Free Download Electromagnetism and Electromagnetic Induction Masterclass
Published 8/2026
Created by Addae Valentine
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate | Genre: eLearning | Language: English | Duration: 8 Lectures ( 1h 43m ) | Size: 606.6 MB
Master magnetic fields, magnetic flux, forces, electromagnetic induction, and engineering calculations.
What you'll learn
Understand how electric current produces a magnetic field.
Apply the right-hand rule to determine magnetic field direction.
Analyze the force acting on a current-carrying conductor placed in a magnetic field.
Explain magnetic flux and magnetic flux density.
Understand the fundamental principles of electromagnetic induction.
Explain the behavior of moving charged particles in magnetic fields.
Explain Faraday's Law and Lenz's Law. Calculate induced EMF under different conditions.
Explain the fundamental principles of electromagnetism and magnetic fields.Requirements
Basic understanding of mathematics (especially algebra and simple equations).
Prior exposure to basic electricity concepts is helpful but not mandatory.
A willingness to learn and practice problem-solving is essential.
Notebook and calculator recommended for working through examples and exercises.
Access to a computer, tablet, or smartphone with internet connection for watching lessons.
No advanced engineering background required - all fundamental concepts are explained from the beginning.
Suitable for beginners, technical students, and professionals looking to strengthen their applied electricity skills.Description
Electromagnetism is one of the most important areas of electrical engineering and physics. It provides the foundation for understanding electrical machines, transformers, generators, motors, relays, measuring instruments, electromagnetic devices, and many modern electrical technologies.
Electromagnetism and Electromagnetic Induction Masterclass is designed to help students develop a clear understanding of magnetic fields, magnetic forces, magnetic flux, and electromagnetic induction while also developing the ability to solve numerical problems confidently.
The course begins with the fundamentals of electromagnetism and magnetic fields. You will learn how magnetic fields are produced and how electric current creates a magnetic field around a conductor.
We then examine magnetic flux and magnetic flux density, including their definitions, units, equations, and applications. Mathematical examples are used to show how these quantities can be calculated.
The second part of the course focuses on magnetic forces. You will study the force experienced by a current-carrying conductor placed inside a magnetic field and learn how the magnitude and direction of this force can be determined.
The course also examines what happens when an electrically charged particle moves through a magnetic field. This provides an important connection between electricity, magnetism, and the motion of charged particles.
You will then move into electromagnetic induction, one of the most important principles in electrical engineering. You will explore how changing magnetic flux can produce an induced electromotive force (EMF), together with the principles behind Faraday's Law and Lenz's Law.
Throughout the course, theoretical explanations are supported by worked examples and engineering calculations. Dedicated problem-solving lessons allow you to see how electromagnetic equations are selected, rearranged, and applied to typical examination questions.
This course emphasizes understanding rather than simply memorizing equations. The objective is to help you understand what the equations mean, when to use them, and how to apply them correctly.
Whether you are preparing for an examination, strengthening your electrical engineering knowledge, or reviewing electromagnetism for professional development, this course provides a practical and structured approach to the subject.
Who this course is for
Beginners who want to build a strong foundation in applied electricity and electrical circuit analysis.
Electrical and electronic engineering students seeking clearer understanding of circuit theory and practical applications.
Aspiring electrical technicians and electricians preparing for technical careers.
Industry professionals who want to refresh or strengthen their knowledge of electrical principles.
Self-learners looking for structured, practical training in applied electricity.Homepage
Code:
https://www.udemy.com/course/electromagnetism-and-electromagnetic-induction-masterclass
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