8. Two capacitors with the capacitance of 4.0 uF and 8.0 µF are connected in series to a 6 V battery. After the capacitor is fully charged, the connection is disconnected. The positive end of the capacitors is then connected together and the negative end is also connected together. After equilibrium is established, find a. The potential different across each capacitor b. The charge stored in each capacitor

Principles of Physics: A Calculus-Based Text
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Author:Raymond A. Serway, John W. Jewett
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Chapter20: Electric Potential And Capacitance
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8. Two capacitors with the capacitance of 4.0 uF and 8.0 µF are connected in series
to a 6 V battery. After the capacitor is fully charged, the connection is
disconnected. The positive end of the capacitors is then connected together and
the negative end is also connected together. After equilibrium is established, find
a. The potential different across each capacitor
b. The charge stored in each capacitor
Transcribed Image Text:8. Two capacitors with the capacitance of 4.0 uF and 8.0 µF are connected in series to a 6 V battery. After the capacitor is fully charged, the connection is disconnected. The positive end of the capacitors is then connected together and the negative end is also connected together. After equilibrium is established, find a. The potential different across each capacitor b. The charge stored in each capacitor
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