Use Thevenin's theorem to convert the circuit of Figure 1 to the circuit of Figure 2 by finding out the values of V1 and R1. Now using the circuit of Figure 2, find out the expression of i_c(t) as a function of time.

Introductory Circuit Analysis (13th Edition)
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Transient analysis:
1) Use Thevenin's theorem to convert the circuit of Figure 1 to the circuit of Figure 2 by
finding out the values of V1 and R1. Now using the circuit of Figure 2, find out the
expression of i_c(t) as a function of time.
Figure 1:
1 kN
1.25 kN
t = 0
8 V
3 kN,
2 mA
1 µF
ic(t) ♥
Figure 2:
R1 =? kN
t= 0
Vị =? V
1 μF
rie(t)
Transcribed Image Text:Transient analysis: 1) Use Thevenin's theorem to convert the circuit of Figure 1 to the circuit of Figure 2 by finding out the values of V1 and R1. Now using the circuit of Figure 2, find out the expression of i_c(t) as a function of time. Figure 1: 1 kN 1.25 kN t = 0 8 V 3 kN, 2 mA 1 µF ic(t) ♥ Figure 2: R1 =? kN t= 0 Vị =? V 1 μF rie(t)
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