The figure shows a rectangular, 20-turn coil of wire, of dimensions 14 cm by 4.9 cm. It carries a current of 0.13 A and is hinged along one long side. It is mounted in the xy plane, at an angle of 30° to the direction of a uniform magnetic field. of magnitude 0.65 T. Find the (a) x, (b) y, and (c) z components of the torque acting on the coil about the hinge line. Hinge line rad rad/s rad/s 2 kg-m 2 N-m (a) Number Units v kg-m 2/s rad 2/s*2 (b) Number Units rad

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The figure shows a rectangular, 20-turn coil of wire, of dimensions 14 cm by 4.9 cm. It carries a current of 0.13 A and is
hinged along one long side. It is mounted in the xy plane, at an angle of 30° to the direction of a uniform magnetic field
of magnitude 0.65 T. Find the (a) x, (b) y, and (c) z components of the torque acting on the coil about the hinge line.
linge
line
rad
rad/s
rad/s 2
kg-m 2
N-m
(a) Number
Units v kg-m 2/s
rad 2/s2
(b) Number
Units
rad
Transcribed Image Text:The figure shows a rectangular, 20-turn coil of wire, of dimensions 14 cm by 4.9 cm. It carries a current of 0.13 A and is hinged along one long side. It is mounted in the xy plane, at an angle of 30° to the direction of a uniform magnetic field of magnitude 0.65 T. Find the (a) x, (b) y, and (c) z components of the torque acting on the coil about the hinge line. linge line rad rad/s rad/s 2 kg-m 2 N-m (a) Number Units v kg-m 2/s rad 2/s2 (b) Number Units rad
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