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Electromagnetic theory

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Electromagnetic theory

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    Engineering Academy

    Engineering Academy

    Learn Without Limits: Free Engineering Courses

  • Course type

    Watch to learn anytime

  • Course duration

    829 Min

  • Course start date & time

    Access anytime

  • Language

    English

Why enroll

Participants join this course to gain a clear understanding of how electric and magnetic fields behave in nature and in technology. It helps build a strong foundation for advanced topics like Microwave Engineering, Antennas, and Optics. Students also learn practical methods to analyze and solve electromagnetic problems, which are useful in real-world applications. The skills gained in this course are valuable for careers in communications, electronics, defense, and research, while also improving overall analytical and problem-solving abilities in electrical engineering.

Opportunities that awaits you!

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Course content

The course is readily available, allowing learners to start and complete it at their own pace.

Video info icon

Electromagnetic theory

30 Lectures

829 min

  • Lesson icon

    Introduction to EMT

    Preview icon

    Preview

    32 min

  • Lesson icon

    Coulomb's law

    22 min

  • Lesson icon

    Vector analysis-I and Introduction to Co-ordinate system

    18 min

  • Lesson icon

    Rectangular Co-ordinate system

    31 min

  • Lesson icon

    Vector analysis-II

    36 min

  • Lesson icon

    Introduction to Electric field

    31 min

  • Lesson icon

    Electric field-I

    20 min

  • Lesson icon

    Cylindrical Co-ordinate system

    29 min

  • Lesson icon

    Transformation & Electric field-II

    24 min

  • Lesson icon

    Electric Potential-I

    30 min

  • Lesson icon

    Spherical Co-ordinate system & Electric potential-II

    35 min

  • Lesson icon

    Vector Analysis-III & Electric potential-III

    32 min

  • Lesson icon

    Gauss’s Law & its application-I

    25 min

  • Lesson icon

    Gauss’s Law & its application-II

    23 min

  • Lesson icon

    Divergence & Poisson’s & Laplace’s Equation

    30 min

  • Lesson icon

    Gauss’s Law & its application -III

    35 min

  • Lesson icon

    Vector analysis –III (Curl and its significance)

    22 min

  • Lesson icon

    Conductor & Dielectric-I

    29 min

  • Lesson icon

    Polarization -I

    28 min

  • Lesson icon

    Polarization -II

    28 min

  • Lesson icon

    Polarization –II (contd.)

    20 min

  • Lesson icon

    Boundary condition

    21 min

  • Lesson icon

    Continuity Equation & Conductors-III

    30 min

  • Lesson icon

    Conductors – IV

    27 min

  • Lesson icon

    Conductor –IV (contd.) & Capacitor - I

    30 min

  • Lesson icon

    Capacitor - II

    26 min

  • Lesson icon

    Capacitor - II (contd.) & Equipotential Surfaces

    28 min

  • Lesson icon

    Solution of Laplace’s equation-I

    33 min

  • Lesson icon

    Solution of Laplace’s equation-I I & method of images-I

    25 min

  • Lesson icon

    Method of images-II

    29 min

Course details

Electromagnetic Theory is a foundational course in Electrical Engineering that explores the behavior of electric and magnetic fields, both in static conditions and when they vary with time. The course introduces students to the principles behind how electromagnetic fields are generated, how they interact with materials, and how they propagate through space.By the end of this course, students gain a strong foundation in electromagnetics, enabling them to confidently pursue advanced topics such as Microwave Engineering, Antenna Design, and Optical Engineering. The course combines theoretical understanding with practical applications, preparing students to analyze, model, and design real-world electromagnetic systems.
Source: Electromagnetic Theory [Youtube Channel] NPTEL

Course suitable for

  • Automotive
  • Electronics & Instrumentation
  • Electrical
  • Engineering & Design
  • Project Management
  • Research & Developmnet

Key topics covered

  • Introduction to Electromagnetic Theory – Basics and importance.

  • Coulomb’s Law – Force between electric charges.

  • Vector Analysis (Part I) – Understanding vectors in physics.

  • Introduction to Coordinate Systems – Rectangular system basics.

  • Rectangular Coordinate System – Coordinates and applications.

  • Vector Analysis (Part II) – Advanced vector operations (div, curl, grad).

  • Gauss’s Law and Electric Flux – Field and flux relation.

  • Electric Field due to Charge Distributions – Field patterns from different charges.

  • Electric Potential and Energy – Potential concepts in fields.

  • Poisson & Laplace Equations – Field equations for potentials.

  • Boundary Conditions in Electrostatics – Field behavior at surfaces.

  • Magnetostatics and Ampere’s Law – Magnetic fields from currents.

  • Maxwell’s Equations Overview – The heart of electromagnetics.

  • Electromagnetic Waves – Wave propagation basics.

  • Transmission Lines Intro – How signals travel along cables.

Why people choose EveryEng

Industry-aligned courses, expert training, hands-on learning, recognized certifications, and job opportunities—all in a flexible and supportive environment.

Engineering Academy

Engineering Academy

Learn Without Limits: Free Engineering Courses

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