For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C, = 29.00 µF and C, = 3.23 µF.) 6.00 µF C µF C2 µF =C, pF 9.00 V

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For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C, = 29.0 µF and C, = 3.23 µF.)
6.00 µF
C pF=
C2 µF
C pF
9.00 V
(a) the equivalent capacitance (in µF)
uF
(b) the charge on each capacitor (in µC)
C, (left)
C (right)
C2
6.00 µF capacitor
uC
(c) the potential difference across each capacitor (in V)
C, (left)
C, (right)
C2
V
V
V
6.00 µF capacitor
V
Transcribed Image Text:For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C, = 29.0 µF and C, = 3.23 µF.) 6.00 µF C pF= C2 µF C pF 9.00 V (a) the equivalent capacitance (in µF) uF (b) the charge on each capacitor (in µC) C, (left) C (right) C2 6.00 µF capacitor uC (c) the potential difference across each capacitor (in V) C, (left) C, (right) C2 V V V 6.00 µF capacitor V
6.00 µF
A rectangular circuit contains a battery and four
capacitors. The bottom side has a 9.00 V battery
with the positive terminal on the left. The left and
right sides of the circuit each have a capacitor
labeled C, uF. The top side has two capacitors in
parallel. One capacitor is labeled 6.00 µF and the
other is labeled C, uF.00 V
Transcribed Image Text:6.00 µF A rectangular circuit contains a battery and four capacitors. The bottom side has a 9.00 V battery with the positive terminal on the left. The left and right sides of the circuit each have a capacitor labeled C, uF. The top side has two capacitors in parallel. One capacitor is labeled 6.00 µF and the other is labeled C, uF.00 V
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