22. The switch above the 12 V source in the circuit of Fig. 8.60 has been closed since just after the wheel was invented. It is finally thrown open at f = 0. (a) Compute the circuit time constant. (b) Obtain an expression for r(1) valic for: >0. (c) Calculate the energy stored in the capacitor 170 ms after the switch is opened. 20 kn www :5 µF 12 V 29bila txon thems1612 992 92 3 ΚΩ w X1=0 5 KM www 22615 1K-3.1 NT: 1970 bila auluples w

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22. The switch above the 12 V source in the circuit of Fig. 8.60 has been closed
since just after the wheel was invented. It is finally thrown open at f=0.
(a) Compute the circuit time constant. (b) Obtain an expression for v(1) valid
for: >0. (c) Calculate the energy stored in the capacitor 170 ms after the
switch is opened.
20 ΚΩ
www
5 µF
12 V
29bila txen theme162 992 926
3 ΚΩ
www
741=0
22615 1
5 KM 1kn -3.1 HT: 1970
bila auluslss worV91 92
ww
10 kn
Transcribed Image Text:22. The switch above the 12 V source in the circuit of Fig. 8.60 has been closed since just after the wheel was invented. It is finally thrown open at f=0. (a) Compute the circuit time constant. (b) Obtain an expression for v(1) valid for: >0. (c) Calculate the energy stored in the capacitor 170 ms after the switch is opened. 20 ΚΩ www 5 µF 12 V 29bila txen theme162 992 926 3 ΚΩ www 741=0 22615 1 5 KM 1kn -3.1 HT: 1970 bila auluslss worV91 92 ww 10 kn
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