An aeroplane in which the distance between the tips of wings is 50 m is flying horizontally with a speed of 360 km/hr over a place where the vertical component of earth magnetic field is 2.0×10-4 weber/m2. The potential difference between the tips of wings would be:

1. 0.1 V  2. 1.0 V
3. 0.2 V  4. 0.01 V

Subtopic:  Motional emf |
 81%
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A coil has 1,000 turns and 500 cm2 as its area. The plane of the coil is placed at right angles to a magnetic field of 2×10-5 Wb/m2. The coil is rotated through  \(180^{0}\)  in 0.2 seconds. The average e.m.f. induced in the coil, in milli-volts, is:

1. 5 2. 10
3. 15 4. 20
Subtopic:  Faraday's Law & Lenz Law |
 58%
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The current in a coil varies with time t as I = 3t2+ 2t. If the inductance of coil be 10 mH, the value of induced e.m.f. at \(t=2~\mathrm{s}\) will be:
1. \(0.14~\mathrm{V}\)
2. \(0.12~\mathrm{V}\)
3. \(0.11~\mathrm{V}\)
4. \(0.13~\mathrm{V}\)

Subtopic:  Faraday's Law & Lenz Law |
 87%
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A coil of a mean area of 500 cm2 and 1000 turns is held perpendicular to a uniform field of 0.4 Gauss. The coil is turned through 180° in 110 seconds. The average induced e.m.f. is:

1. 0.04 V 2. 0.4 V
3. 4 V 4. 0.004 V
Subtopic:  Faraday's Law & Lenz Law |
 60%
From NCERT
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The network shown in figure is a part of a complete circuit. If at a certain instant, the current 'i' is 10 A and is increasing at the rate of 4×103 A/sec, then VA-VB is:

  

1. 6 V 2. -6 V
3. 10 V 4. -10 V
Subtopic:  LR circuit |
 66%
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A coil having an area A0 is placed in a magnetic field which changes from B0 to 4B0 in time interval t. The average EMF induced in the coil will be:

1. 3A0B0t

2. 4A0B0t

3. 3B0A0t

4. 4B0A0t

Subtopic:  Faraday's Law & Lenz Law |
 88%
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A rod AB of length l is moving with constant speed v in a uniform magnetic field on a conducting U-shaped wire as shown. If the rate of loss of heat energy across resistance R is Q, then the force needed parallel to velocity to keep rod moving with constant speed v is:

                

1.  Qv

2.  Qv

3.  Q2v

4.  Q2v

Subtopic:  Motional emf |
 64%
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A coil is wound of a frame of rectangular cross-section. If the linear dimensions of the frame are doubled and the number of turns per unit length of the coil remains the same, then the self inductance increases by a factor of:

1. 6 2. 12
3. 8 4. 16
Subtopic:  Self - Inductance |
 74%
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I:  A small magnet takes a longer time in falling into a hollow metallic tube without touching the wall.
II: There is an opposition to motion due to the production of eddy currents in a metallic tube.

Choose the correct option for the above statements:

1. Both I and II are true and II is the correct explanation for I.
2. Both I and II are true and II is not the correct explanation for I.
3. I is true but II is false.
4. I is false but II is true.
Subtopic:  Eddy Current |
 80%
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An electric potential difference will be induced between the ends of the conductor shown in the diagram when the conductor moves in the direction of:

    

1. P
2. Q
3. L
4. M

Subtopic:  Motional emf |
 70%
From NCERT
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