Q3: A. Using Laplace transform find i,(t) shown in Figure 2. H 20 20 IF 30 и() 20 0.5H Figure 2 B. The capacitor 3000 µF has initially no charge at (t-0) the switch (SW) is applied to position (4) shown in Figure 3. After 100 ms, the switch in change to position (B), find ve(t) and ic(t). 300 B 200 120V 40V 3000uF Figure 3

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q3:
A. Using Laplace transform find i,(t) shown in Figure 2.
H
20
20
IF
30 и()
20
0.5H
Figure 2
B. The capacitor 3000 µF has initially no charge at (t-0) the switch (SW) is applied to position (4)
shown in Figure 3. After 100 ms, the switch in change to position (B), find ve(t) and ic(t).
300
B
200
120V
40V
3000uF
Figure 3
Transcribed Image Text:Q3: A. Using Laplace transform find i,(t) shown in Figure 2. H 20 20 IF 30 и() 20 0.5H Figure 2 B. The capacitor 3000 µF has initially no charge at (t-0) the switch (SW) is applied to position (4) shown in Figure 3. After 100 ms, the switch in change to position (B), find ve(t) and ic(t). 300 B 200 120V 40V 3000uF Figure 3
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