Home
Class 12
PHYSICS
A uniform electric field in positive x-d...

A uniform electric field in positive `x`-direction on exists in space. An uncharged solid conducting sphere is now placed in region of this uniform electric field. The centre of this sphere of radius `R` lies at origin. Then electric potential at any point on `y-z` plane (i.e. `x=0` plane) due to only induced charged on surface of sphere.

Promotional Banner

Similar Questions

Explore conceptually related problems

A solid conducting sphere of radius r is having a charge of Q and point charge q is a distance d from the centre of sphere as shown. The electric potential at the centre of the solid sphere is :

A solid conducting sphere of radius r is having a charge of Q and point charge q is a distance d from the centre of sphere as shown. The electric potential at the centre of the solid sphere is :

A nonconducting sphere of radius R is filled with uniform volume charge density -rho . The center of this sphere is displaced from the origin by vecd . The electric field vecE at any point P having position vector inside the sphere is

A nonconducting sphere of radius R is filled with uniform volume charge density -rho . The center of this sphere is displaced from the origin by vecd . The electric field vecE at any point P having position vector inside the sphere is

Find electric field due to solid sphere of charge at a point inside.

A sphere of charge of radius R has uniform volume charge density. The electric field due to the sphere of charge at a point

A conducting sphere of radius R is given a charge Q . The electric potential and the electric field at the centre of the sphere respectively are

A conducting sphere of radius R is given a charge Q . The electric potential and the electric field at the centre of the sphere respectively are

A conducting sphere of radius R is give a charge Q. The electric potential and the electric field at the centre of the sphere are, respectively

A conducting sphere of radius R is given a charge Q. The electric potential and the electric field at the centre of the sphere respectively are