QUESTION 8 The magnetic system shown has the following parameters: N-500, i- 2A Width of air gap - 2.0 cm Depth of air gap = 2.0 cm Length of air gap -1 mm Neglect the reluctance of the core, the leakage flux, and the fringing flux. Calculate the force of attraction between both sides of the air gap.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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QUESTION 8
The magnetic system shown has the following parameters:
N= 500,
i = 2A
Width of air gap - 2.0 cm
Depth of air gap - 2.0 cm
Length of air gap -1 mm
Neglect the reluctance of the core, the leakage flux, and the fringing flux.
N
Calculate the force of attraction between both sides of the air gap.
Transcribed Image Text:QUESTION 8 The magnetic system shown has the following parameters: N= 500, i = 2A Width of air gap - 2.0 cm Depth of air gap - 2.0 cm Length of air gap -1 mm Neglect the reluctance of the core, the leakage flux, and the fringing flux. N Calculate the force of attraction between both sides of the air gap.
12 out of 12 points
24634
A 3 Phase six pole Induction Motor
induces a voltage of 20V in the rotor
having a frequency of 1 Hz at a full
load slip of 2%. Calculate the
following
Correct Selected
Question
Match Match
Speed of the
G.
G.
motor at full
980
980
load in rpm
Voltage induced D.
D.
in Stator at full
1000
1000
load in volts
Voltage induced D.
O D.
in rotor at the
1000
1000
starting in
Volts
Transcribed Image Text:12 out of 12 points 24634 A 3 Phase six pole Induction Motor induces a voltage of 20V in the rotor having a frequency of 1 Hz at a full load slip of 2%. Calculate the following Correct Selected Question Match Match Speed of the G. G. motor at full 980 980 load in rpm Voltage induced D. D. in Stator at full 1000 1000 load in volts Voltage induced D. O D. in rotor at the 1000 1000 starting in Volts
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