Answer:
The force exerted on a moving charge is
.
Step-by-step explanation:
We have,
Charge,

Magnetic field,

Velocity of charged particle,

Angle through the magnetic field,

It is required to find the force exerted on a moving charge. Due to the motion in charge, magnetic force acts on it. It can be given by :

Plugging all values above

So, force exerted on a moving charge is
.