C = 2 µF He + V2 - Cz = 3 µF he 20 E= 72 V R3: In the circuit given above; a) Equivalent capacity = ? b) Total load = ? c) Load falling on each capacitor = ? d) Energy stored in each capacitor = ? e) Total energy stored in the circuit = ? %3!

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
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+ V -
C = 2 µF
hei
+ V2 -
C2 = 3 µF
RI
thes
20
E = 72 VE
RE80
7.
In the circuit given above;
a) Equivalent capacity = ?
b) Total load = ?
c) Load falling on each capacitor = ?
d) Energy stored in each capacitor = ?
e) Total energy stored in the circuit = ?
Transcribed Image Text:+ V - C = 2 µF hei + V2 - C2 = 3 µF RI thes 20 E = 72 VE RE80 7. In the circuit given above; a) Equivalent capacity = ? b) Total load = ? c) Load falling on each capacitor = ? d) Energy stored in each capacitor = ? e) Total energy stored in the circuit = ?
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