In the magnetic circuit in Figure-1, find the fluxes 1, P2, P3, and li current according to the magnetic induction B5 = 0.8 T and l2 =8A in the air gap. Leaks are neglected. The material can be taken as dynamo hair or silicon hair. (Important Note: Show the H/ B curve of the material you accepted clearly in your solution.) Ho = 4nx10, y1 = 150cm Y2=20cm y3 = 250cm 8 = 3mm , N, = 4000, N, = 1000 , A = 25 cm2 (the cross section of the circuit is equal everywhere).

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In the magnetic circuit in Figure-1, find the fluxes 1, P2, P3, and li current
according to the magnetic induction B5 = 0.8 T and l2 =8A in the air gap.
Leaks are neglected. The material can be taken as dynamo hair or silicon hair.
(Important Note: Show the H/ B curve of the material you accepted clearly in
your solution.)
Ho = 4nx10, y1 = 150cm
Y2=20cm y3 = 250cm 8 = 3mm , N, = 4000, N, = 1000 , A = 25 cm2
(the cross section of the circuit is equal everywhere).
Transcribed Image Text:In the magnetic circuit in Figure-1, find the fluxes 1, P2, P3, and li current according to the magnetic induction B5 = 0.8 T and l2 =8A in the air gap. Leaks are neglected. The material can be taken as dynamo hair or silicon hair. (Important Note: Show the H/ B curve of the material you accepted clearly in your solution.) Ho = 4nx10, y1 = 150cm Y2=20cm y3 = 250cm 8 = 3mm , N, = 4000, N, = 1000 , A = 25 cm2 (the cross section of the circuit is equal everywhere).
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