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Q.(a) Find torque on a Bar Magnet situated in uniform magnetic field.

(2)
(b) On the basis of atomic model of magnetism, differentiate among the paramagnetic, diamagnetic and ferromagnetic substances. (3)
Uttarakhand UbseUttarakhand Board Intermediate (Class 12) 2018Subjective· 5mImportance★★★★★
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(a) τ⃗=m⃗×B⃗\vec\tau=\vec m\times\vec B, τ=mBsin⁡θ\tau=mB\sin\theta. (b) Diamagnetic (weak repulsion, μr<1\mu_r<1), paramagnetic (weak attraction, μr≳1\mu_r\gtrsim1), ferromagnetic (strong attraction, μr≫1\mu_r\gg1, domains).

(a) Torque on a bar magnet in a uniform magnetic field.

Consider a bar magnet of pole strength qmq_m and length 2l2l, so magnetic moment m=qm(2l)m=q_m(2l), placed with its axis at angle θ\theta to a uniform field B⃗\vec B. Forces on the two poles are +qmB+q_mB (on N, along B⃗\vec B) and −qmB-q_mB (on S, opposite). These are equal, opposite and non-collinear, so they form a couple (net force zero).

τ=(force)×(perpendicular distance)=(qmB)(2lsin⁡θ)\tau = (\text{force})\times(\text{perpendicular distance}) = (q_mB)(2l\sin\theta)

τ=(qm 2l) Bsin⁡θ=mBsin⁡θ\tau = (q_m\,2l)\,B\sin\theta = mB\sin\theta

In vector form

τ⃗=m⃗×B⃗\boxed{\vec\tau = \vec m\times\vec B}

It is maximum (τ=mB\tau=mB) when θ=90∘\theta=90^\circ and zero when the magnet is aligned with the field (θ=0\theta=0).

(b) Diamagnetic, paramagnetic and ferromagnetic substances.

PropertyDiamagneticParamagneticFerromagnetic
Behaviour in fieldFeebly repelledFeebly attractedStrongly attracted
Atomic dipolesNo net dipole (paired electrons)Small permanent dipoles, randomly orientedStrong dipoles grouped in domains
Relative permeability μr\mu_rSlightly <1<1Slightly >1>1≫1\gg1
Susceptibility χ\chiSmall, negativeSmall, positiveLarge, positive

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