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Instructor: Go Leanerz FacultyLanguage: Malayalam
Boost your exam preparation with the KTU Circuits and Networks (EET201) Crash Course! This exam-focused course is designed to help you grasp the most important concepts quickly and efficiently. Master key circuit theorems like Thevenin's, Norton's, and Maximum Power Transfer, and dive into dynamic circuit analysis using Laplace Transforms for RL, RC, and RLC circuits.
You'll also tackle advanced topics such as three-phase networks, resonance, and two-port networks with ease. The course includes capsule notes and concise explanations to help you complete the syllabus in short time, giving you the confidence to ace your exams. Ideal for students looking for a fast-track learning solution!
Circuit theorems: DC and Sinusoidal steady state analysis of circuits with dependent and
independent sources applying Superposition principle, Source transformation, Thevenin’s,
Norton’s and Maximum Power Transfer theorems - Reciprocity theorem.
Analysis of first and second order dynamic circuits: Formulation of dynamic equations of
RL, RC and RLC series and parallel networks with dc excitation and initial conditions and
complete solution using Laplace Transforms - Time constant - Complete solution of RL, RC
and RLC circuits with sinusoidal excitation using Laplace Transforms – Damping ratio –
Over damped, under damped, critically damped and undamped RLC networks.
Transformed circuits in s-domain: Transform impedance/admittance of R, L and C - Mesh
analysis and node analysis of transformed circuits in s-domain. Transfer Function
representation – Poles and zeros.
Analysis of Coupled Circuits: – Dot polarity convention – Sinusoidal steady state analysis
of coupled circuits - Linear Transformer as a coupled circuit - Analysis of coupled circuits in
s-domain.
Three phase networks and resonance:Complex Power in sinusoidal steady state. Steady
state analysis of three-phase three-wire and four-wire unbalanced Y circuits, Unbalanced
Delta circuit, Neutral shift.
Resonance in Series and Parallel RLC circuits – Quality factor – Bandwidth – Impedance Vs
Frequency, Admittance Vs Frequency, Phase angle Vs frequency for series resonant circuit.
Two port networks: Driving point and transfer functions – Z, Y, h and T parameters -
Conditions for symmetry & reciprocity – relationship between parameter sets –
interconnections of two port networks (series, parallel and cascade) –– T-π transformation
At Golearnerz, Master Complex Concepts With Simple Lectures And Exam-focused Content. Score Good Marks In Less Time With Our Recorded Sessions. We Offer Affordable Online Learning For KTU Engineering Students.
Locate Us: Propoint Developers, Cyberpark Calicut, Kerala, Pin - 673014