Home
Class 12
PHYSICS
In tan A position two short bar magnets ...

In tan A position two short bar magnets of magnetic moments in the ratio of ` 1 : sqrt3` aer placed at the same distnace respectively. If the definection produced for the first magnet be `30^(@),` then what will be defication for the second magnet ?

Text Solution

AI Generated Solution

To solve the problem, we will use the relationship between the magnetic moment of the bar magnets and the angle of deflection they produce. The key relationship we will use is that the magnetic moment (M) is directly proportional to the tangent of the angle of deflection (θ). ### Step-by-Step Solution: 1. **Understand the Given Ratios**: - The magnetic moments of the two magnets are in the ratio \( M_1 : M_2 = 1 : \sqrt{3} \). - This means we can express them as \( M_1 = k \) and \( M_2 = k\sqrt{3} \), where \( k \) is a constant. ...
Promotional Banner

Similar Questions

Explore conceptually related problems

In tan A position two short bar magnets of magnetic moments in ratio of sqrt3 : 1 are placed at same distance respectively . If the deflection produced for the first magnet be 60^(@) then what will be deflection for second magnet ?

A bar magnet of magnetic moment 80 units is cut into two halves of equal length, the magnetic moment of each half will be:

A short bar magnet has a magnetic moment of 0.39 J "T"^(-1) . The magnitude and direction of the magnetic field produced by the magnet at a distance of 20 cm from the centre of the magnet on the equatorial line of the magnet is

Two short magnets having magnetic moments in the ratio 27:8 , when placed on opposite sides of a deflection magnetometer produce no deflection. If the distance of weaker magnet is 0*12m from the centre of deflection magnometer, what is the distance of stronger magnet from the centre?

A short bar magnet has a magnetic moment of 0.4 JT^(-1) The magnitude of the magnetic field (ingauss) produced by the magnet at a distance of 20 cm from the centre of the magnet on the equatorial line of the magnet is

A bar magnet of magnetic moment 0.4 Am^(2) is placed in a uniform magnetic field of induction 5 xx10^(-2) tesla. The angle between the magnetic induction and the magnetic moment is 30^(@) . The torque acting on the magnet is

A short bar magnet has a magnetic moment of 0.65TJ ^(-1) , then the magnitude and direction of the magnetic field produced by the magnet at a distance 8 cm from the centre of magnet on the axis is