2. For the circuit in Fig.2, the switch has been in position a for a long time. At t = 0, the switch is thrown to position b. a) Find i, v, and v2. b) Calculate the total initial energy stored in 30µF and 60µF capacitors. c) At t = 00, what is the total stored energy in 30µF and 60µF capacitors. d) For t 2 0, what is the energy delivered to the 5 k2? %3D Figure 2 4k2 a b 5 k2 6 kN 30 μF 1 60 uF 50 V ta

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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2. For the circuit in Fig.2, the switch has been in position a for a long time.
At t = 0, the switch is thrown to position b.
%3D
a) Find i, v, and v2.
b) Calculate the total initial energy stored in 30uF and 60µF capacitors.
c) At t = 00, what is the total stored energy in 30µF and 60µF capacitors.
d) For t 2 0, what is the energy delivered to the 5 k2?
Figure 2
4k2
5 kN
6 kN
60 μF
02
50 V
30 μF
Transcribed Image Text:2. For the circuit in Fig.2, the switch has been in position a for a long time. At t = 0, the switch is thrown to position b. %3D a) Find i, v, and v2. b) Calculate the total initial energy stored in 30uF and 60µF capacitors. c) At t = 00, what is the total stored energy in 30µF and 60µF capacitors. d) For t 2 0, what is the energy delivered to the 5 k2? Figure 2 4k2 5 kN 6 kN 60 μF 02 50 V 30 μF
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