The magnetic circuit shown in Figure 7 has two parallel paths. Find the flux and flux density in each of the legs of the magnetic circuit. Neglect fringing at the air leakage fields. N= 1,000 turns, į = 0.2 A, Ig1 = 0.04 cm, and lg2 = 0.02 cm. Assume the reluctance of the magnetic core to be negligible. gaps and any %3D %3D 4 cm le1 °N 1 cm 1 cm 2 cm 1 cm Cross-section 1 cm 1 cm Fig. 7

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
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Problem 3.1MCQ: The Ohms law for the magnetic circuit states that the net magnetomotive force (mmf) equals the...
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Problem 7.
The magnetic circuit shown in Figure 7 has two parallel paths. Find the flux and flux
density in each of the legs of the magnetic circuit. Neglect fringing at the air
leakage fields. N=1,000 turns, į = 0.2 A, lg1 = 0.04 cm, and l2 = 0.02 cm. Assume the
reluctance of the magnetic core to be negligible.
gaps
and
any
4 cm le1
N,
1 cm
1 cm
2 cm
f1 cm
Cross-section
1 cm
1 cm
Fig. 7
Transcribed Image Text:Problem 7. The magnetic circuit shown in Figure 7 has two parallel paths. Find the flux and flux density in each of the legs of the magnetic circuit. Neglect fringing at the air leakage fields. N=1,000 turns, į = 0.2 A, lg1 = 0.04 cm, and l2 = 0.02 cm. Assume the reluctance of the magnetic core to be negligible. gaps and any 4 cm le1 N, 1 cm 1 cm 2 cm f1 cm Cross-section 1 cm 1 cm Fig. 7
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