The differential equations have a solution, (tilde{p}_{i}=int_{0}^{t} tilde{g}_{i}(t) e^{-gamma_{i}(t-tau)} d tau), called the ________. Regarding the derivation

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The differential equations have a solution, \(\tilde{p}_{i}=\int_{0}^{t} \tilde{g}_{i}(t) e^{-\gamma_{i}(t-\tau)} d \tau\), called the  ________.

Regarding the derivation of modal analysis for a system with a general damping matrix.

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