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Q.(a) Write SI unit of magnetic dipole moment.

(b) What is magnetic dipole ? Derive an expression for magnetic field intensity at a point on the equatorial line of a bar magnet. OR
(a) How can a galvanometer be converted into an ammeter ?
(b) Derive an expression for the force acting on a current carrying straight conductor kept in a uniform magnetic field. Name the rule used to determine the direction of this force. Under what condition this force is maximum and zero ?
Punjab PsebPSEB Punjab Class 12 Board 2018Subjective· 6mImportance★★★★★
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Magnetic dipole moment's SI unit is A·m²; on the equatorial line of a bar magnet at distance r, the field is Beq=μ04πmr3B_{eq}=\dfrac{\mu_0}{4\pi}\dfrac{m}{r^3}, anti-parallel to the magnet's axis.

(a) SI unit of magnetic dipole moment mm: ampere metre² (A·m²) — equivalently joule per tesla (J/T).

(b) Magnetic dipole: A magnetic dipole consists of two equal and opposite magnetic poles (+qm+q_m and −qm-q_m) separated by a small distance 2l2l (like a bar magnet), and is characterised by its magnetic dipole moment m⃗=qm(2l)\vec m = q_m(2l), directed from the south to the north pole. It is analogous to an electric dipole, and (by the Ampère model) is equivalent to a small current loop of moment m=IAm=IA.

Derivation — field at a point on the equatorial line:

Consider a bar magnet of length 2l2l, poles +qm+q_m at N and −qm-q_m at S, and a point P on the equatorial (perpendicular bisector) line at distance rr from the centre O. The distance from each pole to P is r2+l2\sqrt{r^2+l^2}.

Field due to N-pole at P: BN=μ04πqmr2+l2B_N=\dfrac{\mu_0}{4\pi}\dfrac{q_m}{r^2+l^2}, directed along NP (away from N).

Field due to S-pole at P: BS=μ04πqmr2+l2B_S=\dfrac{\mu_0}{4\pi}\dfrac{q_m}{r^2+l^2}, directed along PS (toward S).

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