3. Now suppose that an inductor L and a capacitor C are connected such that the dV I take the C' voltage V across both of them are the same. Starting with derivative of both sides to obtain an expression for the second derivative of V. (Recall: I is a function of time and so you will have to use implicit differentia- tion). dt

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Chapter1: Introduction
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3. Now suppose that an inductor L and a capacitor C are connected such that the
dV
voltage V across both of them are the same. Starting with
dt
I
take the
C'
derivative of both sides to obtain an expression for the second derivative of V.
(Recall: I is a function of time and so you will have to use implicit differentia-
tion).
Transcribed Image Text:3. Now suppose that an inductor L and a capacitor C are connected such that the dV voltage V across both of them are the same. Starting with dt I take the C' derivative of both sides to obtain an expression for the second derivative of V. (Recall: I is a function of time and so you will have to use implicit differentia- tion).
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