Curie temperature is the temperature above which from Physics Ma

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 Multiple Choice QuestionsMultiple Choice Questions

91.

When a ferromagnetic material is heated above its Curie temperature it

  • gets demagnetised

  • becomes diamagnetic

  • behaves like a paramagnetic substance

  • remains unaffected


92.

A hydrogen atom is paramagnetic. A hydrogen molecule is

  • diamagnetic

  • paramagnetic

  • ferromagnetic

  • none of these


93.

A bar magnet of magnetic moment M is placed in the magnetic field B. The Torque acting on the magnet is :

  • M × B

  • M - B

  • 12M × B

  • M + B


94.

At a certain place, magnitude of horizontal and vertical components of a magnetic field are same. The total intensity of magnetic field at that place will be

  • H

  • H2

  • 2H

  • 2  H


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95.

The magnetic lines of force inside a bar magnet

  • are from north-pole to south-pole of the magnet

  • do not exist

  • depend upon the area of cross-section of the bar magnet

  • are from south-pole to north-pole of the magnet


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96.

Curie temperature is the temperature above which

  • a ferromagnetic material becomes paramagnetic

  • a paramagnetic material becomes diamagnetic

  • a ferromagnetic material becomes diamagnetic

  • a paramagnetic material becomes ferromagnetic


A.

a ferromagnetic material becomes paramagnetic

At Curie temperature, a ferromagnetic substance transits into paramagnetic substance.


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97.

Which one of the following is ferromagnetic?

  • Gold

  • Wood

  • Manganese

  • Nickle


98.

If the earth field induction at a place is 0.36 gauss and the angle of dip is 60°, the horizontal and vertical components of the field will be respectively

  • 0.18 gauss, 0.18 3 gauss

  • 0.98 gauss, 0.9 2 gauss

  • 1.08 gauss, and 1.08 3 gauss

  • 1.07 gauss, 0.11 2 gauss


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99.

Magnetic field intensify at the centre of coil of 50 turns, 0.5 m radius and carrying a current of 2A, is

  • 5x 10-5 T

  • 3 x 10-5 T

  • 1.25 × 10-4 T

  • 0.5 x 10-5 T


100.

A straight conductor of length 0.4 m is moved with a speed of 7 m/s perpendicular to the magnetic field of intensity of 0.9 Wb/m2. The induced emf across the conductor will be

  • 7.25 V

  • 5.54 V

  • 1.25 V

  • 2.52 V


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