2- Determine the current I required to establish a flux of 1.5×10-4 Wb in the section of the core indicated in the magnetic circuit below. Sheet steel 15 x 10 wb N- 50 nuras d-ls - 02 m I- 0.05 m Cross-sectional area = 6 x 10m thưoughout H(AT/m) 40 B (Tesla) 0.3 0.8 100 150 200 300 400 500 600 700 1.02 1.04 1.21 | 1.28 1.3 1.31

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.1MCQ: The Ohms law for the magnetic circuit states that the net magnetomotive force (mmf) equals the...
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2- Determine the current I required to establish a flux of 1.5×10-4 Wb in the section of the core
indicated in the magnetic circuit below.
Sheet steel
1.5 x 10- wb
N- 50 naras
onde - laas = 02 m
I- 0.05 m
Cross-sectional area = 6 x 10- m throughout
H(AT/m) 40
B (Tesla) 0.3 0.8
600 700
1.02 1.04 1.21 1.28 1.3 1.31
100 150 200 | 300
400
500
1
Transcribed Image Text:2- Determine the current I required to establish a flux of 1.5×10-4 Wb in the section of the core indicated in the magnetic circuit below. Sheet steel 1.5 x 10- wb N- 50 naras onde - laas = 02 m I- 0.05 m Cross-sectional area = 6 x 10- m throughout H(AT/m) 40 B (Tesla) 0.3 0.8 600 700 1.02 1.04 1.21 1.28 1.3 1.31 100 150 200 | 300 400 500 1
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