In (Figure 1), each capacitor has C = 4.90 µF and Vab = 34.0 V. Part A Calculate the charge on capacitor C1. Express your answer in coulombs. ? Q1 = C Figure < 1 of 1 C2 Part B a C3 Calculate the potential difference across capacitor C1. Express your answer in volts. d ? C4 V = V
In (Figure 1), each capacitor has C = 4.90 µF and Vab = 34.0 V. Part A Calculate the charge on capacitor C1. Express your answer in coulombs. ? Q1 = C Figure < 1 of 1 C2 Part B a C3 Calculate the potential difference across capacitor C1. Express your answer in volts. d ? C4 V = V
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
Transcribed Image Text:Part C
Calculate the charge on capacitor C2.
Express your answer in coulombs.
ΑΣφ
?
Q2 =
C
Part D
Calculate the potential difference across capacitor C2.
Express your answer in volts.
ΑΣφ
?
V2 =
V

Transcribed Image Text:In (Figure 1), each capacitor has C = 4.90 µF and
Vab = 34.0 V.
Part A
Calculate the charge on capacitor C1.
Express your answer in coulombs.
?
Q1 =
C
Figure
< 1 of 1
C C2
Part B
a
C3
Calculate the potential difference across capacitor C1.
Express your answer in volts.
b
?
C4
V =
V
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