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
0.06 m
B
0.08 m
C
0.32 m
D
0.18 m
Text Solution
Verified by Experts
The correct Answer is:
D
Topper's Solved these Questions
MAGNETISM
ERRORLESS |Exercise Magnet and it s Properties|15 Videos
MAGNETISM
ERRORLESS |Exercise Earth Magnetism|8 Videos
MAGNETIC EFFECT OF CURRENT
ERRORLESS |Exercise Exercise|394 Videos
RAY OPTICS
ERRORLESS |Exercise SET|25 Videos
Similar Questions
Explore conceptually related problems
Two short magnet having magnetic moment in the ratio 27:8 , when placed on the opposite sides of a deflection magnetometer, produce no deflection. If the distance of the weaker magnet is 0.12m from the centre of deflection magnetometer, the distance of the stronger magnet from the centre is
Two short magnets having magnetic moments in the ratio 8:1 , when placed on opposite sides of a deflection magnetometer produce no deflection. If distance of stronger magnet from the centre of deflection magnetometer is 6cm , what is the distance of weaker magnet from the centre?
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 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
The field due to a magnet at a distance R~ from the centre of the magnet is proportional
A short bar magnet has a magnetic moment of 0*48JT^-1 . Give the direction and magnitude of the magnetic field produced by the magnet at a distance of 10cm from the centre of the magnet on (i) the axis (ii) the equatorial line (normal bisector) of the magnet.