Home
Class 12
PHYSICS
Let r be the distance of a point on the ...

Let `r` be the distance of `a point on the axis of a bar magnet from its centre. The magnetic field at such a point is proportional to

A

`1/r`

B

1/r^2`

C

1/r^3`

D

none of these

Text Solution

Verified by Experts

The correct Answer is:
D
Promotional Banner

Topper's Solved these Questions

  • PERMANENT MAGNETS

    HC VERMA|Exercise Objective 2|5 Videos
  • PERMANENT MAGNETS

    HC VERMA|Exercise Exercises|25 Videos
  • PERMANENT MAGNETS

    HC VERMA|Exercise Short Answer|11 Videos
  • OPTICAL INSTRUMENTS

    HC VERMA|Exercise Exercises|23 Videos
  • PHOTO ELECTRIC EFFECT AND WAVE PARTICLE DUALITY

    HC VERMA|Exercise Exercise|2 Videos

Similar Questions

Explore conceptually related problems

Let r be the distance of a point on the axis of a magnetic dipole from its centre. The magnetic fiedl at such a point is proportional to

Consider a point on an equatorial axis of a short bar magnet. The direction of magnetic field at that point is

The magnetic field on the axis at a distance z from the centre of the bar magnet would be ?

The field due to a magnet at a distance R~ from the centre of the magnet is proportional

The magnetic field at a point x on the axis of a small bar magnet is equal to the field at a point y on the equator of the same magnet. The ratio of the distances of x and y from the centre of the magnet is

A short bar magnet placed in a horizontal plane has its axis aligned along the magnetic north south direction. Null points are found on the axis of the magnet at 14cm from the centre of the magnet. The earth's magnetic field at the plane is 0*36G and the angle of dip is zero. What is the total magnetic field on the normal bisector of the magnet at the same distance as the null points (i.e. 14 cm) from the centre of the magnet? (At null points, field due to a magnet is equal and apposite to the horizontal component of earth's magnetic field).

A bar magnet is 0.1m long and has poles of strength 50 Am. What is the magnetic B-field at a point on its axis 0.15m from its centre. Also calculate the H-field at that point.