A 68.3-V potential difference is applied across the parallel plates of a 0.15-μF capacitor. (a) What is the charge on the capacitor? μC (b) How much potential energy is stored in the capacitor? U = μJ (c) What is the energy density if the plate separation is 4.43 cm? μJ/m³ Ue = h

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A 68.3-V potential difference is applied across the parallel plates of a 0.15-μF capacitor.
(a) What is the charge on the capacitor?
μC
(b) How much potential energy is stored in the capacitor?
U =
μJ
(c) What is the energy density if the plate separation is 4.43 cm?
μJ/m³
Ue =
h
Transcribed Image Text:A 68.3-V potential difference is applied across the parallel plates of a 0.15-μF capacitor. (a) What is the charge on the capacitor? μC (b) How much potential energy is stored in the capacitor? U = μJ (c) What is the energy density if the plate separation is 4.43 cm? μJ/m³ Ue = h
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