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Which of the following is the correct representation of magnetic field lines?

1. (g), (c) 2. (d), (f)
3. (a), (b) 4. (c), (e)

Subtopic:  Magnetic Field & Field Lines |
 87%
From NCERT
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A solenoid has a core of material with relative permeability \(400.\) The windings of the solenoid are insulated from the core and carry a current of \(2~\text A.\) If the number of turns is \(1000\) per metre, the magnetic field intensity \(H\) is:
1. \(2\times10^2~\text{A/m}\)
2. \(2\times10^3~\text{A/m}\)
3. \(2~\text{A/m}\) 
4. \(20~\text{A/m}\)

Subtopic:  Magnetization & Magnetic Intensity |
 78%
From NCERT
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If the magnetic dipole moment of an atom of diamagnetic material, paramagnetic material and ferromagnetic material are denoted by \(\mu_d,~\mu_p,~\text{and}~\mu_f\) respectively, then:
1. \(\mu_p= 0 ~\text{and}~\mu_f \ne0\)
2. \(\mu_d\neq 0 ~\text{and}~\mu_p=0\)
3. \(\mu_d\ne 0 ~\text{and}~\mu_f \ne0\)
4. \(\mu_d= 0 ~\text{and}~\mu_p \ne0\)

Subtopic:  Magnetic Materials |
 80%
From NCERT
AIPMT - 2005
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A magnetic needle suspended parallel to a magnetic field requires \(\sqrt{3}~\text{J}\) of work to turn it through \(60^\circ\). The torque needed to maintain the needle in this position will be:
1. \(3\) N-m
2. \(\sqrt{3} \) N-m
3. \(\frac32\) N-m
4. \(2\sqrt{3}\) N-m

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 72%
From NCERT
AIPMT - 2012
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A long, straight wire carries a current \(i.\) The magnetizing field intensity \(H\) is measured at a point \(P\) close to the wire. A long, cylindrical iron rod is brought close to the wire so that the point \(P\) is at the center of the rod. The value of \(H\) at \(P\) will:
1. increase many times 2. decrease many times
3. remain almost constant 4. become zero
Subtopic:  Magnetic Materials |
 52%
From NCERT
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The magnetic field at the centre of a circular loop of area \(A\) is \(B.\) The magnetic moment of the loop is:

1. \(\dfrac{BA^2}{\mu_0\pi}\) 2. \(\dfrac{BA\sqrt A}{\mu_0}\)
3. \(\dfrac{BA\sqrt A}{\mu_0\pi}\) 4. \(\dfrac{2BA\sqrt A}{\mu_0\sqrt\pi}\)
Subtopic:  Analogy between Electrostatics & Magnetostatics |
 77%
From NCERT
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A current-carrying loop placed in a magnetic field behaves like a:
1. magnetic dipole
2. magnetic substance
3. magnetic pole
4. all are true

Subtopic:  Analogy between Electrostatics & Magnetostatics |
 55%
From NCERT
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The magnetic field, at a point \(10\) cm away, from a short bar magnet is \(3 \times 10^{-4}\) T, when the magnet is placed in an end-on position. If the magnet is in a broadside-on position, the field will be: 
1. \(6 \times 10^{-4}\) T  2. \(1.5 \times 10^{-4}\) T 
3. \(3 \sqrt2 \times 10^{-4}\) T  4. \({\dfrac 3 {\sqrt 2}}\times 10^{-4}\)
Subtopic:  Bar Magnet |
 79%
From NCERT
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 A ferromagnetic material consists of domains in which the magnetic moments of the atoms are in the same direction within each domain. However, the domains are randomly oriented. A ferromagnetic material is placed in an external magnetic field. Then, 
1. all the domains grow in size.
2. all the domains shrink in size. 
3. some domains grow in size, others shrink.
4. domains rotate in the magnetic field.
Subtopic:  Magnetic Materials |
From NCERT
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The coercive force for a certain magnet is \(3 \times 10^3 ~\text{A/m}\). This magnet is placed within a solenoid having \(40~\text{turns/cm}\). What current should be passed through the solenoid so that the magnet is demagnetized? 
1. \(0.75~\text{A}\) 2. \(75~\text{A}\)
3. \(1.33~\text{A}\) 4. \(133~\text{A}\)
Subtopic:  Magnetization & Magnetic Intensity |
 69%
From NCERT
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