The capacitive network shown in the figure is assembled with initially uncharged capacitors. A potential difference, Vab = +100V, is applied across the network. The switch S in the network is kept open. Assume that all the capacitances shown are accurate to two significant figures. What will be potential difference Vad if the charge on the 6 µF capacitor is 60 µC? a. V = +100 V A) O V b. 9 μF B) 40 V 16 μF C) 50 V 15 µF D) 80 V 6 μF 4 µF E) 90 V = 8 μF 12 µF
The capacitive network shown in the figure is assembled with initially uncharged capacitors. A potential difference, Vab = +100V, is applied across the network. The switch S in the network is kept open. Assume that all the capacitances shown are accurate to two significant figures. What will be potential difference Vad if the charge on the 6 µF capacitor is 60 µC? a. V = +100 V A) O V b. 9 μF B) 40 V 16 μF C) 50 V 15 µF D) 80 V 6 μF 4 µF E) 90 V = 8 μF 12 µF
Introductory Circuit Analysis (13th Edition)
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Transcribed Image Text:The capacitive network shown in the figure is assembled with initially uncharged capacitors. A
potential difference, Vab= +100V, is applied across the network. The switch S in the network is
kept open. Assume that all the capacitances shown are accurate to two significant figures. What
will be potential difference Vad, if the charge on the 6 µF capacitor is 60 µC?
Vos =
A) 0 V
= +100 V
be
9 μF
B) 40 V
16 µF
C) 50 V
15 μF
D) 80 V
d
6 µF
4 μF
E) 90 V
8 μF
12 µF
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