• Unit 1.0: Introduction to Electrical Circuit Analysis (5 hrs)

    Circuit Elements, Linear and Non-Linear Devices, Active and Passive Devices, Unilateral and Bilateral Devices, Energy Sources (Voltage Source & Current Source), Source Transformation, Analysis with dependent current and voltage sources. Node and Mesh Analysis. Concept of duality and dual networks.
  • Unit 2.0: Network Theorems (8 hrs)

    Superposition theorem, Thevenin theorem, Norton theorem, Maximum power transfer theorem, Reciprocity theorem, Compensation theorem, Millman's Theorem, Tellegen's Theorem, Substitution Theorem.
  • Unit 3.0: Solution of First and Second Order Networks (8 hrs)

    Solution of first and second order differential equations for Series and parallel R-L, R-C, R-L-C circuits, initial and final conditions in network elements, forced and free response, time constants, steady state and transient state response.
  • Unit 4.0: Electrical Circuit Analysis Using Laplace Transforms (8 hrs)

    Review of Laplace Transform, Analysis of electrical circuits using Laplace Transform for standard inputs, inverse Laplace transform, transformed network with initial conditions. Transfer function representation. Poles and Zeros. Series and parallel resonances.
  • Unit 5.0: Two-Port Network (7 hrs)

    Two Port Networks, terminal pairs, relationship of two port variables, impedance parameters, admittance parameters, transmission parameters, and hybrid parameters, interconnections of two port networks.
  • Unit 6.0: Network Graph and Applications (6 hrs)

    Network Graph and their applications in Network Analysis.
  • Textbook / Reference Book

    1. M. E. Van Valkenburg, "Network Analysis", Prentice Hall, 2006.
    2. D. Roy Choudhury, "Networks and Systems", New Age International Publications, 1998.
    3. W. H. Hayt & J. E. Kemmerly, "Engineering Circuit Analysis", McGraw-Hill Education, 2013.
    4. C. K. Alexander and M. N. O. Sadiku, "Electric Circuits", McGraw-Hill Education, 2004.
    5. K. V. V. Murthy and M. S. Kamath, "Basic Circuit Analysis", Jaico Publishers, 1999.
    6. Kuo, Franklin. Network analysis and synthesis. John Wiley & Sons, 2006.
  • Unit 1 — Introduction to Electrical Circuit Analysis

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  • Unit 2 — Network Theorems

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  • Unit 3 — Solution of First and Second Order Networks

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  • Unit 4 — Electrical Circuit Analysis Using Laplace Transforms

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  • Unit 5 — Two-Port Network

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  • Unit 6 — Network Graph and Applications

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  • Experiment 1: Verification of the Superposition Theorem

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  • Experiment 2: Verification of Thevenin & Norton Theorem

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  • Experiment 3: Verification of the Maximum Power Transfer Theorem

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  • Experiment 4: To Calculate the Characteristics Impedance of T & Pi Network

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  • Experiment 5: To determine the Driving Point & Transfer Function of a Two-Port Network

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  • Experiment 6: To study Series, Parallel & Cascade Connection of Two-Port Network

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  • Experiment 7: To study Series & Parallel Resonance Circuit

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  • Experiment 8: To study Transient & Steady State Response Of R-L-C Circuit

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  • Experiment 9: To study the Frequency Response of the Twin T-Notch Filter

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  • Experiment 10: To study the Z-H Parameter of a Two-Port Network

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  • Assignment 1 — Circuit Elements & Network Analysis

    Unit 1
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  • Assignment 2 — Network Theorems

    Unit 2
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  • Assignment 3 — First & Second Order Networks

    Unit 3
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  • Assignment 4 — Laplace Transform Analysis

    Unit 4
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  • Assignment 5 — Two-Port Network Parameters

    Unit 5
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  • Assignment 6 — Network Graph Applications

    Unit 6
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  • Quiz 1 — Units 1 & 2

    Objective type
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  • Quiz 2 — Units 3 & 4

    Objective type
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  • End-Semester Model Test Paper

    All Units
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