A uniform magnetic field is restricted within a region of radius r. The magnetic field changes with time at a rate dBdt, Loop 1 of radius R is outside the region of magnetic field as shown in the figure. Then, the emf generated is

                  

(1) zero in loop1 and zero in loop 2

(2) -dBdtπr2 in loop 1 and-dBdtπr2 in loop 2

(3) -dBdtπr2 in loop 1 and zero in loop 2

(4) dBdtπr2 in loop 1 and zero in loop 2

Subtopic:  Faraday's Law & Lenz Law |
 83%
From NCERT
NEET - 2016
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A wire loop is rotated in a magnetic field. The frequency of change of direction of the induced emf is

(1) once per revolution

(2) twice per revolution

(3) four times per revolution

(4) six times per revolution




Subtopic:  Faraday's Law & Lenz Law |
 81%
From NCERT
NEET - 2013
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A coil of resistance 400Ω is placed in a magnetic field. If the magnetic flux ϕ Wb linked with the coil varies with time t (sec) as ϕ=50t2+4.

The current in the coil at t=2s is 

(1) 0.5A                                           

(2) 0.1A

(3) 2A                                               

(4) 1A

Subtopic:  Faraday's Law & Lenz Law |
 90%
From NCERT
NEET - 2012
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A conducting circular loop is placed in a uniform magnetic field 0.04 T with its plane perpendicular to the magnetic field. The radius of the loop starts shrinking at 2 mm/s. The induced emf in the loop when the radius is 2 cm is

1. 3.2 πμV                                      2. 4.8 πμV

3. 0.8 πμV                                      4. 1.6 πμV

Subtopic:  Faraday's Law & Lenz Law |
 73%
From NCERT
NEET - 2009
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a long solenoid has 500 turns. When a current of 2 A is passed through it, the resulting magnetic flux linked with each turn of the solenoid is 4×10-3 Wh.  The self-inductance of the solenoid is 

(a) 2.5 h

(b) 2.0 H 

(c) 1.0 H

(d) 4.0 H

 

Subtopic:  Self - Inductance |
 78%
From NCERT
NEET - 2008
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A circular disc of radius 0.2 m is placed in a uniform magnetic field of induction 1π Wbm2 in such a way that its axis makes an angle of 60° with B. The magnetic flux linked with the disc is 

(a) 0.02 Wb

(b) 0.06 Wb

(c) 0.08 Wb

(d) 0.01 Wb

Subtopic:  Magnetic Flux |
 88%
From NCERT
NEET - 2008
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A coil having number of turns \(N\) and cross-sectional area \(A\) is rotated in a uniform magnetic field \(B\) with an angular velocity \(\omega\). The maximum value of the emf induced in it is:
1. \(\frac{NBA}{\omega}\)
2. \(NBAω\)
3. \(\frac{NBA}{\omega^{2}}\)
4. \(NBAω^{2}\)

Subtopic:  Faraday's Law & Lenz Law |
 89%
From NCERT
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A current-carrying wire is placed below a coil in its plane, with current flowing as shown.

If the current increases –

     

1. no current will be induced in the coil 

2. an anticlockwise current will be induced in the coil 

3. a clockwise current will be induced in the coil 

4. the current induced in the coil will be first anticlockwise and then clockwise

Subtopic:  Faraday's Law & Lenz Law |
 62%
From NCERT
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Average energy stored in a pure inductance L when a current i flows through it, is

1.  Li2                           

2.  2Li2

3.  Li2/4                       

4.  Li2/2

Subtopic:  Self - Inductance |
 88%
From NCERT
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A small magnet is along the axis of a coil and its distance from the coil is 80 cm. In this position the flux linked with the coil are 4 × 105 weber turns. If the coil is displaced 40 cm towards the magnet in 0.08 second, then the induced emf produced in the coil will be -

1.  0.5 mV                       

2.  1 mV 

3.  7 mV                           

4.  3.5 mV

Subtopic:  Faraday's Law & Lenz Law |
From NCERT
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