A metallic ring is attached to the wall of a room. When the north pole of a magnet is brought near to it, the induced current in the ring will be:

   

1.  first clockwise and then anticlockwise.
2.  in the clockwise direction.
3.  in the anticlockwise direction.
4.  first anticlockwise and then clockwise.

Subtopic:  Faraday's Law & Lenz Law |
 62%
From NCERT
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A copper ring is held horizontally and a bar magnet is dropped through the ring with its length along the axis of the ring. The acceleration of the falling magnet while it is passing through the ring is-

(1) Equal to that due to gravity

(2) Less than that due to gravity

(3) More than that due to gravity

(4) Depends on the diameter of the ring and the length of the magnet

Subtopic:  Faraday's Law & Lenz Law |
 78%
From NCERT
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A coil having 500 square loops each of the side 10 cm is placed normal to a magnetic field which increases at the rate of 1.0 tesla/second. The induced e.m.f. in volts is 

(1) 0.1

(2) 0.5

(3) 1

(4) 5

Subtopic:  Faraday's Law & Lenz Law |
 73%
From NCERT
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The magnetic field in a coil of 100 turns and 40 square cm area is increased from 1 Tesla to 6 Tesla in 2 second. The magnetic field is perpendicular to the coil. The e.m.f. generated in it is 

(1) 104 V

(2) 1.2 V

(3) 1.0 V

(4) 10–2 V

Subtopic:  Faraday's Law & Lenz Law |
 76%
From NCERT
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An aluminum ring B faces an electromagnet A. The current I through A can be altered. Then :

 

(1) Whether I increases or decreases, B will not experience any force

(2) If I decrease, A will repel B

(3) If I increases, A will attract B

(4) If I increases, A will repel B

Subtopic:  Faraday's Law & Lenz Law |
 69%
From NCERT
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Two rails of a railway track insulated from each other and the ground are connected to a milli voltmeter. What is the reading of voltmeter, when a train travels with a speed of \(180\) km/hr along the track.
(Given that the vertical component of earth's magnetic field is \(0.2\times 10^{-4}\) weber/m2 and the rails are separated by \(1\) m) 
1. \(10^{-2}\) V
2. \(10^{-4}\) V
3. \(10^{-3}\) V
4. \(1\) V

Subtopic:  Motional emf |
 77%
From NCERT
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A conducting square loop of side L and resistance R moves in its plane with a uniform velocity v perpendicular to one of its sides. A magnetic induction B constant in time and space, pointing perpendicular and into the plane of the loop exists everywhere. The current induced in the loop is:

    

1. BlvR clockwise
2. BlvR anticlockwise
3. 2BlvR anticlockwise
4. Zero

Subtopic:  Motional emf |
 58%
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The magnitude of the earth’s magnetic field at a place is B0 and the angle of dip is δ. A horizontal conductor of length l lying along the magnetic north-south moves eastwards with a velocity v. The emf induced across the conductor is 

1. Zero

2. B0lv sinδ

3. B0lv

4. B0lv cosδ

Subtopic:  Faraday's Law & Lenz Law |
 63%
From NCERT
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A coil and a bulb are connected in series with a dc source, a soft iron core is then inserted in the coil. Then 

(1) Intensity of the bulb remains the same

(2) Intensity of the bulb decreases

(3) Intensity of the bulb increases

(4) The bulb ceases to glow

Subtopic:  Self - Inductance |
From NCERT
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In an LR-circuit, the time constant is that time in which current grows from zero to the value (where I0 is the steady-state current) 

(1) 0.63 I0

(2) 0.50 I0

(3) 0.37 I0

(4) I0

Subtopic:  LR circuit |
 76%
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