A circular loop carrying a current is replaced by an equivalent magnetic dipole. A point on the axis of the loop is in:
1. | end-on position | 2. | broadside-on position |
3. | both | 4. | none |
a. | P1 and P2 |
b. | Q1 and Q2 |
c. | P1 and Q1 |
d. | P2 and Q2 |
Choose the correct option:
1. (a), (b)
2. (b), (c)
3. (c), (d)
4. (a), (d)
Statement I: | The magnetic field of a circular loop at very far away point on the axial line varies with distance as like that of a magnetic dipole. |
Statement II: | The magnetic field due to magnetic dipole varies inversely with the square of the distance from the centre on the axial line. |
1. | Statement I is correct and Statement II is incorrect. |
2. | Statement I is incorrect and Statement II is correct. |
3. | Both Statement I and Statement II are correct. |
4. | Both Statement I and Statement II are incorrect. |
A short bar magnet of magnet moment is placed in a uniform magnetic field of . The magnet is in stable equilibrium when the potential energy is:
1. J
2. J
3. zero
4. J
1. | 2. | ||
3. | 4. |
When a bar magnet is rotated from its position parallel to the external magnetic field T to a direction opposite to the field (anti-parallel), the work done is J.
Then, the maximum torque experienced by this magnet in this field is:
1. N-m
2. N-m
3. N-m
4. N-m
1. | 2. | ||
3. | 4. |
Three identical bar magnets, each having a dipole moment are placed at the origin—oriented along the axis, the axis, and the axis respectively. The net magnetic moment of the dipoles has the magnitude:
1.
2.
3.
4. zero
1. | 2. | ||
3. | 4. |
The following figures show the arrangement of bar magnets in different configurations. Each magnet has a magnetic dipole. Which configuration has the highest net magnetic dipole moment?
1. | 2. | ||
3. | 4. |