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Showing posts with label EE 5th (V) Semester syllabus. Show all posts
Showing posts with label EE 5th (V) Semester syllabus. Show all posts
EE 5th sem syllabus RGTU/RGPV Electrical Engineering  EE 5th sem syllabus

EE 5th sem syllabus RGTU/RGPV Electrical Engineering EE 5th sem syllabus

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Rajiv Gandhi Technological University, Bhopal (MP)
B.E. Electrical Engineering (EE) Syllabus
RGPV / RGTU Fifth- V SEMESTER Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
EE 501 High Voltage Engineering Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
EE 502 Electronic Instrumentation Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
EE503 Signals & Systems Engineering Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
EE504 Digital Electronics & Logic Design Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
 EE505 Principles of Management & Managerial Economics Syllabus

RGTU/RGPV Electrical Engineering EE 5th Semester Syllabus
 EE506 Computer Programming V (Hardware Lab). Syllabus

EE 5th sem syllabus RGTU EE 5th sem syllabus RGTU/RGPV Electrical Engineering EE 5th sem syllabus RGPV EE 5th sem syllabus RGTU/RGPV Electrical Engineering EE 5th sem syllabus Electrical Engineering EE 5th sem syllabus
EE506 Computer Programming V (Hardware Lab). Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

EE506 Computer Programming V (Hardware Lab). Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

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EE506 Computer Programming V (Hardware Lab). Syllabus
RGTU/RGPV Computer Programming V (Hardware Lab). SYLLABUS
Electrical Engineering EE 5th (V) Semester Syllabus

EE506 Computer Programming V (Hardware Lab). Course Contents:

Essentials of Networking

Installation and implementation of:
1. Workstations in NOS.
2. Servers in NOS.
3. Enterprise servers in NOS


Options of NOS are
a. Microsoft Windows NT
b. Linux
c. Unix.
d. Sun-Solaris.

(H/W Examples: AS/400; RS-6000; IBM-Compatible Platform Silicon-Graphics for multimedia;
IBM-Net Finity Server)
EE505 Principles of Management & Managerial Economics Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

EE505 Principles of Management & Managerial Economics Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

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EE505 Principles of Management & Managerial Economics Syllabus
RGTU/RGPV Principles of Management & Managerial Economics SYLLABUS
Electrical Engineering EE 5th (V) Semester Syllabus

EE505 Principles of Management & Managerial Economics Course Contents:

Unit I
Management Concept: Management, Administration and Organization Difference and Relationship between Organization Management and Administration. Importance of Management, Characteristics of Management

Unit II
Management: Scientific Management, Principles of Management, Process of Management, Functions of Management, Levels of Management, Project Management

Unit III
Decision Making: Introduction and Definition, Types of Decisions, Techniques of Decision Making, Decision making under certainity Decision making under uncertainty, Decision Making under risk

Unit IV
Managerial Economics: Introduction, Factors Influencing Manager, Micro and Macro-economics, Theory of the Cost, Theory of the Firm, Theory of Production Function.

Unit V
Productivity: Input-Output Analysis, Micro-economics Applied to Plants and Industrial Undertakings, Production and Production system, Productivity, Factors affecting Productivity, Increasing Productivity of
Resources

Reference Books
1. The Practice of Management Peter Drucker Harper and Row
2. Essentials of Management: Koontz, Prentice Hall of India
3. Management Staner, Prentice Hall of India
4. Principle and Practice of Management T.N. Chhabra, Dhanpat Rai New Delhi
5. Industrial Organisation and Engineering T.R. Banga and S.C. Sharma,Economics Khanna Publishers
6. Industrial Engineering and Management O.P. Khanna, Dhanpat Rai
7. Managerial Economics Joel Dean, Prentice Hall of India
8. Managerial Economics Concepts & Cases V.L. Mote, Samuel Paul, G.S. Gupta, Tata Mc Graw Hill New Delhi
9. Managerial Economics V.L.Mote, Tata McGraw Hill
10. Analytical Models for Managerial and Engineering Economics Schweyer Reinhold
EE504 Digital Electronics & Logic Design Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

EE504 Digital Electronics & Logic Design Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

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EE504 Digital Electronics & Logic Design Syllabus
RGTU/RGPV Digital Electronics & Logic Design SYLLABUS
Electrical Engineering EE 5th (V) Semester Syllabus

EE504 Digital Electronics & Logic Design Course Contents:

Unit I
(A) Number System: Various number systems-decimal, Binary, Hex and Octal with mutual conversion, binary arithmetic in computers, addition, subtraction, multiplication and division.
(B) Binary Codes: Weighted, non-weighted codes, error detecting and correcting codes, alphanumeric codes, ASCII codes

Unit II : Boolean Algebra & Logic Hardware
(A) Boolean Algebra: AND, OR, NOT, NAND, NOR, EXOR, operations and gates, laws of Boolean algebra, reduction of Boolean expression, logic diagram, universal building blocks, negative logic (B) Logic hardware “ Diode as switch, Bipolar transistor as switch FET as switch, MOSFET (Deplection and Enhancement mode) IC Technology, MSI, LSI, VLSI, logic specification, logic families (DTL, TTL, ECL, MOS, CMOS)

Unit III : Combinational circuits and system
(A) Combinational logic: Minterms and maxterms, Truth table and Karnaugh mapping, reduction of Boolean expression with SOP, POS and mixed terms, incompletely specified functions multiple output minimization, variable mapping, minimization by labular/ Quine Mc cluskey method. 
(B) Encoders, Decoders, Multiplexers, Demultiplexers, code convertors, Binary address Digital comparator, parity checker/ generator, programming logic Array (PLA);

Unit IV : Sequential circuits
(A) State tables and diagrams, flip flop and its various types- JK, RS, T, D, pulse and edge triggered flip flops transition and excitation tables, timing diagrams.
(B) Shift registers: Series and parallel data transfer, ripple counters, synchronous counters, Modulo N counter design, Up down counters, Ring

Unit V : Memory & A/D Conversion
(A) Semiconductor ROM, Bipolar and MOS RAM, organization of RAM memory subsystem. Timing circuit, clock circuit and IC Timer.
(B) Analog/ Digital conversion: Digital to analog conversion, dualeslope integration successive approximation, parallel and parallel/ series conversion, converter specifications.

Reference Books:
1. An Introduction to Digital Computer Design by V. rajaraman and T. Radhakrishnan, 3rd Edn. PHI.
2. Digital Principles and Applications by A.P. Malvino and B.P. Leach, 4th Edn. McGraw Hill.
3. Digital computer Fundamentals by T.C. Bratee, 6th Edn. McGraw Hill.
4. Pulse, Digital and switching circuits-Millman
Text Books:
1. Digital Electronics by WH Gothmann, 2nd Edn. PHI.
EE503 Signals & Systems Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

EE503 Signals & Systems Syllabus Electrical Engineering(EE) 5th sem RGTU/RGPV Syllabus

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EE503 Signals & Systems Engineering Syllabus
RGTU/RGPV  Signals & Systems SYLLABUS
Electrical Engineering EE 5th (V) Semester Syllabus

EE503 Signals & Systems Course Contents:

Unit I
Dynamic Representation of Systems: Systems Attributes, Causality linearity, Stability, timeinvariance. Special Signals, Complex exponentials, Singularity functions (impulse and step functions)..
Linear Time-Invariant Systems: Differential equation representation convolution Integral. Discrete form of special functions. Discrete convolution and its properties. Realization of LTI system (differential
and difference equations).

Unit II
Fourier Analysis of Continuous Time Signals and Systems : Fourier Series, Fourier Transform and properties, Parseval’s theorem, Frequency response of LTI systems. Sampling Theorem.

Unit III
Fourier Analysis of Discrete Time Signals & Systems : Discrete-Time Fourier series, Discrete-Time Fourier Transform (including DFT) and properties. Frequency response of discrete time LTI systems.

Unit IV
Laplace Transform: Laplace Transform and its inverse: Definition, existence conditions, Region of Convergence and properties, Application of Laplace transform for the analysis of continuous time LTI system (stability etc.) Significance of poles & zeros.
Z-Transform : Z-Transform and its inverse: Definition, existence, Region of convergence and properties, Application of Z-Transform for the analysis of Discrete time LTI Systems, Significance of poles and zeros.

Unit V
Sampling: The sampling theorem, reconstruction of signal from its samples, sampling in the frequency domain, sampling of discrete-time signals.

References
1. Alan V. Oppenheim, Alan S. Willsky and H. Nawab, Signals and Systems, Prentice Hall, 1997
2. Simon Haykin, Communication Systems, 3rd Edition, John Wiley, 1995.