Required information Consider the following circuit. A 44.0 V B C₁ C₂ C3 where C₁ = 1.90 μF, C₂ = 6.10 μµF, and C3 = 5.10 μF. What is the charge on the 6.10-µF capacitor if a 44.0-V emf is connected to the terminals A and B for a lon με

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Required information
Consider the following circuit.
44.0 V
B
C₁ C₂ C3
where C₁ = 1.90 µF, C2 = 6.10 µF, and C3 = 5.10 μF.
What is the charge on the 6.10-µF capacitor if a 44.0-V emf is connected to the terminals A and B for a lon
με
Transcribed Image Text:Required information Consider the following circuit. 44.0 V B C₁ C₂ C3 where C₁ = 1.90 µF, C2 = 6.10 µF, and C3 = 5.10 μF. What is the charge on the 6.10-µF capacitor if a 44.0-V emf is connected to the terminals A and B for a lon με
Required information
Consider the following circuit.
44.0 V
B
C₁ C₂ C3
where C₁ = 1.90 µF, C2 = 6.10 µF, and C3 = 5.10 μF.
Find the equivalent capacitance between points A and B for the three capacitors.
μF
Transcribed Image Text:Required information Consider the following circuit. 44.0 V B C₁ C₂ C3 where C₁ = 1.90 µF, C2 = 6.10 µF, and C3 = 5.10 μF. Find the equivalent capacitance between points A and B for the three capacitors. μF
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Step 1

We know that in parallel combination the voltage difference is same in all terminals.

 

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