About Course
This course provides an in-depth understanding of electromagnetic fields, exploring the fundamental principles and applications in engineering and technology. Students will learn about electric and magnetic fields, Maxwell’s equations, and their implications in real-world scenarios.
What Will You Learn?
- Fundamental concepts of electric and magnetic fields
- Coulomb's Law and the behavior of electric charges
- Gauss's Law and electric flux
- Biot-Savart Law and magnetic field generation
- Ampere's Law and magnetic field intensity
- Maxwell's equations and their significance in electromagnetism
- Wave propagation and electromagnetic waves
- Applications of electromagnetic fields in communication and other technologies
- Practical skills in analyzing and solving electromagnetic field problems
Material Includes
- GATE EE Study materials and chapter wise quizzes
Requirements
- Basic understanding of physics, particularly electromagnetism
- Familiarity with mathematical concepts, including vector calculus and differential equations
- Proficiency in using computers and basic software applications
- Prior exposure to basic circuit theory is advantageous but not required
- Willingness to engage in problem-solving exercises and practical applications
Course Content
ELECTROMAGNETIC FIELDS
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The "Electromagnetic Fields in Electrical Engineering" course offers an in-depth study of the principles and applications of electromagnetic fields. The course begins with the basics of electric and magnetic fields, exploring Coulomb's Law, Gauss's Law, Biot-Savart Law, and Ampère's Law. Students will learn about the behavior of electric and magnetic fields in different media and the concept of field lines and flux.
A significant portion of the course is dedicated to Maxwell's equations, which form the foundation of classical electromagnetism. You will study each of Maxwell's equations in detail and understand their implications for the behavior of electromagnetic fields. The course also covers electromagnetic wave propagation, transmission lines, and waveguides, highlighting their importance in communication systems and other applications.
The course emphasizes practical applications, including the analysis of electromagnetic fields in electrical devices, antennas, and transmission systems. You will learn about the principles of electromagnetic compatibility (EMC) and how to design systems that minimize electromagnetic interference (EMI).
Throughout the course, practical examples, problem-solving exercises, and case studies will reinforce theoretical concepts and develop analytical skills. By the end of this course, students will have a solid understanding of electromagnetic fields and their applications in electrical engineering, preparing them for advanced studies or professional practice.
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Instructors
Aeroadda
4.0
624 Students
45 Courses
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