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SHIV NADAR UNIVERSITY UNDERGRADUATE COURSE PROPOSAL I. COURSE TITLE: Introduction to Electrical Engineering II. COURSE CODE: EED 101 III. COURSE CREDITS (L:T:P): 3:1:1 IV. TOTAL CONTACT HOURS/ BATCH/WEEK (L:T:P): 3:2:2 V. NO. OF BATCHES: Two VI. COURSE TYPE (MAJOR/UWE/CCC/REAL/VELS/IC), PLEASE MENTION ALL THAT APPLIES: Major for all Engineering branches/UWE for others/REAL VII. PREREQUISITE/S (IF ANY): Mathematics and Physics courses in plus two OR equivalent or higher Mathematics and Physics courses at SNU VIII. COURSE COORDINATOR/INSTRUCTOR(S): Atul Vir Singh – Course Coordinator/ Instructor IX. SCHOOL/ DEPARTMENT: School of Engineering/Electrical Engineering department X. DISCIPLINES TO WHICH THE COURSE MAY BE OF INTEREST: All Engineering disciplines, B.S. Physics and Mathematics XI. COURSE CONTENT: Circuit Analysis Review of KCL and KVL, Basic Circuit Terminology-Node, loop, mesh, circuit, branch and path. Ideal sources, Source transformation, Star-Delta transformation. AC analysis - Phasor, Complex impedance, complex power, power factor, power triangle, impedance triangle, series and parallel circuits Network Theorems

Course Outline EED 101 Monsoon 2015 (1)

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Page 1: Course Outline EED 101 Monsoon 2015 (1)

SHIV NADAR UNIVERSITY

UNDERGRADUATE COURSE PROPOSAL

I. COURSE TITLE: Introduction to Electrical Engineering

II. COURSE CODE: EED 101

III. COURSE CREDITS (L:T:P): 3:1:1

IV. TOTAL CONTACT HOURS/ BATCH/WEEK (L:T:P): 3:2:2

V. NO. OF BATCHES: Two

VI. COURSE TYPE (MAJOR/UWE/CCC/REAL/VELS/IC), PLEASE MENTION ALL THAT APPLIES: Major for all Engineering branches/UWE for others/REAL

VII. PREREQUISITE/S (IF ANY): Mathematics and Physics courses in plus two OR equivalent or higher Mathematics and Physics courses at SNU

VIII. COURSE COORDINATOR/INSTRUCTOR(S):

Atul Vir Singh – Course Coordinator/ Instructor

IX. SCHOOL/ DEPARTMENT: School of Engineering/Electrical Engineering department

X. DISCIPLINES TO WHICH THE COURSE MAY BE OF INTEREST: All Engineering disciplines, B.S. Physics and Mathematics

XI. COURSE CONTENT:Circuit Analysis Review of KCL and KVL, Basic Circuit Terminology-Node, loop, mesh, circuit, branch and path. Ideal sources, Source transformation, Star-Delta transformation. AC analysis - Phasor, Complex impedance, complex power, power factor, power triangle, impedance triangle, series and parallel circuits

Network Theorems Network Theorems (A.C. and D.C Circuits) - Mesh and Nodal analysis, Thevenin, Norton, Maximum Power transfer, Millman, and Superposition theorem.Resonance and Transient Analysis Introduction to Resonance-series and parallel, half power frequency, resonant frequency, Bandwidth, Q factor. Transient Analysis-Step response, Forced Response of RL, RC & RLC Series circuits with Sinusoidal Excitation – Time Constant & Natural frequency of Oscillation – Laplace Transform applications.Electronic Devices and Components Review of Energy band diagram- Intrinsic and Extrinsic semiconductors- PN junction diodes and Zener diodes – characteristics, Diode Applications-Rectifiers, Clippers and Clampers. Transistors-PNP and NPN – operation, characteristics and applications, Biasing of Transistors. Operational Amplifiers-Introduction and

Page 2: Course Outline EED 101 Monsoon 2015 (1)

Applications - Inverting, Non Inverting, Voltage follower, Integrator, differentiator and difference amplifier, Summer.Three Phase and Transformers Introduction to three phase, power measurements in three phase. Transformer-Principle of operation, construction, phasor diagram of Ideal and practical transformer with load (R,L,C and their combinations) and no load, equivalent circuit, efficiency and voltage regulation of single phase transformer, O.C. and S.C. tests. Introduction to D.C. Machines.

XII. RECOMMENDED BOOK(S):

Text Books:

1. Introductory Circuit Analysis, Robert L. Boylestad, Twelfth edition, Pearson, 2012.

2. Introduction to Electric Circuits, Richard C. Dorf and James A. Svoboda, Wiley

India Private Limited, Sixth Edition, 2007.

3. Principles of Electric Circuits Conventional Current Version, Thomas L. Floyd,

Pearson Education International, Eighth Edition, 2007.

4. Electronic Devices and Circuit Theory Introductory Circuit Analysis, Robert L. Boylestad and Louis Nashelsky, Pearson, Tenth Edition, 2007.

Reference Books:

1. Fundamentals of Electrical Engineering, Second edition, Leonard S. Bobrow, Oxford

University press, 2011

2. A Textbook of Electrical Technology, B.L. Theraja and A.K Theraja, S.Chand and Co. Ltd.,

2000.

3. Fundamentals of Electric Circuits, Charles K. Alexander and Matthew N.O. Sadiku,

McGraw Hill Higher Education, Third Edition, 2005.

4. Electrical Engineering Fundamentals, Deltoro, Second Edition, PHI.

5. ASSESSMENT SCHEME:

Mid Semester Exam 25Surprise Quizzes 20End Semester Examination 35Lab Exam 20