Two coils are wound on a toroidal core. The core is made of cast steel and has a circular cross-section. a) Determine the flux density at the mean radius of the core. b) Assuming constant flux density over the cross-section of the core, determine the flux in the core. c) Determine the inductance of the core.
Two coils are wound on a toroidal core. The core is made of cast steel and has a circular cross-section. a) Determine the flux density at the mean radius of the core. b) Assuming constant flux density over the cross-section of the core, determine the flux in the core. c) Determine the inductance of the core.
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Two coils are wound on a toroidal core. The core is made of cast steel and has a circular cross-section.
a) Determine the flux density at the mean radius of the core.
b) Assuming constant flux density over the cross-section of the core, determine the flux in the core.
c) Determine the inductance of the core.
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1.3
1.2
1.1
Çast steel,
1.0
İ=l A
21 cm
0.9
h=2 A
0.8
19 cm
0.7
N;=200 tums
N=100 tums
0.6
0.5
04
0.3
O.2
0.1
200
400
SO0
800
1000
Field intensity, EI CAt/m)
Flux density, B ilesla)"
Transcribed Image Text:14
1.3
1.2
1.1
Çast steel,
1.0
İ=l A
21 cm
0.9
h=2 A
0.8
19 cm
0.7
N;=200 tums
N=100 tums
0.6
0.5
04
0.3
O.2
0.1
200
400
SO0
800
1000
Field intensity, EI CAt/m)
Flux density, B ilesla)
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