Home
Class 12
PHYSICS
A charged particle of mass m and charge ...

A charged particle of mass m and charge q, a uniform magneric field B acting into the plane. The plane is frictional having coefficient of friction `mu`. The speed of charged particle just before entering into the region is `V_(0)`. The radius of curvature of the path after the time `(v_(0))/(2mug)` is

Promotional Banner

Similar Questions

Explore conceptually related problems

A charged particle of mass m and charge q enters a magnetic field B with a velocity v at an angle theta with the direction of B. The radius of the resulting path is

A charged particle of mass m and charge q enters a magnetic field B with a velocity v at an angle theta with the direction of B . The radius fo the resulting path is

A charge particle of mass m and charge q enters in a region of uniform magnetic field as shown in figure.The magnitude of change in linear momentum due to magnetic field will be

A charged particle of charge (+q) enters a region of uniform magnetic field of inductio overset (rarr) B with a velocity overset (rarr) V. the force experienced by the charged particle is

A particle of mass m and charge q enters a magnetic field B perpendicularly with a velocity v , The radius of the circular path described by it will be

A charged particle (+q) enters into a uniform magnetic field region of induction B and desribes a circle. The kinetic energy of the charged particle is

A charge particle of mass m and charge q entered into magnetic field B normally after accelerating by potential difference V. Calculate radius of its circular path.

A particle of mass m and charge q is thrown in a region where uniform gravitational field and electric field are present. The path of particle:

A particle of mass m and charge q is thrown in a region where uniform gravitational field and electric field are present. The path of particle: