Two identical parallel-plate capacitors, each with capacitance C, are charged to potential difference AV and connected in parallel. Then the plate separation in one of the capacitors is doubled. (Use AV and C as necessary.) (a) Find the total energy of the system of two capacitors before the plate separation is doubled. U = (b) Find the potential difference across each capacitor after the plate separation is doubled. Δν . (c) Find the total energy of the system after the plate separation is doubled. U'=

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Chapter26: Capacitance And Dielectrics
Section: Chapter Questions
Problem 26.12OQ: (i) Rank the following five capacitors from greatest to smallest capacitance, noting any cases of...
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Two identical parallel-plate capacitors, each with capacitance C, are charged to potential difference AV and connected in parallel. Then the plate separation in one of the capacitors is doubled. (Use AV and C as necessary.)
(a) Find the total energy of the system of two capacitors before the plate separation is doubled.
U =
(b) Find the potential difference across each capacitor after the plate separation is doubled.
AV' =
(c) Find the total energy of the system after the plate separation is doubled.
U' =
(d) Reconcile the difference in the answers to parts (a) and (c) with the law of conservation of energy.
Transcribed Image Text:Two identical parallel-plate capacitors, each with capacitance C, are charged to potential difference AV and connected in parallel. Then the plate separation in one of the capacitors is doubled. (Use AV and C as necessary.) (a) Find the total energy of the system of two capacitors before the plate separation is doubled. U = (b) Find the potential difference across each capacitor after the plate separation is doubled. AV' = (c) Find the total energy of the system after the plate separation is doubled. U' = (d) Reconcile the difference in the answers to parts (a) and (c) with the law of conservation of energy.
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