JNTUK R20 B.Tech ECE 1-2 Network Analysis Material/ Notes PDF Download

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material
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JNTUK R20 B.Tech ECE 1-2 Network Analysis Material/ Notes PDF Download: Looking for a comprehensive study for JNTUK R20 B.Tech ECE 1-2 Network Analysis Material. Look no further! Our meticulously crafted resources cover all aspects of network analysis, including steady states, transient states, RLC circuits, Laplace transforms, two-port network parameters, and properties of LC networks and filters. With a focus on understanding fundamental concepts, our material aims to equip students with the knowledge required to excel in this subject.

Download our PDF for thorough preparation, ensuring you grasp the intricacies of RLC circuits and waveform analysis effectively. Mastering these topics will lay a strong foundation for your understanding of electrical engineering principles. Access our material now to ace your exams effortlessly!

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – Units

No. Of Units Name of the Unit
Unit – 1 Introduction to Electrical Circuits, Fundamentals and Network Topology, Network Topology
Unit – 2 Transients
Unit – 3 Steady State Analysis of A.C Circuits, Coupled Circuits
Unit – 4 Resonance, Network Theorems
Unit – 5 Two-port Networks

Unit 1 Syllabus PDF Download | JNTUK R20 B.Tech ECE Network Analysis Material

Introduction to Electrical Circuits: Network elements classification, Electric charge and current, Electric energy and potential, Resistance parameter – series and parallel combination, Inductance parameter – series and parallel combination, Capacitance parameter – series and parallel combination. Energy sources: Ideal, Non-ideal, Independent and dependent sources, Source transformation, Kirchoff’s laws, Mesh analysis, and Nodal analysis problem solving with resistances only including dependent sources also. (Text Books: 1,2,3, Reference Books: 3)

Fundamentals and Network Topology: Definitions of terms associated with periodic functions: Time Period, Angular velocity and frequency, RMS value, Average value, Form factor, and peak factor- problem-solving, Phase angle, Phasor representation, Addition and subtraction of phasors, mathematical representation of sinusoidal quantities, explanation with relevant theory, problem-solving. Principal of Duality with examples.

Network Topology: Definitions of branch, node, tree, planar, non-planar graph, incidence matrix, basic tie set schedule, basic cut set schedule. (Text Books: 2,3, Reference Books: 3)

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – PDF Download
To Download The JNTUK R20 B.Tech ECE 1-2 Network Analysis Unit 1 Notes PDF Download PDF

Unit 2 Syllabus PDF Download | JNTUK R20 B.Tech ECE Network Analysis Material

Transients: First-order differential equations, Definition of time constants, R-L circuit, R-C circuit with DC excitation, Evaluating initial conditions procedure, second-order differential equations, homogeneous, non-homogenous, problem solving using R-L-C elements with DC excitation and AC excitation, Response as related to s-plane rotation of roots. Solutions using Laplace transform method. (Text Books: 1,2,3, Reference Books: 1,3)

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – PDF Download
To Download The JNTUK R20 B.Tech ECE 1-2 Network Analysis Unit 2 Notes PDF Download PDF

Unit 3 Syllabus PDF Download | JNTUK R20 B.Tech ECE Network Analysis Material

Steady State Analysis of A.C Circuits: Impedance concept, phase angle, series R-L, R-C, R-L- C circuits problem-solving. Complex impedance and phasor notation for R-L, R-C, and R-LC problem solving using mesh and nodal analysis, Star-Delta conversion, and problem solving. (Text Books: 1,2, Reference Books: 3)

Coupled Circuits: Coupled Circuits: Self-inductance, Mutual inductance, Coefficient of coupling, analysis of coupled circuits, Natural current, Dot rule of coupled circuits, Conductively coupled equivalent circuits- problem-solving.

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – PDF Download
To Download The JNTUK R20 B.Tech ECE 1-2 Network Analysis Unit 3 Notes PDF Download PDF

Unit 4 Syllabus PDF Download | JNTUK R20 B.Tech ECE Network Analysis Material

Resonance: Introduction, Definition of Q, Series resonance, Bandwidth of series resonance, Parallel resonance, Condition for maximum impedance, current in anti-resonance, Bandwidth of parallel resonance, general case-resistance present in both branches, anti-resonance at all frequencies. (Text Books:2,3, Reference Books: 3)

Network Theorems: Thevinin’s, Norton’s, Milliman’s, Reciprocity, Compensation, Substitution, Superposition, Max Power Transfer, Tellegens- problem-solving using dependent sources also. (Text Books: 1,2,3, ReferenceBooks:2)

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – PDF Download
To Download The JNTUK R20 B.Tech ECE 1-2 Network Analysis Unit 4 Notes PDF Download PDF

Unit 5 Syllabus PDF Download | JNTUK R20 B.Tech ECE Network Analysis Material

Two-port Networks: Relationship of two-port networks, Z-parameters, Y-parameters, Transmission line parameters, h-parameters, Inverse h-parameters, Inverse Transmission line parameters, Relationship between parameter sets, Parallel connection of two port networks, Cascading of two-port networks, series connection of two port networks, problem solving including dependent sources also. (Text Books: 1,2, Reference Books: 1,3)

JNTUK R20 B.Tech ECE 1-2 Network Analysis Material – PDF Download
To Download The JNTUK R20 B.Tech ECE 1-2 Network Analysis Unit 5 Notes PDF Download PDF

JNTUK R20 B.Tech Network Analysis Material – Outcomes

  • Acquire foundational knowledge about basic network elements, understanding their roles and functions within a network.
  • Conduct detailed analysis of RLC circuits, examining their behavior under various conditions and scenarios.
  • Evaluate the performance of periodic waveforms, exploring their characteristics and applications.
  • Gain an understanding of the characteristics of two-port network parameters, including Z, Y, ABCD, h, and g parameters.
  • Analyze filter design concepts and their practical applications in real-world scenarios, understanding their significance in signal processing and communication systems.
  • Develop proficiency in applying theoretical concepts to practical situations, enhancing problem-solving skills in the field of electrical engineering.

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