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Capacitors in parallel #!#Charge on each...

Capacitors in parallel #!#Charge on each capacitor connected in parallel

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100 capacitors each having a capacity of 10 muF are connected in parallel and are charged by a potential difference of 100 kV . The energy stored in the capacitors and the cost of charging them, if electrical energy costs 108 paise per kWh , will be

Four identical capacitors are connected such that, three capacitors are in parallel to which the fourth capacitor is connected in series. The effective capacity is 3.75muF . What is the value of each capacitor?

A capacitor is charged by a battery. The battery is removed and another identical uncharged capacitor is connected in parallel. The total electrostatic energy of resulting system:

Two capacitors each of 1muF capacitance are connected in parallel and are then charged by 200 V. The total energy of their charges is

The enrgy of a charged capacitor is U. Another identical capacitor is connected parallel to the first capacitor, after disconnecting the battery. The total energy of the system of these capacitors will be

A capacitor of capacitance C is charged upto a potential difference V . After removing the charging battery, the capacitor is connected (i) in parallel, (ii) in series with an uncharged capacitor of the same capacitance. What will be the effect on the potential difference of the first capacitor in each case?

Each plate of a parallel plate capacitor has a charge q on it. The capacitor is now connected to a battery. Now,

A capacitor is charged with a battery and energy stored is U. After disconnecting battery another capacitor of same capacity is connected in parallel with it. Then energy stored in each capacitor is:

Three capacitors of capacitances 2pF, 3pF and 4pF are connected in parallel. Determine the charge on each capacitor, if the combination is connected to a 100 V suppy ?