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Physics · Textbook solutions

Magnetism and Matter

Every solved example, exercise, and miscellaneous question — in the order the textbook teaches them. · 12 questions

Worked Examples

5 q

Solved Examples

Worked · 5
  1. Eg 5.1
    (a) What happens if a bar magnet is cut into two pieces: (i) transverse to its length, (ii) along its length? (b) A magnetised needle in a uniform magnetic field experiences a torque but no net force. An iron nail near a bar magnet, however, experiences a force of attraction in addition to a torque. Why? (c) Must every magnetic configuration have a north pole and a south pole? What about the field due to a toroid? (d) Two identical looking iron bars A and B are given, one of which is definitely known to be magnetised. (We do not know which one.) How would one ascertain whether or not both are magnetised? If only one is magnetised, how does one ascertain which one? [Use nothing else but the bars A and B.]
  2. Eg 5.2
    Figure 5.4 shows a small magnetised needle P placed at a point O. The arrow shows the direction of its magnetic moment. The other arrows show different positions (and orientations of the magnetic moment) of another identical magnetised needle Q. (a) In which configuration the system is not in equilibrium? (b) In which configuration is the system in (i) stable, and (ii) unstable equilibrium? (c) Which configuration corresponds to the lowest potential energy among all the configurations shown?
  3. Eg 5.3
    Many of the diagrams given in Fig. 5.6 show magnetic field lines (thick lines in the figure) wrongly. Point out what is wrong with them. Some of them may describe electrostatic field lines correctly. Point out which ones.
  4. Eg 5.4
    (a) Magnetic field lines show the direction (at every point) along which a small magnetised needle aligns (at the point). Do the magnetic field lines also represent the lines of force on a moving charged particle at every point? (b) If magnetic monopoles existed, how would the Gauss's law of magnetism be modified? (c) Does a bar magnet exert a torque on itself due to its own field? Does one element of a current-carrying wire exert a force on another element of the same wire? (d) Magnetic field arises due to charges in motion. Can a system have magnetic moments even though its net charge is zero?
  5. Eg 5.5
    A solenoid has a core of a material with relative permeability 400. The windings of the solenoid are insulated from the core and carry a current of 2A. If the number of turns is 1000 per metre, calculate (a) HH, (b) MM, (c) BB and (d) the magnetising current ImI_{m}.

Exercises

7 q
  1. Ex 5.1
    A short bar magnet placed with its axis at 3030^{\circ} with a uniform external magnetic field of 0.25T0.25\,\text{T} experiences a torque of magnitude equal to 4.5×102J4.5 \times 10^{-2}\,\text{J}. What is the magnitude of magnetic moment of the magnet?
  2. Ex 5.2
    A short bar magnet of magnetic moment m=0.32J T1m = 0.32\,\text{J T}^{-1} is placed in a uniform magnetic field of 0.15T0.15\,\text{T}. If the bar is free to rotate in the plane of the field, which orientation would correspond to its (a) stable, and (b) unstable equilibrium? What is the potential energy of the magnet in each case?
  3. Ex 5.3
    A closely wound solenoid of 800 turns and area of cross section 2.5×104m22.5 \times 10^{-4}\,\text{m}^{2} carries a current of 3.0A3.0\,\text{A}. Explain the sense in which the solenoid acts like a bar magnet. What is its associated magnetic moment?
  4. Ex 5.4
    If the solenoid in Exercise 5.5 is free to turn about the vertical direction and a uniform horizontal magnetic field of 0.25T0.25\,\text{T} is applied, what is the magnitude of torque on the solenoid when its axis makes an angle of 3030^{\circ} with the direction of applied field?
  5. Ex 5.5
    A bar magnet of magnetic moment 1.5J T11.5\,\text{J T}^{-1} lies aligned with the direction of a uniform magnetic field of 0.22T0.22\,\text{T}. (a) What is the amount of work required by an external torque to turn the magnet so as to align its magnetic moment: (i) normal to the field direction, (ii) opposite to the field direction? (b) What is the torque on the magnet in cases (i) and (ii)?
  6. Ex 5.6
    A closely wound solenoid of 2000 turns and area of cross-section 1.6×104m21.6 \times 10^{-4}\,\text{m}^{2}, carrying a current of 4.0A4.0\,\text{A}, is suspended through its centre allowing it to turn in a horizontal plane. (a) What is the magnetic moment associated with the solenoid? (b) What is the force and torque on the solenoid if a uniform horizontal magnetic field of 7.5×102T7.5 \times 10^{-2}\,\text{T} is set up at an angle of 3030^{\circ} with the axis of the solenoid?
  7. Ex 5.7
    A short bar magnet has a magnetic moment of 0.48J T10.48\,\text{J T}^{-1}. Give the direction and magnitude of the magnetic field produced by the magnet at a distance of 10cm10\,\text{cm} from the centre of the magnet on (a) the axis, (b) the equatorial lines (normal bisector) of the magnet.