• Now I have everything I need to compute my double integral.

    至此已经得到了,用来计算二重积分的所有量。

    youdao

  • And, then I have a single variable integral.

    然后就变成一个变量积分。

    youdao

  • How do I compute the line integral along the curve that goes all around here?

    应该怎样沿着围绕这个区域的曲线,做线积分呢?

    youdao

  • If we do that directly, I have to find the integral along c.

    如果直接做的话,需要找到沿c线积分

    youdao

  • And so I want to compute for the line integral along that curve.

    计算那条曲线线积分

    youdao

  • And, I still want to compute the line integral along a closed curve.

    仍然沿着封闭曲线线积分计算

    youdao

  • The other way around, I have to, so my goal, now, is to rewrite this as an integral.

    重新分解积分域。。。,目标,用另外一种形式重写这个积分。

    youdao

  • Then I can actually -- --replace the line integral for flux by a double integral over R of some function.

    那么就能名正言顺地,R某个函数的二重积分替代通量线积分。

    youdao

  • OK, so if I give you a curve that's not closed, and I tell you, well, compute the line integral, then you have to do it by hand.

    如果你们封闭曲线然后你们计算线积分,你们必须动手一点点来计算。

    youdao

  • Any questions about how I set up this flux integral?

    关于建立通量积分,又问题吗?

    youdao

  • Then I don't have actually to compute the flux integral.

    需要真的计算通量积分

    youdao

  • So, now, if I compare my double integral and, sorry, my triple integral and my flux integral, I get that they are, indeed, the same.

    比较这个二重积分的话抱歉。。。,比较这个三重积分通量积分,就可以看到它们一样的。

    youdao

  • And this is finally where I have left the world of surface integrals to go back to a usual double integral.

    就是最终摆脱曲面积分回到常规二重积分

    youdao

  • I mean if that is your favorite path then that is fine, but it is not very easy to compute the line integral along this, especially since I didn't tell you what the definition is.

    如果喜欢可以但是沿着条路径积分不好计算尤其是告诉曲线的定义。

    youdao

  • If there are no other questions then I guess we will need to figure out how to compute this guy and how to actually do this line integral.

    如果没有问题的话我们算算它吧,如何计算这个线积分的值

    youdao

  • But now I want to find out how to set up the integral.

    知道怎样建立积分

    youdao

  • I. research concentrated on what seemed to be difficult intellectual tasks, such as playing grandmaster level chess, or proving theorems in integral calculus.

    早期的人工智能研究集中在了一些看起来困难的智力活动上,水平国际象棋或者积分定理的证明。

    youdao

  • Well, let's say I give you a curve and I ask you to compute this integral.

    给出条曲线,计算沿着这条曲线的积分。

    youdao

  • And, so the total line integral for this thing is equal to the integral along C prime, I guess the outer one.

    那么,它总的线积分,就等于沿着C’,外面这个的线积分。

    youdao

  • So, using Green's theorem, the way we'll do it is I will, instead, compute a double integral.

    那么使用格林公式我们计算二重积分

    youdao

  • Here I didn't set this up as a iterated integral yet.

    这里还没有变成累次积分

    youdao

  • Well, if I have a gradient field, then if I try to compute this line integral, I know it will be the value of the function at the end point minus the value at the starting point.

    如果一个梯度然后计算线积分知道积分,起点函数减去终点函数值。

    youdao

  • And then I add these together. That is what the line integral means.

    这些到一起就是线积分

    youdao

  • But, what I want to point out is if you have to compute the two sides separately, well, this is just, you know, your standard flux integral.

    需要指出如果要分别计算两边积分就是标准通量积分。

    youdao

  • And instead I will want to reduce things to a surface integral.

    相反要把它变成面积分。

    youdao

  • Next, I should try to look at my double integral and see if I can make it equal to that.

    然后观察二重积分,看看不能使两式相等

    youdao

  • Now I have to do the integral over the entire path to get W.

    为了得到W现在,整个过程积分

    youdao

  • The first one that I will mention is actually something you thought maybe you could do with a single integral, but it is useful very often to do it as a double integral.

    一点就是有些以为积分通常二重积分完成的。

    youdao

  • Now, if I want to compute this integral, so let's first do the inner integral.

    如果计算这个积分积分。

    youdao

  • On c1, how do I evaluate my integral?

    那么怎么c1计算积分

    youdao

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