For circuit shown equivalent capacitance between S and Q is :
Two condensers of capacities 2C and C are joined in parallel and charged up to potential V. The battery is removed and the condenser of a capacity C is filled completely with a medium of dielectric constant K. The potential difference across the capacitors will now be
05
Dec
Two condensers of capacities 2C and C are joined in parallel and charged up to potential V. The battery is removed and the condenser of a capacity C is filled completely with a medium of dielectric constant K. The potential difference across the capacitors will now be For circuit shown equivalent capacitance between S and [...]
Four equal capacitors , each with a capacitance (C) are connected to a battery of E.M.F 10 volts as shown in the adjoining figure. The mid point of the capacitor system is connected to earth. Then the potentials of B and D are respectively
05
Dec
Four equal capacitors , each with a capacitance (C) are connected to a battery of E.M.F 10 volts as shown in the adjoining figure. The mid point of the capacitor system is connected to earth. Then the potentials of B and D are respectively For circuit shown equivalent capacitance between S and Q is : [...]
A capacitor of capacitance C is charged to a potential difference V0. The charged battery is disconnected and the capacitor is connected to a capacitor of unknown capacitance Cx. The potential difference across the combination is V. The value of Cx should be
05
Dec
A capacitor of capacitance C is charged to a potential difference V0. The charged battery is disconnected and the capacitor is connected to a capacitor of unknown capacitance Cx. The potential difference across the combination is V. The value of Cx should be For circuit shown equivalent capacitance between S and Q is : December [...]
For circuit shown equivalent capacitance between S and Q is :
05
Dec
For circuit shown equivalent capacitance between S and Q is : For circuit shown equivalent capacitance between S and Q is : December 5, 2020 Category: Arihant Physics by D.C Pandey , Chapter 2 - Electrostatic Potential and Capacitance , Volume 2 ,