什么?

    哈佛公开课 - 计算机科学课程节选

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