Faraday’s law, Lenz’s law and induced emf - Question Bank
1. A magnetic flux of 0.1 Wb passes through a coil of 200 turns. If the flux is reduced to zero in 0.01 seconds, the average induced emf is:
2. According to Lenz's Law, the induced current creates a magnetic field that:
3. If the number of turns in a coil is increased, what happens to the induced emf for the same rate of change of flux?
4. Which of the following is NOT a method to induce emf in a coil?
5. The induced emf is proportional to the rate of change of magnetic flux. This statement is the essence of:
6. When a coil is rotated in a uniform magnetic field, the induced emf varies sinusoidally with:
7. A metal rod of length 1 m is moving perpendicular to a magnetic field of 0.5 T with a velocity of 10 m/s. The induced emf across the ends of the rod is:
8. If the rate of change of magnetic flux is uniform, the induced emf is:
9. The phenomenon of electromagnetic induction was discovered by:
10. A conductor of length L moves with velocity v perpendicular to a magnetic field B. The induced emf is:
11. If the magnetic field through a coil is reversed, the induced emf will:
12. Which quantity is conserved if Lenz's law is violated?
13. Lenz's law is most useful for determining:
14. The magnetic flux through a closed loop is given by Φ(t) = 3t² + 2t + 1 Weber. The induced emf at t = 2 seconds is:
15. When a conductor moves in a non-uniform magnetic field, an emf is induced. This is an example of:
16. Which of the following is a condition for electromagnetic induction?
17. If the area of a rectangular loop in a uniform magnetic field is halved, the magnetic flux through the loop will:
18. The unit of magnetic flux linkage is:
19. According to Lenz's law, the induced current opposes the change in magnetic flux. This opposition requires:
20. A coil has 50 turns and the flux through it changes from 0.2 Wb to 0.6 Wb in 0.05 seconds. The magnitude of the induced emf is:
21. If a loop of wire is moved such that it cuts magnetic field lines, an emf is induced across the ends of the loop. This is known as:
22. Which of the following statements about magnetic flux is correct?
23. A coil is connected to a battery. If the resistance of the coil is suddenly increased, the induced emf in the coil will be:
24. The direction of induced current in a closed circuit is such that it opposes the very cause which produces it. This is the statement of:
25. When a magnet is pushed into a coil connected to a galvanometer, the galvanometer needle deflects. If the magnet is pulled out, the needle will:
26. The self-inductance of a coil is defined as the ratio of:
27. A current-carrying wire is moved perpendicular to a magnetic field. Will there be an induced emf in the wire?
28. If the rate of change of magnetic flux through a coil of N turns is doubled, the induced emf will be:
29. Which of the following is a direct consequence of Faraday's Law of Induction?
30. A circular coil is placed in a uniform magnetic field. If the coil is rotated about an axis lying in its plane, the induced emf will be:
31. In the equation E = -N (dΦ/dt), if the magnetic flux is changing at a constant rate, the induced emf will be:
32. What is the formula for magnetic flux (Φ) through a surface area A in a uniform magnetic field B?
33. A change in magnetic flux is essential for electromagnetic induction. This change can be achieved by:
34. The unit of magnetic flux density (magnetic field strength) is:
35. If a conducting loop is suddenly moved into a region of uniform magnetic field, Lenz's law states that the induced current will flow in a direction that:
36. A square loop of side 'a' is placed in a magnetic field B. If the loop is pulled out of the field at a constant speed v, what is the rate of change of flux?
37. The induced emf can be generated by:
38. Consider a solenoid. If the current through the solenoid is increased, the magnetic flux through a coil placed inside the solenoid will:
39. A bar magnet is dropped through a copper ring. What will happen to the magnet as it falls?
40. The induced emf in a circuit is given by E = -N (dΦ/dt). What does the negative sign signify?
41. If the magnetic flux through a loop decreases, the induced current will flow in a direction that creates a magnetic field:
42. Which of the following scenarios will NOT induce an emf in a coil?
43. The unit of magnetic flux is:
44. When a magnetic pole is moved towards a metallic ring, the induced current in the ring will:
45. A coil with 100 turns has a magnetic flux of 0.05 Wb passing through it. If this flux is reduced to 0.01 Wb in 0.1 seconds, what is the average induced emf?
46. If the magnetic flux through a coil is changing at a rate of 5 Wb/s, what is the magnitude of the induced emf?
47. Lenz's law helps determine which aspect of the induced current?
48. Lenz's law is a consequence of the law of conservation of:
49. According to Faraday's second law of electromagnetic induction, the magnitude of the induced emf in a circuit is directly proportional to:
50. Faraday's first law of electromagnetic induction states that: