Unit 1: Fundamentals of Electromagnetic Induction

Develop a conceptual understanding of how changing magnetic fields generate electrical energy.

Subtopics

  • Introduction to Electromagnetic Induction
  • Magnetic Flux
  • Faraday's and Lenz's Laws
  • Factors Affecting Induced EMF
  • Practical Demonstrations of Induction

Unit 2: Induced EMF and Current

Explore the mechanisms by which induced voltages and currents are produced in conductors and coils.

Subtopics

  • Motional EMF
  • Induction in Loops
  • Eddy Currents
  • Self-Induction
  • Mutual Induction

Unit 3: Inductance and Energy Storage

Investigate how inductors store energy and how magnetic fields behave in electrical circuits.

Subtopics

  • Inductance in Solenoids
  • Energy in Magnetic Fields
  • RL Circuits
  • Mutual Inductance
  • Practical Inductance Applications

Unit 4: Electromagnetic Induction in Alternating Current Systems

Learn how electromagnetic induction enables AC power generation, transmission, and electrical distribution.

Subtopics

  • Induction in AC Circuits
  • Alternators and Generators
  • Transformers
  • Power Transmission and Distribution
  • Resonance in LC Circuits

Unit 5: Applications of Electromagnetic Induction

Apply the principles of induction to modern technologies and emerging engineering innovations.

Subtopics

  • Electric Generators and Motors
  • Induction in Magnetic Levitation
  • Induction Heating
  • Wireless Power Transfer
  • Future Innovations in Induction Technology
 
 
Last modified: Tuesday, 21 July 2026, 11:46 AM