In this case, the solution for the spatial part of the wave equation would be X(x) = Cox + Do. If the conditions for the spatial part of the ODWE are X(0) = 0 and X(L) = 0, determine Co and Do.

Advanced Engineering Mathematics
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Chapter2: Second-order Linear Odes
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In this case, the solution for the spatial part of the wave equation would be \(X(x) = C_0 x + D_0\). If the conditions for the spatial part of the ODWE are \(X(0) = 0\) and \(X(L) = 0\), determine \(C_0\) and \(D_0\).
Transcribed Image Text:In this case, the solution for the spatial part of the wave equation would be \(X(x) = C_0 x + D_0\). If the conditions for the spatial part of the ODWE are \(X(0) = 0\) and \(X(L) = 0\), determine \(C_0\) and \(D_0\).
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