For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C, = 29.0 µF and C, = 4.33 µF.) 6.00 µF C, µF : C2 µF 9.00 V (a) the equivalent capacitance (in pF) 6.03 (b) the charge on each capacitor (in µC) C; (left) C, (right) 261 |× µc | µC C2 6.00 µF capacitor | µC (c) the potential difference across each capacitor (in V) C, (left) c, (right) C2 6.00 µF capacitor V

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For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C1 = 29.0 µF and C2 = 4.33 µF.)

(a) the equivalent capacitance (in µF)
 
(b) the charge on each capacitor (in µC)
 
(c) the potential difference across each capacitor (in V)
For her electronics class, Gabriella configures a circuit as shown in the figure. Find the following. (Assume C, = 29.0 µF and C, = 4.33 µF.)
6.00 µF
C, µF :
C2 µF
9.00 V
(a) the equivalent capacitance (in pF)
6.03
(b) the charge on each capacitor (in µC)
C; (left)
C, (right)
261
|× µc
| µC
C2
6.00 µF capacitor
| µC
(c) the potential difference across each capacitor (in V)
C, (left)
c, (right)
C2
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, = 4.33 µF.) 6.00 µF C, µF : C2 µF 9.00 V (a) the equivalent capacitance (in pF) 6.03 (b) the charge on each capacitor (in µC) C; (left) C, (right) 261 |× µc | µC C2 6.00 µF capacitor | µC (c) the potential difference across each capacitor (in V) C, (left) c, (right) C2 6.00 µF capacitor V
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