Home
Class 12
PHYSICS
In the figure shown capacitors A and B o...

In the figure shown capacitors `A` and `B` of capacitance `C` are in steady state. A dielectric slab of dielectric constant `K=2` and dimensions equal to the inner dimensions of the capcitors is inserted in the space between the plate of the capacitor `B`. In steady state choose the correct options.

Promotional Banner

Similar Questions

Explore conceptually related problems

Find an expression for the capacitance of a parallel plate capacitor when a dielectric slab of dielectric constant K and thickness t=(d)/(2) but the same area on the plates is inserted between the the capacitors plate. (d=separation between the plates)

Find an expression for the capacitance of a parallel plate capacitor when a dielectric slab of dielectric constant K and thickness t=(d)/(2) but the same area on the plates is inserted between the the capacitors plate. (d=separation between the plates)

Briefly explain the principle of a capacitor. Find the expression for the capacitance of a parallel plate capacitor when a dielectric slab of dielectric constant k and thickness t=d/2 but of same area on the plates is inserted between the capacitor plate.

A parallel plate capacitor carries a harge Q. If a dielectric slab with dielectric constant K=2 is dipped between the plates, then

A parallel-plate capacitor with plate area A has separation d between the plates. Two dielectric slabs of dielectric constant K_1 and K_2 of same area A//2 and thickness d//2 are inserted in the space between the plates. The capacitance of the capacitor will be given by :

Two dielectric slabs of constant K1 and K2 have been filled in between the plates of a capacitor as shown below. What will be the capacitance of the capacitor

Two identical capacitors A and B shown in the given circuit are joined in series with a battery. If a dielectric slab of dielectric constant K is slipped between the plates of capacitor B and battery remains connected, then the energy of capacitor A will-

Two identical capacitors A and B shown in the given circuit are joined in series with a battery. If a dielectric slab of dielectric constant K is slipped between the plates of capacitor B and battery remains connected, then the energy of capacitor A will-