A bar magnet has coercivity 4×103 Am-1. It is desired to demagnetize it by inserting it inside a solenoid 12 cm long and having 60 turns. The current that should be sent through the solenoid is

1. 2 A                            2. 4 A

3. 6 A                            4. 8 A

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For substances hysteresis (B - H) curves are given as shown in figure. For making temporary magnet which of the following is best?

1.  2.
3. 4.
 70%
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The variation of magnetic susceptibility (χ) with temperature for a diamagnetic substance is best represented by

1. 

2. 

3. 

4. 

Subtopic:  Magnetic Materials |
 63%
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The variation of magnetic susceptibility (χ) with absolute temperature T for a ferromagnetic material is

1.                           2. 

3.                           4. 

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The relative permeability (μr) of a ferromagnetic substance varies with temperature (T) according to the curve:

   

1. A                              

2. B

3. C                              

4. D

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Some equipotential surfaces of the magnetic scalar potential are shown in the figure. The magnetic field at a point in the region is: (X-axis read in cm)                                                                   

1. 10-4 T                        

2. 2×10-4 T

3. 0.5×10-4 T                

4. None of these

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 59%
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The figure illustrates how B, the flux density, inside a sample of unmagnetized ferromagnetic material varies with B0, the magnetic flux density, in which the sample is kept. For the sample to be suitable for making a permanent magnet:

1. OQ should be large and OR should be small

2. OQ and OR should both be large

3. OQ should be small and OR should be large

4. OQ and OR should both be small

 75%
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The variation of the intensity of magnetisation (I) with respect to the magnetising field (H) in a diamagnetic substance is described by the graph

1. OD                            2. OC

3. OB                            4. OA

Subtopic:  Magnetization & Magnetic Intensity |
 71%
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A current-carrying loop is placed in a uniform magnetic field in four different orientations, I, II, III & IV. The decreasing order of potential energy is:

1. I > III > II > IV 2. I > II >III > IV
3. I > IV > II > III 4. III > IV > I > II

 
Subtopic:  Analogy between Electrostatics & Magnetostatics |
 65%
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A 250-turn rectangular coil with a length of 2.1 cm and a width of 1.25 cm carries 85 \(\mu\)A and is subjected to a magnetic field with a strength of 0.85 T. What is the work done to rotate the coil by 180 degrees against the torque?

1. 9.1 μJ

2. 4.55 μJ

3. 2.3 μJ

4. 1.5 μJ

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 59%
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