Using the step-by-step method, find the value of the output current, io(t), just before the switch closes (at t=0-) for the network in Fig. P7.81. Given Is, 11 mA, R1 = 3 k0, R2 = 6 kQ, R3 = 6 kQ, and R4 = 7 KQ. Is mA R1 ΚΩ www Figure P7.81 R3 ΚΩ SR2kS t = 0 K vi (1) 2mH

Introductory Circuit Analysis (13th Edition)
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Using the step-by-step method, find the value of the output
current, io(t), just before the switch closes (at t=0-) for the
network in Fig. P7.81. Given lç, 11 mA, R1 = 3 kQ, R2 = 6
kQ, R3 = 6 k0, and R4 = 7 KQ.
1
Is mA
R1 ΚΩ
Figure P7.81
R3 ΚΩ
R2K
t = 0
Los
i,(1)
2 mH
SR4K!
Notes on entering solution:
• Enter your solution in milliAmps(mA)
• Enter your solution to the nearest tenth of a mA
. Do not include units in your answer
.ex. 5mA is entered as 5.0
2iA
Transcribed Image Text:Using the step-by-step method, find the value of the output current, io(t), just before the switch closes (at t=0-) for the network in Fig. P7.81. Given lç, 11 mA, R1 = 3 kQ, R2 = 6 kQ, R3 = 6 k0, and R4 = 7 KQ. 1 Is mA R1 ΚΩ Figure P7.81 R3 ΚΩ R2K t = 0 Los i,(1) 2 mH SR4K! Notes on entering solution: • Enter your solution in milliAmps(mA) • Enter your solution to the nearest tenth of a mA . Do not include units in your answer .ex. 5mA is entered as 5.0 2iA
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