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Induction Machines

Learn Induction Machines the exam way—clear concepts, worked examples, and 57 focused lessons in electrical engineering.

Instructor: DAKALA SREENIVASULU
Last updated Aug 2026 en
4 learners enrolled
all-levels

This course includes

  • — on-demand video
  • Access on mobile & desktop
  • Full lifetime access
  • Certificate of completion

Course content

7 sections · 57 lectures

  • Lec 01: Introduction to Machines Preview
  • Lec 02: Working Principle
  • Lec 03: Comparison between T.F. & I.M.
  • Lec 04: Rotating Magnetic Field-1
  • Lec 05: Rotating Magnetic Field-2

  • Lec 06: Construction of 3-Phase I.M. Preview
  • Lec 07: Types of slots
  • Lec 08: Semi closed & open type slots
  • Lec 09: Formation of poles
  • Lec 10: Types of stator winding
  • Lec 11: Types of Rotor
  • Lec 12: Construction squirrel cage rotar
  • Lec 13: Features of SCIM
  • Lec 14: Skewing of Rotar bars
  • Lec 15: Construction of Wound Rotor
  • Lec 16: Importance of Sliprings & external resistances
  • Lec 17: Comparison between SCIM & SRIM

  • Lec 18: Working of 3-phase I.M. Part 1 Preview
  • Lec 19: Working of 3-phase I.M. Part 2
  • Lec 20: Phasor diagram of 3-phase I.M.
  • Lec 21: Formulae
  • Lec 22: Problems on Stator & Rotor Field - 1
  • Lec 23: Problems on Frequency of Stator Voltage & Rotor Speed - 2
  • Lec 24: Problems on Voltage b/w slip rings & frequency - 3
  • Lec 25: Problems on Rotor Speed & No. of Phases- 4
  • Lec 26: Problems on Motor operates speed & Rotor Speed- 5

  • Lec 27: Changes in I.M. Parameters Preview
  • Lec 28: Equivalent circuit of Rotor
  • Lec 29: Power stage of Rotor
  • Lec 30: Excitation given to both stator & rotor
  • Lec 31: Rotor efficiency
  • Lec 32: Efficiency calculations

  • Lec 33: Approximate Torque Equation Preview
  • Lec 34: Observations on Torque
  • Lec 35: Maximum Torque -1
  • Lec 36: Maximum Torque -2
  • Lec 37: Starting Torque
  • Lec 38: Maximum Mechanical power developed
  • Lec 39: Torque-Slip characteristics
  • Lec 40: T-S characteristics with different rotor resistances
  • Lec 41: T-S characteristics with different rotor reactances & voltages
  • Lec 42: Important equations

  • Lec 43: T/F Vs I.M & Stator Equivalent circuit analysis Preview
  • Lec 44: Rotor Equivalent circuit analysis
  • Lec 45: Phasor diagram No load at standstill
  • Lec 46: Phasor diagram NO load at Slipspeed
  • Lec 47: Modified equivalent circuit
  • Lec 48: Parameters of 3-phas I.M.
  • Lec 49: Equivalent circuit analysis problem
  • Lec 50: No-load test
  • Lec 51: Blocked rotor test

  • Lec 52: Starting methods - 1 Preview
  • Lec 53: Starting methods - 2
  • Lec 54: Speed control of I.M.
  • Lec 55: Speed control from Rotor Side - 1
  • Lec 56: Speed control from Rotor Side - 2
  • Lec 57: Single phase I.M. Types

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Description

Induction Machines is an exam-focused electrical engineering programme designed for electrical engineering students targeting university exams and GATE-style practice (all levels). Lessons are paced for semester revision and competitive practice, with clear explanations you can replay anytime.

You will strengthen circuit intuition and numerical methods for Induction Machines, with diagrams and steps that match how examiners expect answers. Syllabus highlights include Introduction & Working principle, Construction of 3-Phase I.M., Working of 3-phase I.M., Equivalent Circuit of Rotor, Torque of 3-phase I.M, and Equivalent Circuit Analysis. Across 57 lessons, you will move from foundations to problem-solving patterns that show up in university papers and placement tests.

Taught by DAKALA SREENIVASULU, this course keeps theory short and practice heavy—so you can revise faster, spot examiner cues, and build confidence before mocks and finals.

Instructor

DAKALA SREENIVASULU

DAKALA SREENIVASULU

Course director · Semester exams

Faculty lead for Education4U exam-focused programmes across aptitude, reasoning, computer science, electrical and electronics.

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