10.62 Using Thevenin's theorem, find v, in the circuit of Fig. 10.105. p's 3i. i, 42 2 H 2Ω Vo 20 cos(t + 30°) V (* -100 ww

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10.62 Using Thevenin's theorem, find v, in the circuit of
Fig. 10.105.
ps
10.66 At terminals a-b, obtain Thevenin and Norton
equivalent circuits for the network depicted in
ps Fig. 10.109. Take w = 10 rad/s.
3i.
10 mF 12 cos wt V
2 H
-o a
ww
ell
+
2 sin wt A
Vo
10 Ω
2v,
20 cos(t+ 30°) V
2Ω ο
-o b
Figure 10.105
For Prob. 10.62.
Figure 10.109
For Prob. 10.66.
Transcribed Image Text:10.62 Using Thevenin's theorem, find v, in the circuit of Fig. 10.105. ps 10.66 At terminals a-b, obtain Thevenin and Norton equivalent circuits for the network depicted in ps Fig. 10.109. Take w = 10 rad/s. 3i. 10 mF 12 cos wt V 2 H -o a ww ell + 2 sin wt A Vo 10 Ω 2v, 20 cos(t+ 30°) V 2Ω ο -o b Figure 10.105 For Prob. 10.62. Figure 10.109 For Prob. 10.66.
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