Q.Derive an expression for the torque experienced by a current carrying rectangular coil placed in uniform magnetic field. OR What are dia, para and ferromagnetic materials ? Discuss their properties.
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Start your 14-day free trial to unlock the full solution →A current-carrying rectangular coil in a uniform magnetic field experiences a torque that tends to rotate it until its plane is perpendicular to ; this is the working principle of a moving-coil galvanometer/motor.
Torque on a rectangular current loop
Consider a rectangular coil PQRS, sides and (area ), turns, carrying current , placed in a uniform field such that the normal to the coil makes angle with .
The two sides of length that lie parallel to the rotation axis experience equal and opposite forces acting along the same line — they produce no net torque. The two sides of length , perpendicular to the axis, each experience a force of magnitude ; these two forces are equal, opposite, and separated by a perpendicular (moment-arm) distance , so together they form a couple:
For turns:
where is the magnetic moment of the coil. In vector form, , with directed along the coil's normal (right-hand rule).
The torque is maximum when the coil's plane is parallel to (, normal ) and zero when the coil's plane is perpendicular to (, normal , stable equilibrium). This principle underlies the moving-coil galvanometer and the DC motor.
OR — dia-, para- and ferromagnetic materials
Diamagnetic materials: weakly magnetised opposite to the applied field; susceptibility small and negative (); relative permeability slightly less than 1; not affected by temperature; e.g. bismuth, copper, water, gold. Caused by the field-induced orbital motion of electrons opposing the applied field (a Lenz's-law effect at the atomic scale); atoms have no permanent dipole moment.
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