41. |
The Lenz's force acting on a conducting rod is _____
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Answer:
Option (a) |
42. |
Two coils are placed closed to each other. The mutual inductance of the pair of coils depends upon.
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Answer:
Option (b) |
43. |
An electrical bulb of 100W is connected in parallel with an ideal inductance of 1H. This arrangement is connected to 90 V battery through switch on pressing the switch.
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Answer:
Option (c) |
44. |
The north pole of horizontal bar magnet is being brought closer to vertical, conducting plane, along perpendicular direction the induced current in the conducting plane is _____
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Answer:
Option (b) |
45. |
When current is increasing in the coil, the direction of induced emf is _____ the direction of current.
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Answer:
Option (c) |
46. |
The distance between two extreme points of two wings of an Aeroplane is 60 m. It is flying at a speed of 720 km/hr in horizontal direction. If the vertical component of earth's magnetic field at that place is 2 × 10-4 Wb m-2, the induced emf between these two end points is _____ V.
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Answer:
Option (c) |
47. |
A long solenoid has 1000 turns. When a current of 4 A flows through it, the magnetic flux linked with each turns of the solenoid is 4 × 10-3 Wb. The self-inductance of the solenoid is
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Answer:
Option (c) |
48. |
A metal conductor of length 1 m rotates vertically about one of its ends at angular velocity 5 rad s-1 . If horizontal component of the Earth's magnetic field is 0.2 × 10-4 T, then emf developed between the two ends of the conductor is _____.
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Answer:
Option (d) |
49. |
A jet plane is travelling at a speed of 500 m/s. If Earth’s magnetic field at the location has a magnitude of 5 × 10-4 T and the dip angle is 30°, then potential difference developed between the ends of the wing, 20 m long, is _____.
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Answer:
Option (a) |
50. |
An aeroplane with 20 m wing span is flying at 250 ms-1 straight south parallel to the Earth's surface. The Earth’s magnetic field has a horizontal component of √3 × 10-5 T and the dip angle is 60° . The induced emf between the plane tips is _____.
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Answer:
Option (b) |