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FAD1022 BASIC PHYSICS 2

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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.

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Three long, parallel wires are separated in an isosceles triangle with = 5 cm a

nd

carry currents 

I1I2 and I3 as shown in the figure below.

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. 

             force 2

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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. 

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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.

         B coil - current same direction

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