मराठी

Two charged particles traverse identical helical paths in a completely opposite sense in a uniform magnetic field B = B0k̂. - Physics

Advertisements
Advertisements

प्रश्न

Two charged particles traverse identical helical paths in a completely opposite sense in a uniform magnetic field B = B0.

पर्याय

  • They have equal z-components of momenta.

  • They must have equal charges.

  • They necessarily represent a particle-antiparticle pair.

  • The charge to mass ratio satisfy : `(e/m)_1 + (e/m)_2 = 0`.

MCQ

उत्तर

The charge to mass ratio satisfy : `(e/m)_1 + (e/m)_2 = 0`.

Explanation:

In this situation, if the particle is thrown in x - y plane (as shown in figure) at some angle θ with velocity v, then we have to resolve the velocity of the particle in rectangular components, such that one component is along the field (v cosθ) and another one is perpendicular to the field (v sinθ). We find that the particle moves with constant velocity v cosθ along the field. The distance covered by the particle along the magnetic field is called pitch.

The pitch of the helix, (i.e., linear distance travelled in one rotation) will be given by

`p = T(v cos theta) = 2p m/(qB) (v cos theta)`

For given pitch p correspond to charge particle, we ahve

`q/m = (2pi v cos theta)/(qB)` = constant

Here in this case, charged particles traverse identical helical paths in a completely opposite sense in a uniform magnetic field B, LHS for two particles should be the same and of opposite sign. Therefore, `(e/m)_1 + (e/m)_2 = 0`

shaalaa.com
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 4: Moving Charges And Magnetism - MCQ I [पृष्ठ २२]

APPEARS IN

एनसीईआरटी एक्झांप्लर Physics [English] Class 12
पाठ 4 Moving Charges And Magnetism
MCQ I | Q 4.01 | पृष्ठ २२

व्हिडिओ ट्यूटोरियलVIEW ALL [3]

संबंधित प्रश्‍न

(a) Write the expression for the magnetic force acting on a charged particle moving with velocity v in the presence of magnetic field B.


A conducting loop is held above a current carrying wire PQ as shown in the figure. Depict the direction of the current induced in the loop when the current in the wire PQ is constantly increasing.


Magnetic lines of force always cross each other


The net charge in a current-carrying wire is zero. Then, why does a magnetic field exert a force on it?


A straight horizontal wire of mass 10 mg and length 1.0 m carries a current of 2.0 A. What minimum magnetic field B should be applied in the region, so that the magnetic force on the wire may balance its weight?


An electron is moving with a speed of 3.2 × 107 m/s in a magnetic field of 6.00 × 10-4 T perpendicular to its path. What will be the radium of the path? What will be frequency and the energy in keV?
[Given: mass of electron = 9.1 × 10−31 kg, charge e = 1.6 × 10−19 C, 1 eV = 1.6 × 10−19 J]


If a current is passed through a spring then the spring will ______.

Direction of force due to magnetic field on a moving charged particle is ______.
  1. perpendicular to direction of velocity of charged particle.
  2. perpendicular to direction of magnetic field.
  3. parallel to direction of velocity of charged particle.
  4. parallel to the direction of magnetic field.
Correct statements are-

A charge q is moving with a velocity v parallel to a magnetic field B. Force on the charge due to magnetic field is ______.

The phenomenon in which a magnetic field is produced in the space near a conductor carrying current is called ______


Share
Notifications

Englishहिंदीमराठी


      Forgot password?
Use app×