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Lecture 1: Introduction of Network Theory
Lecture 2: Basic Concept of Network Theory
Lecture 3: Basic concept of Charges and Current
Lecture 5: Ohm's Law and Resistance || Part 01
Lecture 6: Ohm's Law and Resistance || Part 02
Lecture 7: Basic concept of Inductor and Inductance
Lecture 9: Type of Elements in Network theory
Lecture 10: Dependent and Independent sources
Lecture 11: Introduction of Kirchhoff's Current Law (KCL)
Lecture 12: Important Question Discussion on KCL || Part 01
Lecture 13: Important Question Discussion on KCL || Part 02
Lecture 15: Important GATE Questions on KVL || Part 02
Lecture 20: Equivalent Resistance Problem
Lecture 21: Equivalent Resistance of Infinite ladder
Lecture 22: Equivalent Resistance of Cube
Lecture 23: Equivalent Capacitance Problem
Lecture 26: Current Division Rule in Electrical Circuit
Lecture 27: Voltage Division Rule in Electrical Circuit
Lecture 28: Basic Nodal Analysis technique
Lecture 29: Question discussion on nodal analysis
Lecture 30: Question discussion on nodal analysis Part 02
Lecture 31: Concept of Mesh Analysis
Lecture 32: Question discussion on mesh analysis
Lecture 34: Source Transformation technique
Lecture 36: Incandescent Bulb problems
Lecture 37: Singularity Function
Lecture 38: Introduction of AC circuit analysis
Lecture 39: Lagging and leading concept in AC circuit
Lecture 40: Sinusoid and basic Trigonometric function
Lecture 41: Mean or Average value of AC
Lecture 42: What is RMS value | Easiest Explanation
Lecture 43: Phasor and phasor diagram
Lecture 44: Phasor analysis of R and L circuit
Lecture 45: Phasor analysis of C circuit
Lecture 46: Phasor analysis of series R-L circuit
Lecture 47: Phasor analysis of RC and RLC circuit
Lecture 49: GATE questions | AC ANALYSIS part 01
Lecture 51: Concept of Power and Power factor in AC Analysis
Lecture 53: Introduction of RESONANCE
Lecture 57: Superposition theorem | Question discussion
Lecture 58: Exceptions in super position theorem
Lecture 60: Thevenin's & Norton's theorem
Lecture 61: GATE QUESTION || Thevenin's & Norton's theorem
Lecture 62: Introduction || MAXIMUM POWER TRANSFER THEOREM
Lecture 63: GATE QUESTION || MAXIMUM POWER TRANSFER THEOREM
Lecture 64: RECIPROCITY THEOREM
Lecture 65: MILLMAN'S THEOREM
Lecture 66: TELLEGEN'S THEOREM || COMPENSATION THEOREM
Lecture 67: Introduction of Transient
Lecture 71: Question discussion on Transient
Lecture 72: Concept of Transient Analysis
Lecture 73: Important GATE Question || Transient Analysis
Lecture 74: Laplace Transform in Transient Analysis
Lecture 75: Introduction of Two Port Network
Lecture 82: Interconnection of Two Port Network
Lecture 84: Magnetic Coupled Circuit
Lecture 85: DOT Convention || Magnetic Coupled Circuit
Lecture 88: Important GATE QUESTION || Transformer with Dot
Lecture 89: Concept of Duality
Lecture 92: Star Delta Connections || Three Phase System
Lecture 94: Introduction to Graph Theory
Lecture 95: Introduction of Locus Diagram