In the circuit of Figure 2, the switch moves from position A to position B at t = 0. Determine v(t) and i(t) for t> 0. 30 V 4Ω ww QB t=0 2 H 10 Ω i(t) 0.25 F=v(1) Figure 2 (Ans: v(t) = (21.43 cos1.4t -9.17 sin 1.4t)e-0.2t V, i(t) = (-4.28sin 1.4t - 7.03cos 1.4t)e-0.2t A)

Introductory Circuit Analysis (13th Edition)
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In the circuit of Figure 2, the switch moves from position A to position B at t = 0. Determine
v(t) and i(t) for t> 0.
30 V
422
EX
OB
2 H
10 2 0.25 F=v(1)
Ω
Figure 2
(Ans: v(t) = (21.43 cos1.4t-9.17 sin 1.4t)e-0.2t V, i(t)= (-4.28sin 1.4t - 7.03cos 1.4t)e-0.2t A)
Transcribed Image Text:In the circuit of Figure 2, the switch moves from position A to position B at t = 0. Determine v(t) and i(t) for t> 0. 30 V 422 EX OB 2 H 10 2 0.25 F=v(1) Ω Figure 2 (Ans: v(t) = (21.43 cos1.4t-9.17 sin 1.4t)e-0.2t V, i(t)= (-4.28sin 1.4t - 7.03cos 1.4t)e-0.2t A)
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