For the series-parallel magnetic circuit shown in Figure 1, draw the equivalent magnetic circuit and electric circuit analogy and find the value of I required to establish a flux Og = 2 x 10 Wb in the air gap. (Neglect the fringing effect)
For the series-parallel magnetic circuit shown in Figure 1, draw the equivalent magnetic circuit and electric circuit analogy and find the value of I required to establish a flux Og = 2 x 10 Wb in the air gap. (Neglect the fringing effect)
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![For the series-parallel magnetic circuit shown in Figure 1, draw the equivalent magnetic circuit and
electric circuit analogy and find the value of I required to establish a flux O = 2 x 10 Wb in the
air gap. (Neglect the fringing effect)
Sheet steel throughout
0.002 m
N =
1
2
200 turns
B Area =
2 x 104 m2
Area for sections other than bg = 5 x 10 m?
Lab = lbg = !gh = Iha
%3D
%3D
たこここ0.2m
Ibe = l = 0.1 m, led =
= 0.099 m
%3D
Figure 1: Magnetic Circuit for Question No. 1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fad375d98-8d59-468c-b62e-ec56380158eb%2F174b17a4-eda5-448a-a974-e317afd9f58a%2F7sw8zl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the series-parallel magnetic circuit shown in Figure 1, draw the equivalent magnetic circuit and
electric circuit analogy and find the value of I required to establish a flux O = 2 x 10 Wb in the
air gap. (Neglect the fringing effect)
Sheet steel throughout
0.002 m
N =
1
2
200 turns
B Area =
2 x 104 m2
Area for sections other than bg = 5 x 10 m?
Lab = lbg = !gh = Iha
%3D
%3D
たこここ0.2m
Ibe = l = 0.1 m, led =
= 0.099 m
%3D
Figure 1: Magnetic Circuit for Question No. 1
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