A charged particle of mass m and charge q travels on a circular path of radius r that is perpendicular to a magnetic field B. The time taken by the particle to complete one revolution is
02Easy116×since 2002Q7737
In a region, steady and uniform electric and magnetic fields are present. These two fields are parallel to each other. A charged particle is released from rest in this region. The path of the particle will be a
03Medium116×since 2002Q7738
A charged particle with charge q enters a region of constant, uniform and mutually orthogonal fields E and B with a velocity v perpendicular to both E and B, and comes out without any change in magnitude or direction of v. Then
04Easy116×since 2002Q7739
A charged particle moves through a magnetic field perpendicular to its direction. Then
05Easy116×since 2002Q7740
Proton, deuteron and alpha particle of same kinetic energy are moving in circular trajectories in a constant magnetic field. The radii of proton, denuteron and alpha particle are respectively rp,rd and rα. Which one of the following relation is correct?
06Medium116×since 2002Q7741
In a certain region static electric and magnetic fields exist. The magnetic field is given by B=B0(i+2j−4k) . If a test charge moving with a velocity υ=υ0(3i−j+2k) experiences no force in that region, then the electric field in the region, in SI units, is :
07Hard116×since 2002Q7742
An electron, a proton and an alpha particle having the same kinetic energy are moving in circular orbits of
radii r_e, r_p, rα respectively in a uniform magnetic field B. The relation between r_e, r_p, rα is:
08Medium116×since 2002Q7743
A particle having the same charge as of electron moves in a ciurcular path of radius 0.5 cm under the influence of a magnetic field 0f 0.5 T. If an electric field of 100 V/m makes it to move in a straight path, then the mass of the particle is (Given charge of electron = 1.6 × 10−¹⁹C)
09Medium116×since 2002Q7744
In an experiment, electrons are accelerated, from rest, by applying a voltage of 500 V. Calculate the radius of the path if a magnetic field 100 mT is then applied. [Charge of the electron = 1.6 × 10^–19 C Mass of the electron = 9.1 × 10^–31 kg]
10Medium116×since 2002Q7745
The region between y = 0 and y = d contains a magnetic field B=Bz. A particle of mass m and charge q enters the region with a velocity v=vi. If d =2qBmv, the acceleration of the charged particle at the point of its emergence at the other side is :