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A small circular loop of conducting wire has radius of 0.6 m is placed in a uniform field lines which make an angle of 25° with the plane of the coil. The coil is rotate at 2.5 N m with a of current 2.6 A.
Calculate the magnitude of the uniform magnetic field that creates this torque.
Three long, parallel wires are separated in an isosceles triangle with d = 5 cm a nd carry currents
Determine the resultant magnetic force per unit length on I1 due to the wires I2 and I3.
Given the current I1 = 3 A, I2 = 6 A and I3 = 4 A.
A proton moves across a uniform magnetic field of 1.7 T with a radius of curvature for the motion 2.3 cm.
Determine the speed of the proton in unit m s-1.
Charge of proton = 1.6 × 10-19 C and mass of a proton = 1.67 × 10-27 kg.
Two circular coils of wire with radius 4 cm and 6 cm are placed on a flat surface.
Both coils have 6 turns and carry current I = 4 A in the same direction.
Determine the magnitude of the resultant magnetic field at the centre of the coils, P.