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(Ch-1) Tutorial Q1 & Q 2 || Magnetic Circuit with Two windings and Air Gap || (English )
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Tutorial Question1 & Question 2
0:00 - Intro
0:34 - Question 1 (Determine the air-gap flux and the magnetic field intensity)
2:32 - Marking Flux direction
3:30 - Marking Voltage Polarity on Equivalent Electrical Circuit
11:12 - Question 2
The magnetic circuit model of magnetic behavior is often used in the
design of electric machines and transformers to simplify the otherwise quite complex design process.
In an electric circuit, the applied voltage causes a current J to flow. Similarly, in a magnetic circuit, the applied magneto-motive force causes flux to be
produced.
In this video we have described about Magnetic circuit with Air gap and Two winding with example & practice problem 1.2 from Fitzgerald book
In this video we solve Two problems of magnetic circuits with two windings, where we find flux, flux density, and field intensity.
Example 1.2: For the magnetic circuit shown below, the relative permeability of the ferromagnetic
material of the core is 1200. Neglect leakage and fringing. All dimensions are in cm,
and the magnetic material has a square cross-sectional area. Determine the airgap flux and the magnetic field intensity in the airgap.
Practice 1.2 : A ferromagnetic core with a relative permeability of 1600 is shown below...
In this video, tackle Tutorial Question 1 & 2 related to magnetic circuits with a focus on two windings and an air gap. Gain insights into solving magnetic circuit problems, understanding key concepts, and mastering the fundamentals of magnetic circuits in English. Watch now to enhance your problem-solving skills in this area!
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0:00 - Intro
0:34 - Question 1 (Determine the air-gap flux and the magnetic field intensity)
2:32 - Marking Flux direction
3:30 - Marking Voltage Polarity on Equivalent Electrical Circuit
11:12 - Question 2
The magnetic circuit model of magnetic behavior is often used in the
design of electric machines and transformers to simplify the otherwise quite complex design process.
In an electric circuit, the applied voltage causes a current J to flow. Similarly, in a magnetic circuit, the applied magneto-motive force causes flux to be
produced.
In this video we have described about Magnetic circuit with Air gap and Two winding with example & practice problem 1.2 from Fitzgerald book
In this video we solve Two problems of magnetic circuits with two windings, where we find flux, flux density, and field intensity.
Example 1.2: For the magnetic circuit shown below, the relative permeability of the ferromagnetic
material of the core is 1200. Neglect leakage and fringing. All dimensions are in cm,
and the magnetic material has a square cross-sectional area. Determine the airgap flux and the magnetic field intensity in the airgap.
Practice 1.2 : A ferromagnetic core with a relative permeability of 1600 is shown below...
In this video, tackle Tutorial Question 1 & 2 related to magnetic circuits with a focus on two windings and an air gap. Gain insights into solving magnetic circuit problems, understanding key concepts, and mastering the fundamentals of magnetic circuits in English. Watch now to enhance your problem-solving skills in this area!
Hashtags:
#TutorialQuestion1 #TutorialQuestion2 #MagneticCircuit #TwoWindings #AirGap #English #ProblemSolving #Tutorial #Fundamentals #Engineering
SEO Tags:
#Tutorial Question 1,
# Tutorial Question 2,
#Magnetic Circuit,
#Two Windings
# Air Gap, #studytips
# Problem Solving,
#tutorial Insights,
# Engineering,
# Magnetic Circuit Analysis,
# Magnetic Circuit Fundamentals,
# Magnetic Circuit Solutions,
#two Windings Impact,
#air Gap Analysis
#ElectricalEngineeringAcademy
#electricalmachine
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