1. (a) A conductor moves with a velocity of 15 m/s at an angle of (a) 90•, (b) 60• and (c) 30 to a magnetic field produced between two square-faced poles of side length 2 cm. If the flux leaving a pole face is 5 µWb, find the magnitude of the induced e.m.f. in each case. (b) Determine the delta-connected equivalent network for the star-connected impedances shown in Fig 3.0 10 2 20 2 15 2

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1. (a) A conductor moves with a velocity of 15 m/s at an angle of (a) 90•, (b) 60• and (c) 30• to a magnetic
field produced between two square-faced poles of side length 2 cm. If the flux leaving a pole face is 5 µ Wb,
find the magnitude of the induced e.m.f. in each case.
(b) Determine the delta-connected equivalent network for the star-connected impedances shown in Fig 3.0
10 2
20Ω
j5 N
Transcribed Image Text:1. (a) A conductor moves with a velocity of 15 m/s at an angle of (a) 90•, (b) 60• and (c) 30• to a magnetic field produced between two square-faced poles of side length 2 cm. If the flux leaving a pole face is 5 µ Wb, find the magnitude of the induced e.m.f. in each case. (b) Determine the delta-connected equivalent network for the star-connected impedances shown in Fig 3.0 10 2 20Ω j5 N
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