In the figure two straight conducting rails form a right angle. A conducting bar in contact with the rails starts at the vertex corner at time t=0 and moves with constant velocity of 5.2 m/s along them. A magnetic field of B=0.35 T is directed out of page. Calculate, (a) the flux through the triangle formed by the rails and bar at t=3.0 s, b) find the emf around the triangle at that time c) if the emf was ɛ = at" , where a and n are constants what is the value of n?

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In the figure two straight conducting rails form a right angle. A conducting bar in contact with the rails starts
at the vertex corner at time t=0 and moves with constant velocity of 5.2 m/s along them. A magnetic field of
B=0.35 T is directed out of page. Calculate, (a) the flux through the triangle formed by the rails and bar at
t=3.0 s,
b) find the emf around the triangle at that time
c) if the emf was ɛ = at" , where a and n are constants what is the value of n?
Transcribed Image Text:In the figure two straight conducting rails form a right angle. A conducting bar in contact with the rails starts at the vertex corner at time t=0 and moves with constant velocity of 5.2 m/s along them. A magnetic field of B=0.35 T is directed out of page. Calculate, (a) the flux through the triangle formed by the rails and bar at t=3.0 s, b) find the emf around the triangle at that time c) if the emf was ɛ = at" , where a and n are constants what is the value of n?
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