Q4.4 Roots S₁ and s2 of the characteristic equation. Q4.5 i(t) for t >= 0 v(t) for t >= 0+. Q4.6 1 (A I t = 0 ic C iL L iR R + V

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Can you please answer part 4 and part 5 only.

link to answers to part 1, 2 amd 3 below:

https://www.bartleby.com/questions-and-answers/in-the-circuit-shown-below-the-following-information-is-available.-r-500-ohms-l-0.64-henry-c-1-micro/0408f346-cde1-4780-88d9-eb1c0b570566 

In the circuit shown below, the following information is available.
R = 500 ohms, L = 0.64 henry, C = 1 micro-farad, I = -1 amp. The initial voltage drop across
the capacitor is 40 volts and the initial inductor current is 0.5 amp.
Determine the following:
Q4.1 Current through resistor, R, at t=0+
Q4.2
Current through capacitor, C, at t=0+
The derivative dir/dt at t=0+
Q4.3
Q4.4 Roots S1 and S2 of the characteristic equation.
Q4.5 i(t) for t >= 0
Q4.6 v(t) for t
0
7
>=
t = 0,
iL
iR
***
C
ic
+
L {R V
I
Transcribed Image Text:In the circuit shown below, the following information is available. R = 500 ohms, L = 0.64 henry, C = 1 micro-farad, I = -1 amp. The initial voltage drop across the capacitor is 40 volts and the initial inductor current is 0.5 amp. Determine the following: Q4.1 Current through resistor, R, at t=0+ Q4.2 Current through capacitor, C, at t=0+ The derivative dir/dt at t=0+ Q4.3 Q4.4 Roots S1 and S2 of the characteristic equation. Q4.5 i(t) for t >= 0 Q4.6 v(t) for t 0 7 >= t = 0, iL iR *** C ic + L {R V I
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