What is the magnetic force exerted by magnetic field on a stationary charge?

What is the magnetic force exerted by magnetic field on a stationary charge?

For a stationary charge v=0 , which implies that the force on a stationary charge in a magnetic field is zero.

Can you move a stationary charged by applying an electric field?

Explanation: Both stationary and moving charges experiences force in electric field .

Is the electric field the same everywhere?

At a point in space, the direction of the electric field is tangent to the electric field line that passes through that point. The magnitude of the electric field is strongest in regions where the field lines are closest together. In both drawings I and II the electric field is the same everywhere.

Which way will the dipole rotate after being released?

Question: Which Way Will The Dipole Rotate After Being Released? The Dipole Does Not Rotate But Translates In The Same Direction As The Electric Field The Dipole Does Not Rotate Or Translate The Dipole Will Rotate In The Clockwise Direction The Dipole Will Rotate In The Counterclockwise Direction.

What is the orientation of a dipole with respect to a uniform electric field for it to remain at rest?

The dipole is in constant equilibrium if θ = 00. A dipole in stable equilibrium, when Electric filed and dipole moment are perpendicular to each other i.e. the angle between them is zero degrees and torque will be maximum.

What happens when a dipole is placed in a non uniform electric field?

If an electric dipole is placed in a nonuniform electric field, then the positive and the negative charges of the dipole will experience a net force. And as one end of the dipole is experiencing a force in one direction and the other end in the opposite direction, so the dipole will have a net torque also.

What happens if the field is not uniform?

➡️Torque is non zero when dipole is placed in uniform as well as non uniform electric field but in non-uniform electric field, dipole will experience net force of attraction whereas in uniform magnetic field, it doesn’t.

What is meant by non uniform electric field?

If an electric field has the same magnitude and same direction everywhere in a given space then this electric field is uniform, and if either the magnitude or direction or both change then it is a non-uniform electric field in that specified space.

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