A network of ten capacitors are shown in the figure below, where the capacitances are as follows: C1=C5=C7=3μF, C2 C4 C8 5μF, C3 C6 C9 7μF, and C10-15μF. HA C5 C6 C7 C10 CB C4 HH C9 a) Find the equivalent capacitance Ceq between points a and b in the capacitor network of the figure. b) If a potential difference of Vab = 12V is applied across points a and b, calculate the charge on Cea- c) Find the energy stored in Ceq

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A network of ten capacitors are shown in the figure below, where the capacitances are as follows:
C1=C5=C7=3μF,
C2 C4 C8 5μF,
C3 C6 C9 7μF, and
C10-15μF.
HA
C5
C6
C7
C10
CB
C4
HH
C9
a) Find the equivalent capacitance Ceq between points a and b in the capacitor network of the figure.
b) If a potential difference of Vab = 12V is applied across points a and b, calculate the charge on
Cea-
c) Find the energy stored in Ceq
Transcribed Image Text:A network of ten capacitors are shown in the figure below, where the capacitances are as follows: C1=C5=C7=3μF, C2 C4 C8 5μF, C3 C6 C9 7μF, and C10-15μF. HA C5 C6 C7 C10 CB C4 HH C9 a) Find the equivalent capacitance Ceq between points a and b in the capacitor network of the figure. b) If a potential difference of Vab = 12V is applied across points a and b, calculate the charge on Cea- c) Find the energy stored in Ceq
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