Home
Class 12
PHYSICS
A magnetic dipole is under the influence...

A magnetic dipole is under the influence of two magnetic fields. The angle between the field directions is `60^@,` and one of the fields has a magnitude of `1.2 xx 10^(-2)T.` If the dipole coines to stable equilibrium at an angle of `15^@` with this field, what is the magnitude of the other field?

Promotional Banner

Topper's Solved these Questions

  • MAGNETISM AND MATTER

    NCERT BANGLISH|Exercise Exercises|17 Videos
  • ELECTROSTATIC POTENTIAL AND CAPACITANCE

    NCERT BANGLISH|Exercise ADDITIONAL EXERCISES|1 Videos
  • MOVING CHARGES AND MAGNETISM

    NCERT BANGLISH|Exercise ADDITIONAL EXERCISES|16 Videos

Similar Questions

Explore conceptually related problems

A magnetic dipole is under the influence fof two magnetic fields .The influence of two magnetic fields . The angle between the field directions us 60^(@) and one of the fields has a magnitude of 1.2xx10^(-2)T . If the the dipole comes to stable equilibrium at an angle of 15^(@) with this field , what is the magnitude of the other field ?

Define magnitude and direction vecB in a magnetic field.

If in air medium the amplitude of the electric field is 5 xx 10^-4v//m , then what will be the amplitude of the magnetic field?

The force on a charged particle is moving in a magnetic field is maximum when the angle between direction of motion and field is-

An electric dipole is held in a uniform electric field. The dipole is aligned parallel to the field. Find the work done in rotating it through the angle of 180^(@) .

How is the horizontal component of earth's magnetic field related with the total intensity of earth's magnetic field and the angle of dip ?

A dipole with a dipole moment of magnitude is in stable equilibrium in an electrostatic field of magnitude E. Find the work done in rotating this dipole to its position of unstable equilibrium?

A magnetised needle of magnetic moment 4.8xx10^(-2)JT^(-1) is placed at 30^@ with the direction of uniform magnetic field of magnitude 3xx10^(-2)T . Calculate the torque acting on the needle.

A magnetic needle is placed in a uniform magnetic field and is aligned with the field. The needle is now rotated by an angle of 60^(@) and the work done is W. The torque on the magnetic needle at this position is