Two identical short bar magnets, each having magnetic moment M, are placed a distance of 2d apart with axes perpendicular to each other in a horizontal plane. The magnetic induction at a point midway between them is

1.  μ04π(2) Md3           2.  μ04π(3) Md3

3.  (2μ04π)Md3                 4. μ04π(5) Md3

Subtopic:  Bar Magnet |
 56%
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If the angular momentum of an electron is J then the magnitude of the magnetic moment will be

1. eJm                           
2. eJ2m
3. ej.2m                         
4. 2meJ

Subtopic:  Magnetic Moment |
 85%
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A superconductor exhibits perfect :

1. Ferrimagnetism              

2. Ferromagnetism

3. Paramagnetism              

4. Diamagnetism

Subtopic:  Magnetic Materials |
 54%
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Among the following properties describing diamagnetism identify  the property that is wrongly stated

1. Diamagnetic material do not have permanent magnetic moment

2. Diamagnetism is explained in terms of electromagnetic induction

3. Diamagnetic materials have a small positive susceptibility

4. The magnetic moment of individual electrons neutralize each other

Subtopic:  Magnetic Materials |
 78%
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The true value of angle of dip at a place is 60o, the apparent dip in a plane inclined at an angle of 30o with magnetic meridian is

1. tan-112

2. tan-12

3. tan-123

4. None of these

 70%
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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

 60%
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If θ1 and θ2 be the apparent angles of dip observed in two vertical planes at right angles to each other, then the true angle of dip θ is given by 

1. cot2θ=cot2θ1+cot2θ2

2. tan2θ=tan2θ1+ tan2θ2

3. cot2θ=cot2θ1-tan2θ2

4. tan2θ=tan2θ1-tan2θ2

 79%
NEET - 2017
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A bar magnet is hung by a thin cotton thread in a uniform horizontal magnetic field and is in the equilibrium state. The energy required to rotate it by \(60^{\circ}\) is \(W\)Now the torque required to keep the magnet in this new position is:
1. \(\frac{W}{\sqrt{3}}\) 
2. \(\sqrt{3} W\)
3. \(\frac{\sqrt{3} W}{2}\) 
4. \(\frac{2 W}{\sqrt{3}}\)

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 79%
From NCERT
NEET - 2016
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The magnetic susceptibility is negative for

1. paramagnetic material only

2. ferromagnetic material only

3. paramagnetic and ferromagnetic materials

4. diamagnetic material only

Subtopic:  Magnetic Materials |
 87%
From NCERT
NEET - 2016
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The following figures show the arrangement of bar magnets in different configurations. Each magnet has magnetic dipole. Which configuration has the highest net magnetic dipole moment? 

1. 2.
3. 4.
Subtopic:  Bar Magnet |
 69%
From NCERT
NEET - 2014
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