An electric cable is carrying current from north to south. The position of the null point from the cable is:

1. Vertically upward

2. Vertically downward

3. Eastward

4. Nowhere

Level 3: 35%-60%
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A substance is placed in an external magnetic field. If the direction of induced dipole moment is opposite to the direction of the applied magnetic field, then the substance may be

1. Paramagnetic

2. Diamagnetic

3. Ferromagnetic

4. Both (1) & (3)

Subtopic:  Magnetic Materials |
 79%
Level 2: 60%+
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If Bo is magnetic flux density in vacuum produced by a magnetising force and magnetic flux density produced by the magnetisation of a material due to the same magnetising force is Bm, then the total magnetic flux density in the material is :

1.B+Bm
2.B-Bm
3.BBm
4.BmB

Subtopic:  Magnetization & Magnetic Intensity |
 67%
Level 2: 60%+
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Which of the following graphs represents the correct variation of the intensity of magnetisation (I) with the intensity of the magnetising field (H) in a ferromagnetic substance?

1.  2.
3. 4.

 58%
Level 3: 35%-60%
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The magnetic susceptibility of a substance is -0.0002 at room temperature. If this substance is kept in a uniform external magnetic field B, the net field inside the substance becomes B', then :

1. B'>B

2. B'<B

3. B' = B

4. B' = 0

Subtopic:  Magnetization & Magnetic Intensity |
 69%
Level 2: 60%+
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The magnetic moment of a short dipole is \(100\) A-m2. The magnetic induction in vacuum at \(1\) m from the dipole on the axis of the dipole is:

1. \(2\times10^{-5}~\text{T}\) 2. \(10^{-5}~\text{T}\)
3. \(2~\mu\text{T}\) 4. \(1~\mu\text{T}\)
Subtopic:  Analogy between Electrostatics & Magnetostatics |
 78%
Level 2: 60%+
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The magnetic moment of a magnet \((10 ~\text{cm}\times 4~\text{cm}\times1~\text{cm})\) is \(4 ~\text{Am}^2\). Its intensity of magnetisation is:
1. \(10^{3}~\text{A/m}\)
2. \(10^{2}~\text{A/m}\)
3. \(10^{5}~\text{A/m}\)
4. \(10^{4}~\text{A/m}\)

Subtopic:  Magnetization & Magnetic Intensity |
 80%
Level 1: 80%+
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S.I. unit of intensity of magnetization is:

1. Ampere-metre 2. Ampere-metre2
3. Ampere/metre 4. Ampere/metre2
Subtopic:  Magnetization & Magnetic Intensity |
 66%
Level 2: 60%+
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A ferromagnetic material is placed in an external magnetic field. The magnetic domains:

1. must increase in size.
2. must decrease in size.
3. may increase or decrease in size.
4. disappear.

Subtopic:  Magnetic Materials |
 52%
Level 3: 35%-60%
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If a magnetic dipole of dipole moment μ is rotated through an angle θ with respect to the direction of the magnetic field B, then work done is :

1. μBsinθ

2. μB(1-sinθ)

3. μBcosθ

4. μB(1-cosθ)

Subtopic:  Analogy between Electrostatics & Magnetostatics | Bar Magnet |
 77%
Level 2: 60%+
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