An electron gun is placed inside a long solenoid of radius on its axis. The solenoid has turns/length and carries a current . The electron gun shoots an electron along the radius of solenoid with speed If the electron does not hit the surface of the solenoid, maximum possible value of is (all symbols have their standard meaning):
Step 1. Given Data:
Radius of solenoid
Number of turns in the solenoid
Current carrying the solenoid
Step 2. Finding the magnetic force
Magnetic field inside the solenoid, [ Where, is number of turns, is current inside the solenoid, is the permeability of free space.]
Magnetic force, [Where, is the charge, is the velocity, is magnetic field]
Step 3. Finding the maximum velocity
In a magnetic field, the charge will move on a circular path. Magnetic force is equal to the centripetal force,
[Where, is the radius of the circular path, is the mass.] []
Maximum possible radius of electron is because electron move along the axis which is half of the radius.
From ,
Therefore, the maximum velocity will be
Hence, the correct option is .