Home
Class 12
PHYSICS
A particle having mass m, charge q enter...

A particle having mass `m`, charge `q` enters a cylindrical region having uniform magnetic field `B` in the inward direction as shown. If the particle is deviated by `60^(@)` as it emerges out of the field then what is the time spent by it in the field?

Promotional Banner

Similar Questions

Explore conceptually related problems

If a charged particle enters perpendicular in the uniform magnetic field then

A particule having charge q enters a rection of untiormal magnetic field B (direction inwards) and in denfectro as shown . The magnetic of the momentum of the particles is

A particule having charge q enters a rection of untiormal magnetic field B (direction inwards) and in denfectro as shown . The magnetic of the momentum of the particles is

A particle of mass m and charge q is projected into a region having a perpendicular magnetic field B. Find the angle of deviation of the particle as it comes out of the magnetic field if ihe width d of the region is (2mv)/(qB)

A particle of mass m and charge q is projected into a region having a perpendicular magnetic field B. Find the angle of deviation fo the particle as it comes out of the magnetic field if the width d of the regions is very smaller then

A particle of mass m and charge q is projected into a region having a perpendicular magnetic field B. Find the angle of deviation fo the particle as it comes out of the magnetic field if the width d of the regions is very smaller then

Magnetic field in cylindrical region of radius R in inward direction is as shown in figure.

Magnetic field in cylindrical region of radius R in inward direction is as shown in figure.

A particle of mass 'm' and carrying a charge q enters with a velocity 'v' perpendicular to a uniform magnetic field. The time period of rotation of the particle