Consider the circuit shown in the figure below, where C₁ = 9.00 μF, C₂ = 6.00 μF, and AV = 22.0 V. Capacitor C₁ is first charged by closing switch S₁. Switch S₁ is then opened, and the charged capacitor is connected to the uncharged capacitor by closing S₂. AV + S₁ S₂ (a) Calculate the initial charge (in μC) acquired by C₁. (Round your answer to at least one decimal place.) 198 • με (b) Calculate the final charge (in μC) on each capacitor. (Round your answers to at least the nearest integer.) 9, 118.8 UC
Consider the circuit shown in the figure below, where C₁ = 9.00 μF, C₂ = 6.00 μF, and AV = 22.0 V. Capacitor C₁ is first charged by closing switch S₁. Switch S₁ is then opened, and the charged capacitor is connected to the uncharged capacitor by closing S₂. AV + S₁ S₂ (a) Calculate the initial charge (in μC) acquired by C₁. (Round your answer to at least one decimal place.) 198 • με (b) Calculate the final charge (in μC) on each capacitor. (Round your answers to at least the nearest integer.) 9, 118.8 UC
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Transcribed Image Text:Consider the circuit shown in the figure below, where C₁ = 9.00 µF, C₂ = 6.00 µF, and AV = 22.0 V. Capacitor C₁ is first charged by closing switch S₁. Switch S₁ is then opened, and the
charged capacitor is connected to the uncharged capacitor by closing S₂.
+
AV
(c)
I
(a) Calculate the initial charge (in µC) acquired by C₁. (Round your answer to at least one decimal place.)
198
μC
=
(b) Calculate the final charge (in µC) on each capacitor. (Round your answers to at least the nearest integer.)
91 118.8
= 79.2
C₂₂
μC
μC
1
What If? After a very long time, switch S₁ is also closed. By what amount does the charge on the second capacitor change after S₁ has been closed for a very long time? (Give
your answer in μC.)
57.2
X μC
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