So we work to have all of our different product teams innovating around the things that we think are most important.
所以我们,有不同的产品团队,对我们最重视的产品进行创新。
and so we were able to kind of each take a different piece of the whole
所以我们把一个整体分成不同部分,每个人负责不同的部分,
Because of that, each person is in a different situation-- it's a very complicated world and we have many different risks.
因为各人所处环境不同-,这个世界很复杂,所以我们也面临着许多不同的风险。
There are at least two varieties of imagination in the reader's case, so let us see which of the two is the right one to use in reading a book.
读者至少有两种不同的想象方式,所以让我们来看看,哪一种,适合读书。
So, that's the difference in thinking about different types of ionization energy, so it can get a little bit confusing with terminology if you're just looking at something quickly, so make sure you look really carefully about what we're discussing here.
所以,这就是我们,在思考不同类型的电离能时所看到的不同,因此如果你看得不够仔细的话,你可能会被其中的术语弄迷糊了,所以一定要看仔细,我们讨论的是什么。
So we have both of these things, in the same environment.
所以我们在同样的环境里,设置了两种不同方式。
Basically that the various arguements that might be offered for believing in souls don't seem very compelling upon examinations so there's no good reason to posit this extra entity.
基本上要我们相信灵魂的,不同的理据,都经不住考察,所以我们没有很好的理由,来假设这个额外实体的存在。
So, in particular, what we're going to do to find out what quantity q1 maximizes this profits for each choice of q2.
所以我们要算出来在不同的q2下,q1取什么值才能最大化利润
Take the example of "plastic" again: "Oh, gee, that's a strange word," we say, so we go to the OED , we see it meant something different then, our problem is solved, and we continue.
再拿“塑料“来举例:,我们说,“哦,那是个生词“,所以我们去查牛津大学英语词典,我们发现它有些不同的意思,问题解决了,我们继续下去。
so we have lots of different influences here.
所以我们这儿受很多不同文化的影响。
So what we have in the first few chapters of Genesis are two creation stories that have distinctive styles, distinctive themes, distinctive vocabularies and they're placed side by side.
所以在《创世纪》的前几章中,我们有两个不同的故事,风格,主题,用语,都有自己的特色。
We don't have two different species of hydrogen here, so the electrons are perfectly shared.
我们没有两个不同源的氢原子,所以电子很好的而得到了平分。
So we're going to think about - in the next few weeks we're going to think about the human organism at different levels of magnification and I've shown those levels here.
所以我们讲到,在接下来的几周里,我们将在不同的水平下,研究人类机体,我已经讲过这些水平了
So--does the personality theory has to say Ohoo, different personality, that kid no longer ? exists, that person died.
所以,根据人格论,我们难道说,人格不同了,那个孩子,不存在了,那个人死了。
So the first thing we're going to do today is look at a different form of competition which is called Bertrand competition.
所以今天我们要做的第一件事,就是来学习一个不同形式的竞争,叫伯川德竞争
The reason there are three quantum numbers is we're describing an orbital in three dimensions, so it makes sense that we would need to describe in terms of three different quantum numbers.
我们需要,3个量子数的原因,是因为我们描述的是一个,三维的轨道,所以我们需要,3个不同的量子数,来描述它。
So, this evidence is very possible to see in diametrically opposed ways, and you're certainly not the first two students that I've seen have those two different reactions to the same thing.
所以,我们非常可能要从完全不同的角度来看待这些了,你们两个不是最早对这个问题,有两种不同看法的学生了。
We have the same basic structure, the same outcomes, but we imagine people cared about different things and we end up with a very different answer.
博弈的结构,结果都一样,但是人们在乎的东西不同了,所以我们得到了完全不同的答案
The reason that we can talk about this is remember that we're talking about wave functions, we're talking about waves, so we can have constructive interference in which two different orbitals can constructively interfere, we can also have destructive interference.
我们可以这么说的原因是,记住我们说的是波函数,我们说的是波函数,所以我们可以得到相长干涉,这是两个不同轨道会相长干涉,我们也有相消干涉。
It's a difficult problem that not everyone is smart -they vary in their ability -so we try to make a world in which it's pretty safe for the small investor who's not paying attention.
不是所有人都是聪明人,这是个难题,大家能力不同,所以我们试图营造一个环境,一个让小投资者感到安全的环境,而无需忧心忡忡
And you have to ask yourself is the energy difference here, the delta E in the electronic states, how does that compare with the E of visible light?
所以我们会问,是由于能量的不同么,例如deltaE在电子能态的不同,那如何把E与可见光联系起来?
So that doesn't make a difference for us when we're talking about neutral atoms, 4s because we would fill up the 4 s first, because that's lower in energy until we fill it, and then we just keep going with the d orbitals.
所以那对我们来说没什么不同,所以当我们讨论中性原子时,因为我们会首先填充,因为在我们填充它之前它的能量都较低,然后我们继续填充d轨道。
So, we can get from these energy differences to frequency h by frequency is equal to r sub h over Planck's constant 1 times 1 over n final squared minus 1 over n initial squared.
所以我们通过不同能量,得到不同频率,频率等于R下标,除以普朗克常数乘以1除以n末的平方减去。
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