Home
Class 12
PHYSICS
The radius of and alpha-particle moving ...

The radius of and `alpha`-particle moving in a circle in a constant magnetic field is half of the radius of and electron moving in circular path in the same field. The de Broglie wavelength of `alpha`-particle is n times that of the electron. Find n (an integer).

Promotional Banner

Similar Questions

Explore conceptually related problems

Radius of an electron moving in a circle in constant magnetic field is two times that of an alpha particle in the same field. Then de-Broglie wavelength of electrons is x-times of the alpha -particle Here x is

Radius of an electron moving in a circle in constant magnetic field is two times that of an alpha particle in the same field. Then de-Broglie wavelength of electrons is x-times of the alpha -particle Here x is

The radius of curvature of the path of a charged particle moving in a static uniform magnetic field is

The radius of curvature of the path of a charged particle moving in a static uniform magnetic field is

The ratio of periods of alpha -particle and proton moving on circular path in uniform magnetic field is _______.

The momentum of alpha -particles moving in a circular path of radius 10 cm in a perpendicular magnetic field of 0.05 tesla will be :

The momentum of alpha -particles moving in a circular path of radius 10 cm in a perpendicular magnetic field of 0.05 tesla will be :