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Capacitor|Capacitance & Charge...

Capacitor|Capacitance & Charge

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Obtain the expression for the energy stored in a parallel plate capacitor of capacitance C charged to a potential V.

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A capacitor of capacitance C carrying charge Q is connected to a source of emf E . Finally, the charge on capacitor would be

A capacitor of capacitance C has charge Q. it is connected to an identical capacitor through a resistance. The heat produced in the resistance is

A capacitor of capacitance C, charged to a potential difference V, is discharged through a series combination of two resistors R_(1) and R_(2) . Find the heat generated in resistor R_(1) during discharging.

A capacitor of capacitance 5mf charged up to a voltage of 50V is connected to an uncharged capacitor bank having 5 capacitors of 1mf in parallel. Determine the charge that flow through connecting wires?

A capacitor of capacitance C charged by battery at V volt and then disconnected. At t = 0, it is connected to an uncharged capacitor of capacitance 2C through a resistance R. The charge on the second capacitor as a function of time is given by q=(alpha CV)/(3) (1-e^(-(3t)/(beta RC))) then fing the value of (alpha )/(beta) .

The charges appearing on inner surfaces of a parallel plate capacitor are q_( i and )q_(2) . The charges appearing on outer surfaces of the capacitor are equal.Find the potential difference between plates of the capacitor if capacitances is C.

A capacitor of capacitance C is charged to a potential V . The flux of the electric field through a closed surface enclosing the capacitor is

A capacitor of capacitance C is charged to a potential difference V_(0) . The charged battery is disconnected and the capacitor is connected to a capacitor of unknown capacitance C_(x) . The potential difference across the combination is V. The value of C_(x) should be