The dimensions of a ferromagnetic core are shown in the figure below. Assuming the core is built from an ideal material with an infinite permeability, consider that the coil has 1000 turns, and the core cross-section is 250 mm². Given that the permeability of free space = 4 x 10-7 H/m, answer the following questions: a) Calculate the total reluctance of the flux path. b) Determine the magnetomotive force when the current flowing in the coil is 150 mA. c) What is the magnitude of the flux produced by a current of 10 A in the coil? d) Plot the direction of the flux in the figure, 1mm considering the direction of the current in the coil. e) Sketch the Magnetic Circuit, labeling each component with its corresponding value. 2 mm 5 mm 3 mm 3 mm 5 mm

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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you these questions.
The dimensions of a ferromagnetic core are shown in the figure below. Assuming the core is
built from an ideal material with an infinite permeability, consider that the coil has 1000
turns, and the core cross-section is 250 mm². Given that the permeability of free space = 4
x 10-7 H/m, answer the following questions:
a) Calculate the total reluctance of the flux path.
b) Determine the magnetomotive force when the
current flowing in the coil is 150 mA.
c) What is the magnitude of the flux produced by
a current of 10 A in the coil?
d) Plot the direction of the flux in the figure, 1mm
considering the direction of the current in the
coil.
e) Sketch the Magnetic Circuit, labeling each
component with its corresponding value.
2 mm
5 mm
3 mm
3 mm
5 mm
Transcribed Image Text:you these questions. The dimensions of a ferromagnetic core are shown in the figure below. Assuming the core is built from an ideal material with an infinite permeability, consider that the coil has 1000 turns, and the core cross-section is 250 mm². Given that the permeability of free space = 4 x 10-7 H/m, answer the following questions: a) Calculate the total reluctance of the flux path. b) Determine the magnetomotive force when the current flowing in the coil is 150 mA. c) What is the magnitude of the flux produced by a current of 10 A in the coil? d) Plot the direction of the flux in the figure, 1mm considering the direction of the current in the coil. e) Sketch the Magnetic Circuit, labeling each component with its corresponding value. 2 mm 5 mm 3 mm 3 mm 5 mm
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