The magnetic dipoles in a diamagnetic material are represented, for three situations. The three situations differ in magnitude if a magnetic field is applied to the material. In which situation the magnetization of the material is the greatest:
            

1. \(A\) 2. \(B\)
3. \(C\) 4. Equal in \(A,B\) and \(C\)

Subtopic:  Magnetization & Magnetic Intensity |
 52%
Level 3: 35%-60%
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Two bar magnets are held together tightly in a vibration magnetometer. When their like poles are together, they make \(20\) oscillations per minute and when their unlike poles are together, they make \(8\) oscillations per minute. The ratio of the magnetic dipole moments of two bar magnets is:
1. \(29:21\)
2. \(6:15\)
3. \(1:6\)
4. \(25:4\)

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 62%
Level 2: 60%+
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The magnetic susceptibility \(\chi\) of a diamagnetic material depends on absolute temperature \(T\) as:
1. \(\chi \propto T\)
2. \(\chi \propto \frac{1}{T}\)
3. \(\chi \propto T^0\)
4. \(\chi \propto \frac{1}{\sqrt{T}}\)

Subtopic:  Magnetic Materials |
 76%
Level 2: 60%+
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The magnetic lines of force inside a bar magnet are:

1. from the south to the north pole.
2. from the north to the south pole.
3. not present.
4. intersecting each other.

Subtopic:  Magnetic Field & Field Lines |
 86%
Level 1: 80%+
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The material which is used to make permanent magnet has:

1. High retentivity, low coercivity
2. Low retentivity, low coercivity
3. Low retentivity, high coercivity
4. High retentivity, high coercivity

Subtopic:  Magnetic Materials |
 74%
Level 2: 60%+
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Which of the following is not dimensionless?
(where symbols stand for their usual meanings in magnetism)
1. \(\frac{I}{H}\)
2. \(\frac{B}{\mu_0H}\)
3. \(\mu_r\)
4. \(\frac{\mu_r B}{H}\)

Subtopic:  Magnetization & Magnetic Intensity |
 52%
Level 3: 35%-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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Due to a small magnet, the intensity at a distance \(x\) in the end-on position is \(9~\text{gauss}\). What will be the intensity at a distance \(\dfrac{x}{2}\) on equatorial position?
1. \(9~\text{gauss}\) 2. \(4~\text{gauss}\)
3. \(36~\text{gauss}\) 4. \(4.5~\text{gauss}\)
Subtopic:  Bar Magnet |
 74%
Level 2: 60%+
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