A current distribution gives rise to the vector magnetic potential A = (a-1) p14 az- (a) p²/4 ay Wb/m, calculate the total magnetic flux crossing the surface o = J1/2, (1+c) < p< (2+c) m, a
A current distribution gives rise to the vector magnetic potential A = (a-1) p14 az- (a) p²/4 ay Wb/m, calculate the total magnetic flux crossing the surface o = J1/2, (1+c) < p< (2+c) m, a
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Note: The value of a=0, b=5 and C=7.
![A current distribution gives rise to the vector magnetic potential A = (a-1) p²14 az - (a) p²14 ay
Wb/m, calculate the total magnetic flux crossing the surface þ = J1/2, (1+e) <p< (2+c) m, a < z
< (b+5) m.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F951c797e-24f1-4ea5-99f0-2991080f9fc1%2Fb36bdaa3-c725-45d1-8085-823f5b570013%2Ffbz3y8f_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A current distribution gives rise to the vector magnetic potential A = (a-1) p²14 az - (a) p²14 ay
Wb/m, calculate the total magnetic flux crossing the surface þ = J1/2, (1+e) <p< (2+c) m, a < z
< (b+5) m.
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