Suppose you have the following circuit. The switch has been open for a long time, and is closed at time t = 0. Assume V, = 5V,R2 = 10kN, L2 = 2mH,C2 = 0.1µF The second order differential equation for the voltage across the capacitor is dVc(t)/dt + a,dV-(t)/dt + a2Ve = K R2 L2 V2 C2 What is the coefficient K of the 2nd order differential equation for this circuit? Do not use scientific notation. +.
Suppose you have the following circuit. The switch has been open for a long time, and is closed at time t = 0. Assume V, = 5V,R2 = 10kN, L2 = 2mH,C2 = 0.1µF The second order differential equation for the voltage across the capacitor is dVc(t)/dt + a,dV-(t)/dt + a2Ve = K R2 L2 V2 C2 What is the coefficient K of the 2nd order differential equation for this circuit? Do not use scientific notation. +.
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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
Transcribed Image Text:Suppose you have the following circuit. The switch has been open for a long time, and is closed at time t = 0.
Assume V, = 5V,R2 = 10kN, L2 = 2mH,C2 = 0.1µF
The second order differential equation for the voltage across the capacitor is
dV.(t)/dt + a,dV.(t)/dt + a,Ve = K
R2
L2
V2
C2
What is the coefficient K of the 2nd order differential equation for this circuit? Do not use scientific notation.

Transcribed Image Text:In the circuit below, the switch is closed for a long time before
time t = 0. V, = 24V, R1 = 300N, C1 = 104F and C, = 204F.
C1
R1
t = 0
-V.+
Vs
C2
What is the voltage V. across capacitor C, when the switch is closed? Give your answer in V, without entering the
units.
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