P.H. Trinh

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vpde_lecture25 [2020/04/04 22:05]
trinh
vpde_lecture25 [2020/04/04 22:33] (current)
trinh
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 \left(\frac{n\pi c}{L}\right)B_n = \frac{2}{L} \int_0^L v_0(x) \sin\left(\frac{n\pi x}{L}\right). ​ \left(\frac{n\pi c}{L}\right)B_n = \frac{2}{L} \int_0^L v_0(x) \sin\left(\frac{n\pi x}{L}\right). ​
 $$ $$
 +
 +//(The video gets very close to the end of this; we managed to get the $A_n$ coefficients and need to address the $B_n$ coefficients in lecture 26)//