The axle of a railway engine is of length 1.5 m. Calculate the e.m.f. that will exist between the ends of the axles if the engine moves with a speed 60 km/hr. The angle of dip = 46° and the horizonțal component of * = earth's magnetic induction is 3.6 x 103Wb/m².
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- A thin, 1.08 m long copper rod has a mass of 36.3 g. What is the minimum current in the rod that will cause it to float in a magnetic field of 2.94 T? Answer in units of A.1. The figure below shows a particle of mass, m = 6.67 x 10-18 kg and containing 5000 excess electron charges travelling with an initial velocity ủo = 60.0 m/s ĵ – 20.0 m/s k. Suddenly, a B = 3.40 T -k uniform magnetic field is turned on. x x x x x X x x x x x x x X X X X X X x X x x X X X X X X X X X X X X X X X X X X X X X x X VX X X X X X X X X X X X X X X X XX X X X X X x X X x x X X X X X X X X x XX x x X X X X X X X X x xX x x X X X X X X X X X x X x x X X X X X X X X X x X x x X X XA 13-cm length of wire is held along an east-west direction and moved horizontally to the north with a speed of 2.2 m/s in a region where the magnetic field of the earth is 55 micro-T directed 28° below the horizontal. What is the magnitude of the potential difference between the ends of the wire? Write your answer in micro-volts.