... 傅立叶级数的复数形式 complex form of Fourier series 解微分方程 solve a dirrerential equation 常微分方程 ordinary differential equation ...
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【Key words】 summation of series; initial value problem; solving differential equation;
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The paper, a method of summation of infinite series is introduced, it is through a few examples of solving differential equation
由几个具体例子,介绍了通过解微分方程的初值问题,求无穷级数的和的方法。
参考来源 - 由初值问题求无穷级数的和·2,447,543篇论文数据,部分数据来源于NoteExpress
用来解微分方程的一种模拟计算机。
离散型最小二乘法是解微分方程的加权残值法的一种。
The discrete least square method is one of methods of weighted residual (MWR) for Solving differential equations.
当你试图接住一个飞行中的球时,是否会通过解微分方程来确定自己的位置?
Do you position yourself to catch a ball by solving differential equations in your head, on the fly?
So, all you will have the opportunity to solve differential equations in your math courses here. We won't do it in this chemistry course. In later chemistry courses, you'll also get to solve differential equations.
你们在数学课中有机会,遇到解微分方程,我们在这化学课里就不解了,在今后的化学课程里,你们也会遇到解微分方程的时候。
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。
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。
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