Two identical charged spherical drops each of capacitance C merge to form a single drop. The resultant capacitance is -
⇒
⇒ 2C > C' > C
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Two identical charged spherical drops each of capacitance C merge to form a single drop. The resultant capacitance is -
⇒
⇒ 2C > C' > C
A 12pF capacitor is connected to a 50V battery. How much electrostatic energy is stored in the capacitor ?
= 1.5 × 10–8 J
The capacity of a parallel plate condenser is 15 μF, when the distance between its plates is 6 cm. If the distance between the plates is reduced to 2 cm, then the capacity of this parallel plate condenser will be
⇒ ⇒ C2 = 45 μF
The capacity of a parallel plate capacitor with no dielectric substance but with a separation of 0.4 cm is 2 μF. The separation is reduced to half and it is filled with a dielectric substance of value 2.8. The final capacity of the capacitor is
⇒
⇒
Two insulated metallic spheres of 3 μF and 5 μF capacitances are charged to 300 V and 500V respectively. The energy loss, when they are connected by a wire is
A charge of 40 μC is given to a capacitor having capacitance C = 10 μF. The stored energy in ergs is
A parallel plate capacitor has plate area A and separation d. It is charged to a potential difference V0. The charging battery is disconnected and the plates are pulled apart to three times the initial separation. The work required to separate the plates is
Work done W = Uf – Ui
So
The electric field between the plates of a parallel plate capacitor when connected to a certain battery is E0. If the space between the plates of the capacitor is filled by introducing a material of dielectric constant K without disturbing the battery connections, the field between the plates shall be
In the presence of battery potential difference remains constant. Also so E remains same.
If the distance between parallel plates of a capacitor is halved and dielectric constant is doubled then the capacitance
Capacitance with dielectric
⇒
If there are n capacitors each of capacitance C in parallel connected to V volt source, then the energy stored is equal to
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