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Electrical Circuits

Learn Electrical Circuits the exam way—clear concepts, worked examples, and 77 focused lessons in electrical engineering.

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

This course includes

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

Course content

8 sections · 77 lectures

  • Lec-1 : Current Preview
  • Lec-2 : Voltage
  • Lec-3 : Ohm's law
  • Lec-4 : Energy and Power
  • Lec-5 : Resistance
  • Lec-6 : Circuit
  • Lec-7 : Inductance
  • Lec-8 : Capacitance
  • Lec-9 : Voltage And Current sources

  • Lec-10 : KVL Preview
  • Lec-11 : Voltage Division Rule
  • Lec-12 : KCL
  • Lec-13 : Current Division Rule
  • Lec-14 : Nodal Analysis
  • Lec-15 : Super node Analysis
  • Lec-16 : Mesh Analysis
  • Lec-17 : Super Mesh Analysis

  • Lec-18 : Star delta And Delta star transformation Preview
  • Lec-19 : Source transformation
  • Lec-20 : Superposition Theorem
  • Lec-21 : Example on Superposition Theorem
  • Lec-22 : Thevenin's Theorem
  • Lec-23 : Example on Thevenin's Theorem
  • Lec-24 : Norton's Theorem
  • Lec-25 : Example on Norton's Theorem
  • Lec-26 : Maximum power Transfer Theorem
  • Lec-27 : Reciprocity Theorem
  • Lec-28 : Tellegen's Theorem
  • Lec-29 : Millman's Theorem
  • Lec-30 : Substitution Theorem

  • Lec-31 : Alternating Current & Voltage Preview
  • Lec-32 : Average voltage
  • Lec-33 : RMS Value of Voltage
  • Lec-34 : Peak factor and Form Factor
  • Lec-35 : Purely Resistive Circuit
  • Lec-36 : Purely Inductive Circuit
  • Lec-37 : Purely Capacitive Circuit

  • Lec-38 : Impedance of Series RL Circuit Preview
  • Lec-39 : Impedance of Series RC Circuit
  • Lec-40 : Example on Series RL Circuit
  • Lec-41 : Example on Series RC Circuit
  • Lec-42 : Impedance of Series RLC Circuit
  • Lec-43 : Example on Series RLC
  • Lec-44 : RL Parallel Circuit Problem
  • Lec-45 : RC Parallel Circuit Problem
  • Lec-46 : Compound Circuits

  • Lec-47 : Instantaneous Power Preview
  • Lec-48 : Average Power
  • Lec-49 : Power Factor and Apparent Power
  • Lec-50 : Example on Apparent power, Average power, Power Factor
  • Lec-51 : Reactive Power
  • Lec-52 : Power Traingle
  • Lec-53 : Problem on Power and Power Factor

  • Lec-54 : Concept Of Mesh Analysis Preview
  • Lec-55 : Mesh Equations by inspection Method
  • Lec-56 : Example on Mesh Equations by inspection
  • Lec-57 : Nodal Analysis
  • Lec-58 : Example on Nodal Analysis
  • Lec-59 : Nodal Equation By Inspection Method
  • Lec-60 : Example On Node Equation by Inspection Method
  • Lec-61 : Superpostion Theorem
  • Lec-62 : Example on Super position Theorem
  • Lec-63 : Thevenin's Theorem
  • Lec-64 : Example on Thevenin's Theorem
  • Lec-65 : Norton's Theorem
  • Lec-66 : Example on Norton's Theorem
  • Lec-67 : Maximum power transfer Theorem
  • Lec-68 : Example on Maximum power transfer Theorem

  • Lec-69 : Series Resonance | RLC circuit Preview
  • Lec-70 : Impedance & Phase angle | RLC Circuit
  • Lec-71 : Resonance frequency | under maximum VL & VC
  • Lec-72 : VL & VC plots | Voltage Vs frequency
  • Lec-73 : RLC series circuit | Bandwidth
  • Lec-74 : Q factor RLC series circuit
  • Lec-75 : Parallel resonance
  • Lec-76 : Resonant frequency | Parallel resonant Circuit
  • Lec-77 : Impedance with frequency | Parallel resonant

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Description

Electrical Circuits 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 Electrical Circuits, with diagrams and steps that match how examiners expect answers. Syllabus highlights include Basics of Electrical circuits, Kirchhoff's laws & Analyzing Methods, Useful Theorems in Circuit Analysis, Introduction to AC & Phase Relations In RLC, Impedance, and Power and Power Factor. Across 77 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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