The number of turns in a coil of wire of fixed radius & length is 600 and its self-inductance is 108 mH. The self-inductance of a coil of 500 turns will be:

1.  74 mH

2.  75 mH

3.  76 mH

4.  77 mH

Subtopic:  Self - Inductance |
 78%
From NCERT
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A magnetic rod is inside a coil of wire which is connected to an ammeter. If the rod is stationary, which of the following statements is true?

1. The rod induces a small current.
2. The rod loses its magnetic field.
3. There is no induced current.
4. None of these.

Subtopic:  Motional emf |
 80%
From NCERT
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A coil of resistance 20 Ω and inductance 5 H has been connected to a 200 V battery. The maximum energy stored in the coil is:

1. 250 J 2. 125 J
3. 500 J 4. 100 J
Subtopic:  Self - Inductance |
 86%
From NCERT
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A magnet is brought towards a coil first (i) speedily (ii) slowly. It can be concluded that the induced e.m.f. and the induced charge in the two cases, will be respectively:

1. More in the first case, more in the first case.
2. More in the first case, equal in both cases.
3. Less in the first case, more in the second case.
4. Less in the first case, equal in both cases.


 

Subtopic:  Faraday's Law & Lenz Law |
 68%
From NCERT
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As shown in the figure, a magnet is moved at a fast speed towards a coil at rest. Due to this induced electromotive force, induced current and induced charge in the coil is E, I, and Q respectively. If the speed of the magnet is doubled, the incorrect statement is:

   

1. E increases
2. I increases
3. Q remains the same
4. Q increases


 

Subtopic:  Faraday's Law & Lenz Law |
 68%
From NCERT
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A metallic ring connected to a rod oscillates freely like a pendulum. If now a magnetic field is applied in the horizontal direction so that the pendulum now swings through the field, the pendulum will:

    

1. Keep oscillating with the old-time period.
2. Keep oscillating with a smaller time period.
3. Keep oscillating with a larger time period.
4. Come to rest very soon.

Subtopic:  Faraday's Law & Lenz Law |
From NCERT
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An aluminium ring B faces an electromagnet A. If the current I through A can be altered, then:

1. whether I increases or decreases, B will not experience any force.
2. if I decreases, 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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A conducting wire is moving towards the right in a magnetic field B. The direction of the induced current in the wire is shown in the figure. The direction of the magnetic field will be:

    

1. In the plane of paper pointing towards the right.
2. In the plane of paper pointing towards the left.
3. Perpendicular to the plane of the paper and downwards.
4. Perpendicular to the plane of the paper and upwards.

Subtopic:  Motional emf |
 64%
From NCERT
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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:  Motional emf |
 65%
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Two circuits have coefficient of mutual induction of 0.09 henry. Average e.m.f. induced in the secondary by a change of current from 0 to 20 ampere in 0.006 second in the primary will be:
1. 120 V
2. 80 V
3. 200 V
4. 300 V

Subtopic:  Mutual Inductance |
 88%
From NCERT
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