7.5. For circuit below, if we know i(t > 0) = 4.5 x e 2 (mA), and the voltage across each capacitor is zero at t = 0. Try to solve for the voltage u₁ (t > 0) and u₂(t > 0) and the energy stored in cach capacitor for t > 0. 36µF 24µF HE +u(t) i(t) 60µF (1) 109 H I

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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7.5. For circuit below, if we know i(t > 0) = 4.5 x e 2 (mA), and the voltage across each
capacitor is zero at t = 0. Try to solve for the voltage u₁ (t > 0) and u₂(t > 0) and the
energy stored in cach capacitor for t > 0.
36µF
24µF
HE
+u(t)
i(t)
60µF (1)
109
H
I
Transcribed Image Text:7.5. For circuit below, if we know i(t > 0) = 4.5 x e 2 (mA), and the voltage across each capacitor is zero at t = 0. Try to solve for the voltage u₁ (t > 0) and u₂(t > 0) and the energy stored in cach capacitor for t > 0. 36µF 24µF HE +u(t) i(t) 60µF (1) 109 H I
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