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Physics - Electromagnetic Induction
Rating: 3.7 out of 5(2 ratings)
8 students

Physics - Electromagnetic Induction

14 Lessons | 1hr 42min. | State Board , CBSE & ICSE | Competitive exams like IITJEE , NEET , CET, Foundation
Created bystudi live
Last updated 12/2021
English
English [Auto],

What you'll learn

  • To make the pupil to understand about the EMI Phenomena
  • Faraday’s Law
  • Lenz’s Rule
  • Fleming’s Right Hand Rule
  • Working principles of Ac generator and transformer
  • To make the pupil to define the following concepts EMI
  • Self Induction
  • Mutual Induction
  • Eddy Currents
  • To make pupil to differentiate between
  • EMI and Magnetic effect of electric current
  • Self induction and Mutual Induction
  • AC and DC generator
  • Step up and Step down transformer

Course content

1 section14 lectures1h 42m total length
  • Introduction6:47
  • Electro Magnetic Induction Combination of Coils6:36
  • Faraday’s Law and Lenz’s Law9:57
  • Lenz’s Law Theoretical Proof12:11
  • Motional EMI7:08
  • Rate of Production of Heat Energy5:47
  • Eddy Current7:04
  • Electro Magnetic Induction Mutual Inductance9:23
  • Electro Magnetic Induction Application of Mutual Induction5:39
  • Self Induction Intro6:16
  • Electro Magnetic Induction Self Inductance Application9:06
  • Electro Magnetic Induction Transformer Derivation5:33
  • Electro Magnetic Induction Efficiency of Transformer5:32
  • Electro Magnetic Induction Losses in Transformer5:07

Requirements

  • Basic understanding of Physics

Description

Description

Electricity and magnetism were considered separate and unrelated phenomena for a long time. In the early decades of the nineteenth century,

experiments on electric current by Oersted, Ampere and a few others established the fact that electricity and magnetism are inter-related. They

found that moving electric charges produce magnetic fields. For example, an electric current deflects a magnetic compass needle placed in its vicinity. This naturally raises the questions like: Is the converse effect possible? Can moving magnets produce electric currents? Does the nature permit such a relation between electricity and magnetism? The answer is resounding yes! The experiments of Michael Faraday in England and

Joseph Henry in USA, conducted around 1830, demonstrated conclusively that electric currents were induced in closed coils when subjected to changing magnetic fields. In this chapter, we will study the phenomena associated with changing magnetic fields and understand the underlying principles. The phenomenon in which electric current is generated by varying magnetic fields is appropriately called electromagnetic induction.


When Faraday first made public his discovery that relative motion between a bar magnet and a wire loop produced a small current in the

latter, he was asked, “What is the use of it?” His reply was: “What is the use of a new born baby?” The phenomenon of electromagnetic induction

is not merely of theoretical or academic interest but also of practical utility. Imagine a world where there is no electricity – no electric lights, no trains, no telephones and no personal computers. The pioneering experiments of Faraday and Henry have led directly to the development

of modern day generators and transformers. Today’s civilisation owes its progress to a great extent to the discovery of electromagnetic induction.

Who this course is for:

  • Physics enthusiast.
  • Beginners in Physics .
  • IIT-JEE & NEET aspirants