Correct relation between magnetic field \(B,\) magnetic intensity \(H,\) and intensity of magnetization \(I\) is:
1. \( B=\mu_{0}\left(H+I\right)\)
2. \(I=\mu_0\left(H+B\right)\)
3. \(H=\mu_0\left(I+B\right)\)
4. \(B=2H\left(I+\mu_0\right)\)
Subtopic:  Magnetization & Magnetic Intensity |
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A rod is made of a material whose magnetic susceptibility is \(499.\) If the permeability of free space is \(4 \pi \times 10^{-7}~ \text{H} /\text{m} \text {, }\)the absolute permeability of the material of the rod is:
1. \(3 \pi \times 10^{-4}~ \text{H} /\text{m}\) 2. \(\pi \times 10^{-4}~ \text{H} /\text{m}\)
3. \(2 \pi \times 10^{-4} ~ \text{H} /\text{m}\) 4. \(4 \pi \times 10^{-4}~ \text{H} /\text{m}\)
Subtopic:  Magnetization & Magnetic Intensity |
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The dipole moment of each molecule of a paramagnetic gas is \(1.5\times10^{-23}~A-m^{2}.\) The temperature of the gas is 27°C and the number of molecules per unit volume in it are \(2\times10^{26}~m^{-3}.\) The maximum possible intensity of magnetization in the gas will be:
1. \(3\times10^{3}~A/m\)
2. \(4\times10^{-3}~A/m\)
3. \(5\times10^{5}~A/m\)
4. \(6\times10^{-4}~A/m\)

Subtopic:  Magnetization & Magnetic Intensity |
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A paramagnetic substance of susceptibility \(3{\times}10^{-4} \) is placed in a magnetic field of \(4\times{10}^{-4}~\text{A-m}^{-1}.\) The intensity of magnetization in the units of \(\text{A-m}^{-1}\) is:
1. \(1.33\times10^8\)
2. \(0.75\times10^{-8}\)
3. \(12\times10^{-8}\)
4. \(14\times10^{-8}\)
Subtopic:  Magnetization & Magnetic Intensity |
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What happens, when a magnetic substance is heated ?

1. It loses its magnetism 2. It becomes a strong magnet
3. Does not effect the magnetism 4. Either (2) and (3)

Subtopic:  Magnetization & Magnetic Intensity |
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Of the following Fig., the lines of magnetic induction due to a magnet SN, are given by

1. 2.
3. 4.

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The coercivity of a bar magnet is 100A/m. It is to be demagnetised by placing it inside a solenoid of length 100 cm and number of turns 50. The current flowing the solenoid will be :-

1. 4A

2. 2A

3. 1A

4. zero

Subtopic:  Magnetization & Magnetic Intensity |
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When the current through an iron-cored electromagnet is gradually increased, it is observed that there are crackling sounds emerging from the interior of the magnet. These are due to:
1. thermal expansion
2. magnetisation and the movement of domains
3. electromagnetic radiation
4. electrical charges in the magnet
Subtopic:  Magnetization & Magnetic Intensity |
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A steel bar magnet has a magnetic moment of \(2.5~\text{A-m}^2\) and a mass of \(6.6\times 10^{-2}~\text{kg}. \) If the density of the material is \(6.6\times 10^{3}~\text{kg-m}^{-3}, \) the intensity of magnetisation of the magnet is:
1. \( 2.5 \times 10^5~ \text{A-} \text{m}^{-1} \)
2. \( 2.5 \times 10^{-5} \text{A-} \text{m}^{-1} \)
3. \( 1.25 \times 10^5 \text{A-} \text{m}^{-1} \)
4. \( 1.25 \times 10^{-5} \text{A-} \text{m}^{-1} \)
Subtopic:  Magnetization & Magnetic Intensity |
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