Polar Coordinates [数] [天] 极坐标 ; 极坐标转换 ; 极坐标滤镜
spherical polar coordinates [数] 球极坐标 ; 球面极坐标 ; 极座标 ; 或球坐标系
plane polar coordinates [数] 平面极坐标 ; 极坐标系
cylindrical polar coordinates 柱面极坐标 ; 柱极坐标
system of polar coordinates 极坐标系 ; 极座标系
polar coordinates robot 极坐标型机扑 ; 机器人
method of polar coordinates 极坐标法
Parametric Equations and Polar Coordinates 第十章
geodesic polar coordinates [测] 测地极坐标
multi-polar coordinates 多极坐标 ; 多重极坐标
And, of course, we know also how to set up these integrals in polar coordinates.
当然,我们也知道,怎样用极坐标来计算这些积分。
Anyway, that is double integrals in polar coordinates.
这是极坐标系下的二重积分。
OK, the right way to do this will be to integrate it in polar coordinates.
这道题最合适的方法,应该在极坐标系里面计算。
Another reason I wanted to point this out in terms of the polar coordinates that we're using, is I think they're actually flipped from what you're used to seeing in physics.
另一个我想指出,我们采用极坐标的原因是,我认为它们实际上是,从你们习惯于看到的物理学中出来的。
In terms of the Schrodinger equation, we now can write it in terms of our polar coordinates here.
在薛定谔方程中,我们现在可以用,极坐标的方式来表示了。
And similarly, actually, if we're looking at our polar coordinates here, what we see is it's any place where theta is equal to is what's going to put up on the x-y plane.
类似的,如果我们,看这里的极坐标系,我们能看到只要在theta等于,多少的地方就是xy平面。
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