Q2. (a) Find the equivalent capacitance for the combination of capacitances shown in Figure, across which potential difference Vis applied. q = 12.0 µF Cz = 5.20 µF V = 12.5 V C3 = 4.50 µF

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Chapter16: Electrical Energy And Capacitance
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Problem 46P: (a) Find the equivalent capacitance between points a and b for the group of capacitors connected as...
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Q2. (a) Find the equivalent capacitance for the combination of capacitances shown in Figure,
across which potential difference V is applied.
C = 12.0 µF
C2 = 5.20 µF
V = 12.5 V
C3 = 4.50 µF
(b) The potential difference applied to the input terminals in Figure is V=12.5 V. What is the
charge on C1?
Transcribed Image Text:Q2. (a) Find the equivalent capacitance for the combination of capacitances shown in Figure, across which potential difference V is applied. C = 12.0 µF C2 = 5.20 µF V = 12.5 V C3 = 4.50 µF (b) The potential difference applied to the input terminals in Figure is V=12.5 V. What is the charge on C1?
Expert Solution
Step 1

Given,

Capacitance of capacitors,

C1=12 μF=12×10-6FC2=5.2 μF=5.2×10-6FC3=4.5 μF=4.5×10-6F

Potential difference,V=12.5 V

 

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