Showing posts with label E and I syllabus. Show all posts
Showing posts with label E and I syllabus. Show all posts
Monday, 2 July 2012

5th semester syllabus for Electronics and Instrumentation Engineering




UNIVERSITY DEPARTMENTS
ANNA UNIVERSITY  :: CHENNAI 600 025
REGULATIONS – 2008
B.E. ELECTRONICS AND INSTRUMENTATION ENGINEERING

SEMESTER V 

CODE NO  COURSE TITLE  L  T  P  C 
THEORY 
EI9301 Industrial Instrumentation – I  3  0  0  3
EI9302  Control Engineering  3  1  0  4
CS9311  Data Structures and Algorithm  3  0  0  3
EC9313  Microprocessors and Microcontrollers  3  0  0  3
EI9303  Virtual Instrumentation  3  1  0  4
  Elective – I  3  0  0  3
PRACTICAL 
EI9304  Programming and Data Structures Laboratory  0  0  3  2
EI9305  Microprocessors and Microcontrollers Laboratory  0  0  3  2
GE9371  Communication Skills and Soft Skills  0  0  2  1
 EI9301      INDUSTRIAL INSTRUMENTATION – I                   L T  P C 
    3  0  0  3 

AIM:
To provide an exposure to various measuring techniques for force, torque, velocity,
acceleration, vibration, density, temperature and pressure.

OBJECTIVES: 
  At the end of the course the student will have an insight about different
techniques, units and significance of measuring devices.
      
UNIT I   MEASUREMENT OF FORCE, TORQUE AND VELOCITY                 9
Electric balance – Different types of load cells:- Hydraulic,  Pneumatic strain gauge,
Magneto elastic and Piezo electric load cell  –  Different methods of torque
measurements:-  strain gauge and Relative angular twist  -  Speed measurement:-
Capacitive tacho, Dragcup type tacho, D.C. and A.C. Tachogenerators and
Stroboscope.
      
UNIT II         MEASUREMENT OF ACCELERATION, VIBRATION AND DENSITY   9                                                                      
Accelerometers:-  LVDT,  Piezo-electric, Strain gauge and Variable reluctance type
accelerometer – Mechanical type vibration instruments – Seismic instruments as an
accelerometer – Vibrometers - Calibration of Vibration pickups - Units of density and
specific gravity, Baume scale, and API scale  –  Density Measurement:-  Pressure
head type densitometers, Float type densitometers, Ultrasonic densitometer and
Bridge type gas densitometer.      

UNIT III  PRESSURE MEASUREMENT                                                  9
Units of pressure – Manometers  –  Types:- Elastic type pressure gauges, Bourdon
tube, Bellows and Diaphragms - Electrical methods:- Elastic elements with LVDT and
strain gauges, Capacitive type pressure gauge, Piezo-resistive pressure sensor and
Resonator pressure sensor  -  Measurement of vacuum:-  McLeod gauge, Thermal
conductivity gauges and Ionization gauges:- Cold cathode type and hot cathode type
- Testing and calibration of pressure gauges - Dead weight tester.

UNIT IV  TEMPERATURE MEASUREMENT             9
Definitions and standards  -  Primary and secondary fixed points  –Calibration of
thermometers - Different types of filled in system thermometers -Sources of errors in
filled in  systems and their compensation-Bimetallic thermometers  –  Electrical
methods of temperature measurement-Signal conditioning of RTDs and their
characteristics - 3 lead and 4 lead RTDs - Thermistors.

UNIT V  THERMOCOUPLES AND RADIATION PYROMETERS                     9                                                
Thermocouples  - Laws of thermocouple – Fabrication of industrial thermocouples –
Signal conditioning  -  Isothermal block reference junctions  –  Cold junction
compensation - High temperature Measurement – Radiation methods of temperature
measurement  –  Radiation fundamentals  -  Total radiation pyrometers  -  Optical
pyrometers  -  Two colour radiation pyrometers  –  Fiber Optic temperature
measurement.
                L: 45: TOTAL: 45 PERIODS  

TEXT BOOKS:
1.  Doeblin, E.O., “Measurement Systems Application and Design”, International
Student Edition, 5
th
Edition, McGraw - Hill Book Company, 2004.
2.  Jones, “Instrument Technology”, Vol.2, Butterworth-Heinemann, International
Edition, 2003.

REFERENCES: 

1.  Liptak, B.G., “Instrumentation Engineers Handbook (Measurement)”, CRC Press,
2005
2. Patranabis, D., “Principles of Industrial Instrumentation”, 2
nd
  Edition,  Tata
McGraw - Hill Publishing Company Ltd., New Delhi, 1999.
3.  Holman, P., “Experimental Methods for Engineers”, 6
th
  Edition, McGraw  -  Hill
Book Company, 2000.
4.  Nakra, B.C. and Choudhury, K.K., “Instrumentation Measurement and Analysis”,
Tata McGraw - Hill Pub. Co. Ltd, 2
nd
 Edition New Delhi, 2005.


EI 9302    CONTROL ENGINEERING                        L T P C                    
        3 1 0  4   
AIM: 
To provide a sound knowledge in the basic concepts of Linear Control Theory and
Design.

OBJECTIVES: 
  To understand the methods of representation of systems and their transfer
function models.
 To provide adequate  knowledge in time response of systems and steady state
error analysis.
 To give basic knowledge in obtaining the open loop and closed–loop frequency
responses of systems.
 To understand the concept of stability of control system and methods of stability
analysis.
 To study the three ways of designing compensators for a control system.
 
UNIT I   SYSTEMS AND THEIR REPRESENTATION                                      9  
Basic elements in control systems  – Open and Closed loop systems  –  Feedback
characteristics – Effects of feedback – Mathematical modeling of physical systems:-
Mechanical, Thermal, Hydraulic and Pneumatic systems - Transfer function – AC and
DC servomotors – Block diagram reduction techniques – Signal flow graph - Control
system components - Computer simulation.

UNIT II   TIME RESPONSE ANALYSIS                                                             9
Time response  –  Types of test inputs  -  I and II order system responses  -  Error
coefficients  –  Generalized error series  -  Steady state error  -  Time  domain
specifications - Computer simulation.

UNIT III  FREQUENCY RESPONSE ANALYSIS                                             12
Frequency response  -  Frequency domain specifications  -  Bode plot-  Polar plot  -
Determination of phase margin and gain margin - Constant M and N circles - Nichols
chart  - Determination of closed loop response from open loop response  - Computer
simulation.

UNIT IV  STABILITY OF CONTROL SYSTEM                                                   6
Concepts of stability  –  Location of roots in s-plane for stability  –  Routh Hurwitz
criterion  –  Root locus techniques  –  Construction  –  Nyquist stability criterion  -
Computer simulation.

UNIT V  CONTROL SYSTEM DESIGN                                                             9
PID controllers  - Performance criteria  - Selection of controller modes  –  Lag, Lead,
and Lag-Lead networks  –  Compensator design for desired response using Root
locus and Bode diagrams - Computer simulation.
                                                                                 L: 45 T: 15 TOTAL: 60 PERIODS 

TEXT BOOKS: 
1.  Gopal, M., “Control Systems, Principles and Design”, Tata McGraw-Hill Pub. Co.,
2
nd
 Edition, New Delhi, 2006.
2. Nagrath, I.J. and Gopal, M., “Control System Engineering”, New-age International
(P), 4th Edition Ltd., New Delhi, 2006.


REFERENCES:
1.  Ogata, K., “Modern Control Engineering”, Prentice Hall of India Ltd., 4
th
 Edition,
New Delhi, 2006.
2.  Kuo, B.C., “Automatic Control Systems”, Prentice Hall of India Ltd., New Delhi,
2003.


CS9311   DATA STRUCTURES AND ALGORITHM                  L  T  P C  
                              3  0  0  3                                  
AIM: 
To present the concept of different type data structures through algorithm.

OBJECTIVES: 
  To introduce the concepts of arrays and its representations.
 To study linked lists, stack and queue structures.
 To study trees, representation of trees, tree traversal and basic operations on
trees.
 To study some of the sorting and searching techniques.
 To study the concept of graphs, traversal techniques and minimum spanning tree.
  
UNIT I   ARRAYS AND LINKED LISTS                                                            8
Linear arrays: Representation of linear array, Traversing linear array and  Insertion
and deletion in linear arrays  -  Multidimensional arrays:-  Representation of  Ndimensional arrays in memory -  Linked list:- Representation of linked list in memory,
Traversing linked list, Insertions and deletions in linked list, Doubly linked list, Circular
linked list and Header linked list  -  Sorted linked list:-  Searching,  Insertion and
Deletion.

UNIT II   STACKS AND QUEUES                                                                      8
Stack:-  Representation of stack with array and linked list,  Simple applications,
Recursions and Implementation of recursive procedures -  Queues:- Representation
of queue with array and linked list, Priority queue, Representation of priority queue
with array and list, Circular queue and Dequeue.

UNIT III  TREES                                                                                                12
Binary Trees:- Types of binary trees, Representation of binary trees and Traversing
binary trees  –  Binary Search Tree:-  Searching, Inserting and Deleting in binary
search tree  –  AVL Search Tree:-  Insertion and Deletion in AVL tree  –  B  Trees:-
Searching, Inserting and Deleting in B trees – Heap Tree:-  Insertion and Deletion in
Heap tree – Threading in trees:- Minimum weighted path length tree – General tree
to binary tree representation.
 
UNIT IV  GRAPHS            9
Definitions  – Representation of graph with adjacency matrix and linked list  – Path
Matrix  –  Shortest path algorithms  –  Warshall’s algorithm, Dijkstra’s algorithm  –
Minimum spanning trees:-  Prim’s algorithm and Kruskal’s algorithm  –Traversing a
graph  – Breadth first search and tree  –  Depth first search and tree  –  Topological
sorting – Operations on graph.

UNIT V  SEARCHING AND SORTING                                         8
Binary search  –  Hashing:-  Hash function, Collision, Separate chaining, Open
addressing, Rehashing and  Extendible hashing  –  Sorting:-  Selection, Bubble,
Insertion, Merge, Quick, Heap and Radix Sort.
                                                                            L: 45: TOTAL: 45 PERIODS
TEXT BOOKS:

1.  Weiss, M. A., “Data Structures and Algorithm Analysis in C”,    4
th
  Impression,
Pearson Education, 2006.
2.  Tanenbaum, A.M., Langsam, Y. and Augenstein, M.J., “Data Structures Using C”,
1
st
 Impression, Pearson Education, 2006.
3. Lipschutz, S., Vijalakshmi Pai,G.A., “Data Structures”, Tata McGraw  -  Hill
Publishing Company Limited, 2006.

REFERENCES: 
1.  Kruse, R.L., Bruce, P. and Tondo, L.C.L., “Data Structures and Program Design
in C”, 16
th
 Printing, Prentice-Hall of India, 2001.
2. Michael Berman, A., “Data Structures Via C++”, 1
st
  Indian Edition, Oxford
University Press, 2007.
3. Sahni, S., “Data Structures, Algorithms and Applications in Java”, 2
nd
  Edition,
Universities Press, Hyderabad, 2005.
  
EC 9313     MICROPROCESSORS AND MICROCONTROLLERS           L T P C 
        3  0 0 3  
AIM: 
To expose the students  to Architecture and Programming of Microprocessors and
Microcontrollers.

OBJECTIVES:
  This course lays an in-depth foundation of 8 bit microprocessor using 8085 family
and overview of advanced processors, discusses organization, architecture and
operation of popular Intel 8051 family of 8 bit  microcontroller and the peripherals,
memory interfacing with these devices.

UNIT I   8085 MICROPROCESSOR                   9
Introduction to 8085  –  Architecture, Instruction set, Addressing modes, Interrupts
Timing diagram, memory and I/O interfacing – Programming exercises in 8085.

UNIT II  ADVANCED MICROPROCESSORS                   9
Overview of Microprocessors Architectures:-  8086/8088, 80186/80188, 80286,
80386, 80486, PENTIUM, PENTIUM PRO PROCESSOR, PENTIUM II, PENTIUM III,
PENTIUM 4.
 
UNIT III  PERIPHERAL INTERFACING         9
PPI (8255) - USART (8251) –Timer (8253) - Programmable DMA Controller (8257) -
Programmable Interrupt controller (8259) - Keyboard display controller (8279) - ADC
and DAC Interfacing.

UNIT IV  MICROCONTROLLERS           9
Intel 8031 and 8051 Architectures - Special function Registers (SFR) - Instruction set
- Addressing modes - Assembly language programming -
Timer and Counter Programming  - Serial Communication Interrupts programming  -
External Memory Interfacing.

UNIT V  MICROPROCESSOR BASED SYSTEMS DESIGN       9
Microprocessor based Data acquisition system  -  Implementation of discrete Control
sequence  –  Implementation of Digital PID Algorithm  -  Stepper Motor Interfacing  -
Case studies in Industrial Process Control Systems.

L: 45: TOTAL: 45 PERIODS  
TEXT BOOKS:
1.  Gaonkar, R.S., “Microprocessor Architecture Programming and Application”,
Wiley Eastern Ltd., New Delhi, 5
th
 Edition, 2002.
2. Hall, D.V., “Microprocessor and Interfacing, Programming and Hardware”, Tata
McGraw - Hill, 2
nd
 edition, 1999.
3.  Ayala, K.J., “The 8051 Microcontroller Architecture and  Programming
Applications”, Penram International Publishing (India) Pvt. Ltd, 2004.

REFERENCES: 
1.  Hint, K. and Tabak, D., “Microcontrollers, Architecture,  Implementation and
Programming”, McGraw - Hill International, USA, 1992.
2.  Mazidi, M.A. and Mazidi, J.G., “The 8051 Microcontroller and Embedded
Systems”, Prentice Hall, 2000.
3. Ray, A.K. and Bhurchandi, K.M.,  “Advanced Microprocessor and  Peripherals”,
Tata McGraw - Hill, 2002.
4.  Brey, B.B., “The Intel Microprocessors 8086/8088, 80186/80188, 80286, 80386,  
80486, PENTIUM, PENTIUM PRO PROCESSOR, PENTIUM II, PENTIUM III,
PENTIUM 4, Architecture, Programming and Interfacing”, 7
th
   Edition, Prentice
Hall of India Pvt. Ltd., 2006.
  
EI9303                  VIRTUAL INSTRUMENTATION                                  L T P C   
       3  1 0 4 
AIM: 
Focuses on the development of prototype Virtual Instrumentation.

OBJECTIVES:  
  To learn the programming, data acquisition hardware and implementing small
projects in VI.
UNIT I   INTRODUCTION                             9
Virtual Instrumentation  –  Definition and Flexibility  –  Block diagram and              
Architecture of Virtual Instruments  –  Virtual Instruments versus Traditional
Instruments  –  Review of software in Virtual Instrumentation  –  VI programming
techniques  - VI, sub VI, Loops and Charts, Arrays, Clusters and Graphs, Case and
Sequence Structures, Formula nodes, String and File Input/Output.

UNIT II   DATA ACQUISITION IN VI                                                                  9
A/D and D/A Converters, plug-in Analog Input/Output cards  -  Digital  Input and
Output Cards, Organization of the DAQ VI system  -  Opto Isolation  –  Performing
analog input and  analog output  -  Scanning multiple analog channels  -   Issues
involved in selection   of   Data  acquisition cards  - Data acquisition modules with
serial communication  - Design of digital voltmeters with transducer input  –  Timers
and  Counters .

UNIT III  COMMUNICATION NETWORKED MODULES                                   9
Introduction to PC Buses – Local busses:- ISA, PCI, RS232, RS422 and  
RS485 –  Interface  Buses:- USB,  PCMCIA,  VXI,  SCXI and  PXI  -Instrumentation
Buses :-   Modbus and GPIB  -  Networked busses  –  ISO/OSI  Reference model,
Ethernet and TCP / IP Protocols.

UNIT IV  REAL TIME CONTROL IN VI                                                              9
Design of ON/OFF controller and Proportional controller for a mathematically
described processes using VI software  – Modeling and basic control of Level and
Reactor Processes – Case studies on development of HMI, SCADA in VI.

UNIT V  APPLICATIONS                                                                                   9
PC based digital storage oscilloscope  -  Sensor Technology and Signal          
Processing  - Virtual Laboratory  - Spectrum Analyser  - Waveform Generator – Data
visualization from multiple locations:- Distributed monitoring and control - Vision and
Motion Control.      
                      L: 45 P: 15 TOTAL: 60 PERIODS  
TEXT BOOKS: 

1.  Nadovich, C., “Synthetic Instruments Concepts and Applications”, Elsevier, 2005.
2. Bitter, R., Mohiuddin, T. and  Nawrocki, M., “Labview Advanced  Programming
Techniques”, CRC Press, 2
nd
 Edition, 2007.
3.  Gupta, S. and Gupta, J. P., “PC Interfacing for Data Acquisition and Process
Control”, 2
nd
 Edition, Instrument Society of America, 1994.  

REFERENCES:
1.  Jamal, R. and Picklik, H., “Labview  –  Applications and Solutions”,  National
Instruments Release.
2. Johnson, G., “Labview Graphical programming”, McGraw-Hill, Newyork, 1997.
3. Wells, L.K. and Travis, J., “Labview for Everyone”, Prentice Hall, New  Jersey,
1997.
4. Buchanan, W., “Computer Busses”, CRC Press, 2000.
  
EI9304                  PROGRAMMING AND DATA STRUCTURES                    L T P C 
                              LABORATORY                                                                    0 0 3 2   
                                                   
AIM: 
To practice the various Data Structures through Programming Languages like C, C++
and Java.

OBJECTIVES:
  To facilitate the students, to write programs in C, C++ and Java.
 To implement the various data structures as Abstract Data Types.
 To write programs to solve problems using the ADTs.

1.  Implementation of Linear and Binary Search Algorithm using C/C++/Java.
2. Implementation of Selection Sort, Bubble  Sort, Insertion Sort Algorithmusing
C/C++/Java.
3. Implementation of Merge sort (array) and Quick Sort (Stack) Algorithm  using
C/C++/Java.
4. Implementation of Heap sort (tree) Algorithm using C/C++/Java.
5. Implementation of Linked List Algorithm (Insertions and Deletions  anywhere in
the list) Using C/C++/Java.
6. Implementation of Sorted Linked List Algorithm (Searching, Insertions and
Deletions) using C/C++/Java.
7. Implementation of Stack Applications (Wellformedness of parenthesis, Evaluation
of postfix expression, Infix expression to postfix expression    conversion) using
C/C++/Java.
8. Implementation of Linear Queue with Linked List using C/C++/Java.
9. Operations in a circular queue with array using C/C++/Java.
10. Queue operations (Priority queue) with priority of items using C/C++/Java.
11. Construction of Binary Search Tree and Traversal (pre, in and post order) using
C/C++/Java.
12. Insertions and deletions in Binary Search Tree using C/C++/Java.

  TOTAL: 45 PERIODS 

EI9305    MICROPROCESSORS AND MICROCONTROLLERS             L T P C 
                          LABORATORY               0 0 3  2        

1.  8085 Assembly Language Programming Exercises.
2. Interfacing 8255 and 8253 with 8085.
3. Interfacing 8279 and 8251 with 8085.
4.    Interfacing 8259 with 8085.
5.    Interfacing Stepper motor with 8085.
6.   8051 Assembly Language Programming Exercises.
7.   Interfacing ADC with Microprocessor and Microcontroller.
8.   Interfacing DAC with Microprocessor and Microcontroller.
9.    Microprocessor based Data Logger.
10.  Microprocessor based Traffic light controller.
11.  Microprocessor based PID controller.
12.  LCD Display Interface with 8051.
      TOTAL: 45 PERIODS   26
GE9371       COMMUNICATION SKILLS AND SOFT SKILLS                 L T P C  
                                        0 0 2 1   
             
AIM: 
To enhance the overall capability of students and to equip them with the necessary
Communication Skills and Soft Skills that would help them excel in their profession.

OBJECTIVES: 
  To equip students of engineering and technology with effective speaking and
listening skills in English.
 To help them develop their soft skills and interpersonal skills, which will make the
transition from college to workplace smoother and help them excel in their jobs.
 To enhance the performance of students at Placement Interviews, Group
Discussions and other recruitment exercises.

     A.   Viewing and discussing audio-visual materials                         (6 periods)  
                                                                                                      
1.  Resume / Report Preparation / Letter Writing:                                          (2)

      Letter writing – Job application with Resume - Project report - Email etiquette.

2.  Presentation skills:                                                                                      (1)

Elements of effective presentation – Structure of presentation  - Presentation
tools – Body language.

      3.   Soft Skills:                                                                                                     (1)
          
Time management – Stress management – Assertiveness – Negotiation
strategies.

4.  Group Discussion:                                                                                       (1)

Group discussion as part of selection process, Structure of group discussion –
Strategies in group discussion – Mock group discussions.

5.  Interview Skills:                                                                                            (1)
Kinds of interviews – Interview techniques – Corporate culture – Mock
interviews.
(Career Lab Software may be used for this section).

    
Note: Career Lab software may be used to learn the skills, to be applied in the
practice session.

     B.   Practice session                                                                           (24 periods)
1.  Resume / Report Preparation / Letter writing: Students prepare their  (4)
      own resume and report.
2. Presentation Skills: Students make presentations on given topics.        (8)
3. Group Discussion: Students participate in group discussions.                (6)
4. Interview Skills: Students participate in Mock  Interviews                        (6)

 
REFERENCES: 

1.  Anderson, P.V,  Technical Communication, Thomson Wadsworth, Sixth
Edition, New Delhi, 2007.
2. Prakash P,  Verbal and Non-Verbal Reasoning, Macmillan India Ltd.,
Second Edition, New Delhi, 2004.
3. John Seely, The Oxford Guide to Writing and Speaking, Oxford University
Press, New Delhi 2004.
4. David Evans, Decisionmaker, Cambridge University Press, 1997.
5. Thorpe, E  and Thorpe, S Objective English, Pearson Education,
      Second Edition, New Delhi 2007.
6. Turton, N.D and Heaton,  J.B,  Dictionary of Common Errors


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Friday, 15 June 2012

3rd semester syllabus for Electronics and Instrumentation engineering


 UNIVERSITY DEPARTMENTS
ANNA UNIVERSITY :: CHENNAI 600 025
REGULATIONS – 2008
CURRICULUM FROM III TO VIII SEMESTERS FOR
B.E. ELECTRONICS AND INSTRUMENTATION ENGINEERING
SEMESTER III
CODE NO COURSE TITLE L T P C
THEORY

EI9201 Digital Logic Theory 3 0 0 3
EE9216 Electrical Machines 3 0 0 3
MA9211 Mathematics – III 3 1 0 4
EC9211 Electron Devices and Circuits 3 0 0 3
ME9214 Thermodynamics 2 0 0 2
CE9202 Fluid Mechanics 2 0 0 2
PRACTICAL
EI9202 Analog and Digital Electronics Laboratory 0 0 3 2
EE9217 Electrical Machines Laboratory 0 0 3 2
ME9212 Mechanical Science Laboratory 0 0 3 2
TOTAL 19 1 9 23
 EI9201 DIGITAL LOGIC THEORY L T P C
3 0 0 3 AIM:

The course is designed to introduce the fundamental concepts and design of digital
system.
OBJECTIVES:
  •  To introduce the basic concept about the number systems, binary codes and combinational circuits.
  • To cover the basic postulates of Boolean Algebra and the implementation ofcircuits using gates.
  •  To provide an introduction to flip flops and to design a synchronous circuit.
  •  To introduce the most common digital logic families.
PREREQUISITE
Not Required.
UNIT I BOOLEAN ALGEBRA 9
Review of Number Systems – Fixed point and floating point representations –
Review of computer codes - Number complements - Signed number addition and
subtraction - Boolean Algebra - Demorgan’s theorem - Canonical forms -
Simplification of Boolean functions using K-maps and Quine Mclusky methods.
UNIT II COMBINATIONAL LOGIC DESIGN 9
Gates - Universal set of modules - Standard combinational modules - Decoders -
Encoders – Multiplexers - Demultiplexers – Comparators - Code Converters -
Function realization using Gates and Multiplexers – Adders - Carry Look Ahead
Adder - Subtraction using adders - BCD adder.
UNIT III SEQUENTIAL LOGIC DESIGN 9
Basic latch circuit - Flip-flops - Truth table – Excitation table - Analysis and design of
synchronous sequential circuits - Transition table - Transition diagram – Introduction
to asynchronous sequential circuits - Race in sequential circuits - Hazards -
Techniques for controlling hazards.
UNIT IV COUNTERS AND SHIFT REGISTERS 9
Asynchronous Counter design and Synchronous Counter design - Up/Down counter -
Modulus counter - Shift Registers - Johnson Counter – Ring Counter -Application of
Counters and Shift Registers.
UNIT V INTRODUCTION TO LOGIC FAMILIES 9
Introduction to logic families: - RTL, DTL, ECL, TTL, NMOS, CMOS - GaAs Building
blocks - Operating conditions –Interfacing between different families.
L : 45 : TOTAL: 45 PERIODS
TEXT BOOKS:
1. Morris Mano, M., “Digital Design”, Prentice Hall, 2006.
2. Malvino, A., and Leach, D., “Digital Principles and Applications”, Tata McGraw
Hill, 2002.
REFERENCES:
1. Tocci, R.J., “Digital systems: Principles and Applications”, Prentice Hall, 8th
Edition, 2005.
2. Taub and Schilling, “Digital Integrated Electronics”, Tata McGraw Hill,1998.
3. Floyd and Jain, “Digital Fundamentals”, Pearson Education, 2003.

EE9216 ELECTRICAL MACHINES L T P C
3 0 0 3
AIM:

To impart basic knowledge on Electrical machines, principles and its behavior.
OBJECTIVES:
At the end of this course, student would have been exposed to:
  •  Theory of structures, operating principle, characteristics, and applications of D.C and A.C rotating machines and transformers in detail.
  •  Introductory knowledge on Special Machines.
PREREQUISITE
Physics, Electromagnetics and Electric circuit analysis.
UNIT I D.C. MACHINES 12
Construction of D.C. Machines - Principle and theory of operation of D.C. generator -
EMF equation - Characteristics of D.C. generators - Armature reaction –
Commutation - Principle of operation of D.C. motor - Voltage equation - Torque
equation - Types of D.C. motors and their characteristics –Starters - Speed control of
D.C. motors - Applications.
UNIT II TRANSFORMERS 9
Principle - Theory of ideal transformer - EMF equation - Construction details of shell
and core type transformers - Tests on transformers - Equivalent circuit - Phasor
diagram - Regulation and efficiency of a transformer - Introduction to three - phase
transformer connections.
UNIT III SYNCHRONOUS MACHINES 8
Principle of alternators:- Construction details, Equation of induced EMF and Vector
diagram - Synchronous motor:- Starting methods, Torque, V curves, Speed control
and Hunting.
UNIT IV INDUCTION MACHINES 9
Induction motor:- Construction and principle of operation, Classification of induction
motor, Torque equation, Condition for maximum torque, Equivalent Circuit, Starting
methods and Speed control of induction motors.
UNIT V SPECIAL MACHINES 7
Types of single phase motor –Double revolving field theory – Cross field theory –
Capacitor start capacitor run motors – Shaded pole motor – Repulsion type motor –
Universal motor – Hysteresis motor - Permanent magnet synchronous motor –
Switched reluctance motor – Brushless D.C motor.
L : 45: TOTAL: 45 PERIODS
TEXT BOOKS:

1. Nagrath, I.J., and Kothari, D.P., “ Electrical Machines”, Tata McGraw - Hill, 1997.
2. Fitzgerald A.E, Kingsley C., Umans, S. and Umans S.D., “Electric Machinery”,
McGraw-Hill, Singapore, 2000.
REFERENCES:
1. Theraja, B.L., “A Text book of Electrical Technology”, Vol.II, S.C Chand and Co.,
New Delhi, 2007.
2. Del Toro, V., “Electrical Engineering Fundamentals”, Prentice Hall of India, New
Delhi, 1995.
3. Cotton, H., “Advanced Electrical Technology”, Sir Isaac Pitman and Sons Ltd.,
London, 1999.

MA9211 MATHEMATICS III L T P C

(Common to all branches of BE / B.Tech Programmes) 3 1 0 4
AIM:
To facilitate the understanding of the principles and to cultivate the art of formulating
physical problems in the language of mathematics.
OBJECTIVES:
  •  To introduce Fourier series analysis which is central to many applications in engineering apart from its use in solving boundary value problems
  •  To acquaint the student with Fourier transform techniques used in wide variety of situations in which the functions used are not periodic
  •  To introduce the effective mathematical tools for the solutions of partial differential equations that model physical processes
  •  To develop Z- transform techniques which will perform the same task for discrete time systems as Laplace Transform, a valuable aid in analysis of continuous time systems
UNIT I FOURIER SERIES 9+3
Dirichlet’s conditions – General Fourier series – Odd and even functions – Half-range
Sine and Cosine series – Complex form of Fourier series – Parseval’s identity –
Harmonic Analysis.
UNIT II FOURIER TRANSFORM 9+3
Fourier integral theorem – Fourier transform pair-Sine and Cosine transforms –
Properties – Transform of elementary functions – Convolution theorem – Parseval’s
identity.
UNIT III PARTIAL DIFFERENTIAL EQUATIONS 9+3
Formation – Solutions of first order equations – Standard types and Equations
reducible to standard types – Singular solutions – Lagrange’s Linear equation –
Integral surface passing through a given curve – Solution of linear equations of
higher order with constant coefficients.
UNIT IV APPLICATIONS OF PARTIAL DIFFERENTIAL EQUATIONS 9+3
Method of separation of Variables – Solutions of one dimensional wave equation and
one-dimensional heat equation – Steady state solution of two-dimensional heat
equation – Fourier series solutions in Cartesian coordinates.
UNIT V Z – TRANSFORM AND DIFFERENCE EQUATIONS 9+3
Z-transform – Elementary properties – Inverse Z-transform – Convolution theorem –
Initial and Final value theorems – Formation of difference equation – Solution of
difference equation using Z-transform.
L: 45, T: 15, TOTAL = 60 PERIODS
TEXT BOOK:

1. Grewal, B.S. “Higher Engineering Mathematics”, Khanna Publications (2007)
REFERENCES:
1. Glyn James, “Advanced Modern Engineering Mathematics”, Pearson Education
(2007)
2. Ramana B.V., “Higher Engineering Mathematics” Tata McGraw Hill (2007).
3. Bali N.P. and Manish Goyal, “A Text Book of Engineering” 7th Edition (2007)
Lakshmi Publications (P) Limited, New Delhi.

EC9211 ELECTRON DEVICES AND CIRCUITS L T P C
3 0 0 3
AIM:

To provide an exposure to various electronic devices and electronic circuits.
OBJECTIVES:
  •  At the end of the course, students’ will have the knowledge about functioning of various types of devices and design of various electronic circuits.
UNIT I SEMICONDUCTOR DIODE AND BJT 9
PN Junction – Current components in a PN diode – Junction capacitance – Junction
diode switching time – Zener diode – Varactor diode – Tunnel diode – Schottky
diode – Transistor Structure – Basic Transistor operation – Transistor characteristics
and parameters – The transistor as a switch, as an amplifier – Transistor bias
circuits:- Voltage divider bias circuits, base bias circuits, emitter bias circuits, collector
feedback bias circuits – DC load line – AC load line- bias stabilization, thermal
runaway and thermal stability.
UNIT II FET, UJT and SCR 9
JFET characteristics and parameters – JFET biasing, self bias, voltage divider bias –
Q point, stability over temperature – MOSFET D-MOSFET, E-MOSFET – MOSFET
characteristics and parameters – MOSFET biasing, zero bias, voltage divider bias
method, drain feedback bias – Characteristics and applications of UJT, SCR, DIAC,
TRIAC.
UNIT III AMPLIFIERS 9
CE, CC and CB amplifiers - Small signal low frequency transistor amplifier circuits - h
parameter representation of a transistor - Analysis of single stage transistor amplifier
using parameters voltage gain, current gain, input impedance and output impedancefrequency
response - RC coupled amplifier.
Classification of Power amplifiers:- Class A, B, AB and C Power amplifiers-Push-Pull
and Complementary Symmetry Push-Pull amplifiers - Design of power output,
efficiency and cross-over distortion.
UNIT IV FEEDBACK AMPLIFIERS AND OSCILLATORS 9
Advantages of negative feedback - Voltage/current, series/shunt feedback-Positive
feedback - Condition for oscillators - Phase shift - Wein Bridge – Hartley - Colpitts
and crystal oscillators.
UNIT V PULSE CIRCUITS AND POWER SUPPLIES 9
RC wave shaping circuits - Diode clampers and clippers – Multivibrators -Schmitt
triggers - UJT - Saw tooth oscillators - Single and polyphase rectifiers and analysis of
filter circuits - Design of zener and transistor series voltage regulators - Switched
mode power supplies.
L: 45 TOTAL: 45 PERIODS TEXT BOOKS:
1. Millman and Halkias, “Electronic Devices and Circuits”, Tata McGraw– Hill, 2007.
2. Floyd, T.L, “Electronic Devices” 6th Edition, Pearson Education, 2003.
3. Millman and Halkias, “Integrated Electronics”, McGraw-Hill, 2004.
REFERENCES:
1. Mottershead, A., “Electronic Devices and Circuits an Introduction”, Prentice Hall
of India, 2003.
2. Boylsted and Nashelsky, “Electronic Devices and Circuit Theory”, Prentice Hall of
India, 6th Edition, 1999.
3. Streetman, B. and Sanjay, B., “Solid State Electronic Devices”, Prentice-Hall of
India, 5th Edition, 2005.
4. Bell, D.A., “Electronic Devices and Circuits”, Prentice Hall of India, 4th Edition,
1999
5. Millman, J., Prakash Rao., M.S. and Taub, H., “Pulse Digital and Switching Wave
Forms”, McGraw-Hill, 2007.

ME9214 THERMODYNAMICS L T P C
2 0 0 2
AIM:

To study the basic concepts of thermodynamics and apply it to various applications.
OBJECTIVES:
 To integrate the concepts, Laws and Methodologies from Thermodynamics for
the analysis of cyclic process.
 To apply the Thermodynamics concepts into various Thermal applications like, IC
Engines, Thermal Power Plant, Air Conditioning and Heat transfer.
PREREQUISITE
Not Required
UNIT I LAWS OF THERMODYNAMICS 6
Thermodynamic System - Zeroth Law of Thermodynamics - First Law of
Thermodynamics - Concept of Internal Energy and Enthalpy applications to open and
closed systems - Second Law of Thermodynamics - Concept of Entropy.
UNIT II GAS LAWS, AIR CYCLES AND COMPRESSORS 6
Basic IC Engine and Gas turbine cycles – Single stage and Multistage reciprocating
compressors.
UNIT III STEAM BOILERS 6
Formation of steam - Properties of steam – Rankine cycle – Modern features of high
pressure boilers – Mountings and accessories.
UNIT IV REFRIGERATION 6
Basic Thermodynamics of refrigerators and heat pumps - Various methods of
producing refrigerating effects – Vapour compression cycle – P-H and T-S diagrams -
Air conditioning.
UNIT V HEAT TRANSFER 6
One dimensional heat conduction:- Plain wall, Cylinder, Sphere and Composite walls
– Heat transfer through extended surfaces – Free and forced convections –
Radiation:- Black body and Gray body.
L: 30 TOTAL: 30 PERIODS
TEXT BOOK:

1. Nag, P.K., “Basics and Applied Thermodynamics”, Tata McGraw – Hill Pub. Co.,
2002.
REFERENCE:
1. Reynolds, W.C. and Perkins, H.C., “Engineering Thermodynamics”, International
Student Edition, McGraw-Hill Co. Ltd., 2nd Edition, 1990.

CE9202 FLUID MECHANICS L T P C
2 0 0 2
AIM:

To study the various types of fluid flow, pumps and turbines.
OBJECTIVES:
  • This course will give an introduction to the fundamental properties of fluids, dimensional analysis, model analysis, pumps, turbines and their applications.
PREREQUISITE
Not required
UNIT I BASIC CONCEPTS OF FLUID MECHANICS 6
Introduction – Classification – Types of fluids – Properties – Laws of Pressure –
Atmospheric Pressure, Gauge Pressure, Absolute Pressure - Pressure
measurement:- Manometers and Mechanical gauges.
UNIT II FLOW OF FLUIDS 6
Introduction – Types of fluid flow – Velocity – Rate equation of continuity – Energy of
a liquid in motion – Head of a liquid – Bernoulli’s theorem – Orifice and Mouthpiece.
UNIT III DIMENSIONAL AND MODEL ANALYSIS 6
Introduction – Dimensions – Dimensional analysis – Rayleigh’s and Buckingham’s
method û similitude - Dimensionless numbers and their significance – Similarity
Laws.
UNIT IV PUMPS 6
Introduction – Reciprocating pump:- Construction details, Co-efficient of discharge,
Slip and Power – Centrifugal pump:- Classification, Working principle and Specific
speed.
UNIT V TURBINES 6
Turbine:- Classification of Turbines and Working Principle.
L: 30 TOTAL: 30 PERIODS
TEXT BOOK:
1. Bansal, R.K., “Fluid Mechanics”, Laxmi publishers, 2007
REFERENCES:
1. Shames, I.H., “Mechanics of Fluids”, Kogakusha, Tokyo, 1998.
2. Radhakrishnan, E., “Introduction to Fluid Mechanics”, Prentice Hall, India 1999.
3. Rajput R.K., “Fluid Mechanics and Hydraulic Machines”, S.Chand and Co., India,
1998.
4. Kumar, K.L., “Fluid Mechanics”, S.Chand Publishers, New Delhi, 2004.

EI9202 ANALOG AND DIGITAL ELECTRONICS LABORATORY L T P C
0 0 3 2

1. Construction of Rectifiers and Voltage Regulators.
2. Frequency responses of BJT and FET based Amplifiers.
3. Characteristic of Transistor under common emitter, common collector and
common base configurations.
4. Construction of UJT Relaxation Oscillator.
5. Design of Wave Shaping Circuits.
6. Design of RC and LC Oscillators.
7. Design of Binary Adder / Subtractor / Comparator.
8. Study of Shift Registers and Counters.
9. Design of Multiplexer / Demultiplexer and Encoder / Decoder.
10. Characteristics of FET and UJT.
11. Design of BCD to Seven segment Decoder.
12. Construction and Verification of Circuits using Virtual Instrumentation Package -
Characteristics of Semiconductor diodes / SCR / DIAC / TRIAC.
TOTAL: 45 PERIODS
EE9217 ELECTRICAL MACHINES LABORATORY L T P C
0 0 3 2

1. Open circuit characteristic of DC Shunt Generator.
2. Load test on DC Shunt Generator.
3. Speed control of DC Shunt Motor.
4. Brake test on DC Shunt Motor.
5. Brake test on DC Series Motor.
6. Regulation characteristic of three - phase Alternator.
7. Open circuit and short circuit tests on Single - phase Transformer.
8. Load test on Single - phase Transformer
9. Load test on Three - phase Induction Motor.
10. Brake test on Single - phase Induction Motor.
11. ‘V’ curves of Synchronous Motor.
12. Power measurement in three - phase circuit using two - wattmeter method.
TOTAL: 45 PERIODS

ME9212 MECHANICAL SCIENCE LABORATORY LT P C
0 0 3 2

1. Tension Test
2. Torsion Test
3. Testing of springs
4. Impact test i) Izod, ii) Charpy
5. Hardness test i) Vickers, ii) Brinell, iii) Rockwell, iv) Shore
6. Deflection of Beams
7. Dye Penetrant Test
8. Performance test on a 4 stroke engine
9. Viscosity determination of the given fluid
10. Moment of inertia of connecting rod
11. Determination of Effectiveness of a parallel and counter flow heat exchangers
12. Valve timing of a 4 stroke engine and port timing of a 2 stroke engine
13. Tensile testing of polymers
14. Flex fatigue test for elastomers
15. Hardness test for rubber and plastics.
16. Injection moulding machine operation
TOTAL: 45 PERIODS

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Tuesday, 12 June 2012

Electronics and Instrumentation Engineering Syllabus


To Download this click here

E & I Syllabus


ANNA UNIVERSITY : : CHENNAI – 600 025
UNIVERSITY DEPARTMENTS
R – 2008
B.E. ELECTRICAL AND INSTRUMENTATION ENGINEERING
I & II SEMESTERS CURRICULUM AND SYLLABI
SEMESTER - I
CODE NO. COURSE TITLE L T P C
THEORY
HS9111 Technical English - I 3 1 0 4
MA9111 Mathematics - I 3 1 0 4
PH9111 Engineering Physics 3 0 0 3
CY9111 Engineering Chemistry 3 0 0 3
GE9111 Engineering Graphics 2 0 3 4
GE9112 Fundamentals of Computing 3 0 0 3
PRACTICAL
PH9112 Physics Laboratory 0 0 2 1
CY9112 Chemistry Laboratory 0 0 2 1
GE9113 Engineering Practices Laboratory 0 0 3 2
GE9114 Computer Practices Laboratory 0 0 3 2
TOTAL 17 2 13 27
SEMESTER II
CODE NO COURSE TITLE L T P C
THEORY
HS9161 Technical English - II 2 0 2 3
MA9161 Mathematics – II 3 1 0 4
PH9167 Physics of Electrical and Electronics Materials 3 0 0 3
CY9164 Chemistry for Instrumentation Engineering 3 0 0 3
GE9151 Engineering Mechanics 3 0 0 3
EE9165 Electric Circuit Theory 3 0 0 3
CS9161 Object Oriented Programming 3 0 0 3
PRACTICAL
CS9162 Computer Practice – II 0 0 3 2
EE9162 Electrical Circuits Laboratory 0 0 3 2
TOTAL 20 1 8 26
2
HS 9111 TECHNICAL ENGLISH I L T P C
(Common to all branches of B.E. / B.Tech. Programmes) 3 1 0 4
AIM:
To help students specialising in the field of Engineering and Technology develop their
proficiency in oral and written communication in Technical English.
OBJECTIVES:
 To enable students improve their vocabulary and employ the words
appropriately in different academic and professional contexts.
 To make students comprehend classroom lectures and technically oriented
passages.
 To enable students develop suitable reading strategies that could be adopted
while reading science related texts.
 To enable students acquire the ability to speak effectively in English in real
life situations and work-related situations.
 To train students in academic and professional writing.
UNIT I 9+3
Vocabulary - using words in context - use of suffixes to form nouns from verbs and
adjectives – adjectives, adverbs - matching words with meanings - Active and passive
voices – tenses - simple present, present continuous - comparative adjectives –
adverbial forms - Reading text: skimming for general information - specific details - note
making - cloze reading – Listening and transferring of information from text to graphic
forms - bar charts, flow-charts - Paragraph writing - descriptions using descriptive words
and phrases - organising information - Role play - conversational techniques –
discussions - oral reporting.
UNIT II 9+3
Vocabulary items - words with prefixes (“multi-“, “under-“) - Asking and answering
questions, error correction - spelling and punctuation - Reading Comprehension -
scanning for information – inferring meaning from context - Listening and guided notetaking
- paragraph writing - using notes – giving suitable headings / subheadings for
paragraphs – Comparing and contrasting using expressions of comparison - Discussion
using creative ideas
UNIT III 9+3
Compound nouns - negative prefixes – antonyms – Use of modal verbs – making
sentences using phrases – tenses – simple past and present perfect - Reading and
guessing meanings in context - Listening and note taking - Channel conversion from text
to chart - Writing comparisons - making recommendations - coherence using discourse
markers - Discussion - role-play (explaining and convincing)
UNIT IV 9+3
Expanding nominal compounds – words with multiple meanings – Error correction -
prepositions - use of the prefix “trans-“ - compound adjectives - modal verbs to express
probability - simple past and present prefect - Reading – prediction of content -
understanding advertisements - scanning the text and comprehension check - Listening
3
for details - Writing definitions – expression of use and purpose - Role-play – discussion
- speculating about the future
UNIT V 9+3
Formation of nouns, verbs and adjectives from root words – some useful phrases and
expressions - cloze exercises - ‘If’ conditional clauses – gerunds (verbal nouns) -
Reading for comprehension - intensive reading - Accuracy in listening – listening to
discussion on specific issues - Group discussion - role-play (stating, discussing
problems and proposing solutions) - Planning a tour - Writing an itinerary - Writing
formal letters - letter to the editor
LECTURE – 45 TUTORIAL – 15 TOTAL – 60 PERIODS
TEXTBOOKS
1. Department of Humanities and Social Sciences, Anna University, English for
Engineers and Technologists, Vol. I and II (Combined Edition), Orient Longman, Pvt.
Ltd., 2006.Themes 1 to 4.
REFERENCES
1. Day, R.A, Scientific English, Second Edition, Hyderabad: Universities Press, 2000.
2. Mitra, B.K, Effective Technical Communication: A Guide for Scientists & Engineers,
New Delhi: Oxford University Press, 2006.
3. Website: www.uefap.co.uk
MA 9111 MATHEMATICS – I L T P C
(Common to all branches of B.E. / B.Tech. Programmes) 3 1 0 4
AIM:
To make available the basic concepts of engineering mathematics, to prepare the
student for new concepts to be introduced in the subsequent semesters and to provide
the necessary mathematical skills that are needed in modeling physical processes by an
engineer.
OBJECTIVES:
 To develop the use of matrix algebra techniques this is needed by engineers for
practical applications.
 To make the student knowledgeable in the area of infinite series and their
convergence so that he/ she will be familiar with limitations of using infinite series
approximations for solutions arising in mathematical modeling
 To familiarize the student with functions of several variables which is needed in
many branches of engineering
 To introduce the concepts of improper integrals, Gamma, Beta and Error
functions which are needed in engineering applications
 To acquaint the student with mathematical tools needed in evaluating multiple
integrals and their usage
4
UNIT I MATRICES 9+3
Characteristic equation – Eigenvalues and Eigenvectors of a real matrix – Properties of
eigenvalues and eigenvectors – Cayley-Hamilton Theorem – Diagonalization of
matrices – Reduction of a quadratic form to canonical form by orthogonal transformation
– Nature of quadratic forms.
UNIT II INFINITE SERIES 9+3
Sequences – Convergence of series – General properties – Series of positive terms –
Tests of convergence (Comparison test, Integral test, Comparison of ratios and
D’Alembert’s ratio test) – Alternating series – Series of positive and negative terms –
Absolute and conditional convergence – Power Series – Convergence of exponential,
logarithmic and Binomial Series.
UNIT III FUNCTIONS OF SEVERAL VARIABLES 9+3
Limit and Continuity – Partial derivatives – Homogeneous functions and Euler’s theorem
– Total derivative – Differentiation of implicit functions – Change of variables – Jacobians
– Partial differentiation of implicit functions – Taylor’s series for functions of two variables
– Errors and approximations – Maxima and minima of functions of two variables –
Lagrange’s method of undetermined multipliers.
UNIT IV IMPROPER INTEGRALS 9+3
Improper integrals of the first and second kind and their convergence – Evaluation of
integrals involving a parameter by Leibnitz rule – Beta and Gamma functions –
Properties – Evaluation of integrals using Beta and Gamma functions – Error functions.
UNIT V MULTIPLE INTEGRALS 9+3
Double integrals – Change of order of integration – Double integrals in polar coordinates
– Area enclosed by plane curves – Triple integrals – Volume of Solids – Change of
variables in double and triple integrals – Area of a curved surface.
L: 45, T: 15, TOTAL : 60 PERIODS
TEXT BOOKS
1. Grewal B.S., Higher Engineering Mathematics (40th Edition), Khanna Publishers,
Delhi (2007).
2. Ramana B.V., Higher Engineering Mathematics, Tata McGraw Hill Co. Ltd., New
Delhi (2007).
REFERENCES
1. Jain R.K. and Iyengar S.R.K., Advanced Engineering Mathematics (3rd Edition),
Narosa Publications, Delhi (2007).
2. Bali N., Goyal M. and Watkins C., Advanced Engineering Mathematics (7th Edition),
Firewall Media, New Delhi (2007).
3. Greenberg M.D., Advanced Engineering Mathematics (2nd Edition), Pearson
Education, New Delhi (1998).
5
PH 9111 ENGINEERING PHYSICS L T P C
(Common to ALL Branches of B.E. / B.Tech. Programmes) 3 0 0 3
OBJECTIVE:
To introduce the basic physics concepts relevant to different branches of Engineering
and Technology
UNIT I PROPERTIES OF MATTER 9
Elasticity – Poisson’s ratio and relationship between moduli (qualitative) – Stress-strain
diagram – factors affecting elasticity – bending of beams – cantilever – bending moment
– theory and experiment of Young’s modulus determination – Uniform and non-uniform
bending – I shaped girders – twisting couple – hollow cylinder – shaft – torsion
pendulum – determination of rigidity modulus – moment of inertia of a body (regular and
irregular).
UNIT II ACOUSTICS AND ULTRASONICS 9
Classification of sound – loudness and intensity – Weber-Fechner Law – standard
Intensity and Intensity level – decibel – reverberation – reverberation time –– rate of
growth and decay of sound intensity - derivation of Sabine’s formula – absorption
coefficient and its determination – factors affecting acoustics of buildings : focussing,
interference, echo, Echelon effect, resonance – noise and their remedies. Ultrasonics –
production – magnetostriction and piezoelectric methods – detection of ultrasound –
acoustic grating – Industrial applications – NDT - Ultrasonic method: scan modes and
practice.
UNIT III THERMAL PHYSICS 9
Thermal expansion - thermal stress – expansion joints – bimetallic strips - thermal
conductivity – conductions in solids – Forbe’s and Lees’ disc methods – thermal
insulation of buildings – Laws of thermodynamics – Otto and diesel engines and their
efficiency – entropy – entropy of Carnot’s cycle – reverse Carnot’s cycle – refrigerator.
UNIT IV APPLIED OPTICS 9
Interference - Michelson interferometer: construction, working, determination of wave
length and thickness – anti-reflection coating – air wedge and its application – Lasers –
Einstein’s coefficients – CO2, Nd:YAG and semiconductor lasers - construction and
working – applications – Optical fibres – classification (index & mode based) – principle
and propagation of light in optical fibres – acceptance angle and numerical aperture –
fibre optic communication system - active and passive sensors.
UNIT V SOLID STATE PHYSICS 9
Nature of bonding – growth of single crystals (qualitative) - crystal systems - crystal
planes and directions – expressions for interplanar distance – coordination number and
packing factor for simple structures: SC, BCC, FCC and HCP – structure and
significance of NaCl, ZnS, diamond and graphite – crystal imperfections: point defects,
dislocations and stacking faults.
TOTAL : 45 PERIODS
6
TEXT BOOKS:
1. Palanisamy, P.K., Engineering Physics, Scitech Publications (P) Lt, 2006.
2. Arumugam, M., Engineering Physics, Anuradha Publ., 2000.
REFERENCES:
1. Gaur R.K., and Gupta, S.L Engineering Physics, Dhanpat Raj Publ., 2003.
2. Sankar B.N., Pillai.S.O., Engineering Physics, New age International (P) Ltd, 2007
CY9111 ENGINEERING CHEMISTRY L T P C
(Common to all branches of Engineering and Technology) 3 0 0 3
AIM:
To gain a sound knowledge of thermodynamics, phase rule, surface chemistry and
catalysis, basic organic reaction mechanisms and principles and applications of
spectroscopy and nanochemistry.
OBJECTIVES:
To make the student conversant with the
 Applications of second law of thermodynamics.
 Phase rule and various types of alloys
 Surface chemistry and its importance in adsorption and catalysis.
 Basic principles in organic reaction mechanisms and principles and applications
of spectroscopy
 Nanochemistry and its applications
UNIT I THERMODYNAMICS 9
Statement of second law of thermodynamics – Clausius and Kelvin – definition of
entropy – entropy change for a reversible process – entropy change for flow of heat in
an irreversible process – entropy change for an isothermal expansion of an ideal gas –
problems – entropy of phase transitions- problems – definition of free energy and work
function – Gibbs Helmholtz equation – applications – problems – derivation of Maxwell
relations – van’t Hoff isotherm and isochore – applications – problems – chemical
potential – variation of chemical potential with temperature and pressure - significance.
UNIT II PHASE RULE 9
Phase rule – statements and explanation of the terms involved – condensed phase rule
– construction of phase diagram – water system – sulphur system – phase rule for two
component alloy systems- thermal analysis – eutectic system - Lead-Silver system –
simple eutectic formation – Zinc-Magnesium alloy system – Iron-Carbon alloy systemsolved
examples.
UNIT III SURFACE CHEMISTRY AND CATALYSIS 9
Adsorption – types of adsorption – adsorption of gases on solids – adsorption isotherm –
Freundlich and Langmuir isotherms – adsorption of solutes from solutions – applications
7
– role of adsorption in catalytic reactions – ion exchange adsorption – basic principles in
adsorption chromatography – Catalysis – classification – characteristics of catalysis -
auto catalysis – enzyme catalysis – Michaelis – Mention equation – solid acid catalysis.
UNIT IV ORGANIC REACTIONS AND SPECTROSCOPY 9
Electrophilic and nucleophilic, substitution and elimination reactions mechanisms – SN1,
SN2, E1, E2 reactions – Electromagnetic spectrum – absorption of radiation – electronic
transition – vibrational transition – rotational transition – intensities of spectral lines –
beer-lamberts law –type of instrument used for absorption measurements –UV & visible
spectroscopy, IR spectroscopy – principles of instrumentation and applications.
UNIT V NANOCHEMISTRY 9
Introduction to nanochemistry – preparations and properties of nanomaterials - nanorods
– nanowires – nanotubes – carbon nanotubes and their applications – nanocomposites –
sensors and electronic devices – nanochemistry in biology and medicines –
nanocatalysis.
TOTAL : 45 PERIODS
TEXT BOOKS:
1. Puri B.R., Sharma L.R. and Madhan S. Pathania, Principles of Physical Chemistry,
Shoban Lal Nagin Chand & Co. Jalandar –2000.
2. Jain P.C. and Renuka Jain, Physical Chemistry for Engineers, Dhanpet Rai &Sons,
New Delhi, 2001.
REFERENCES
1. Bahl B.S., Tuli G.D., and Arun Bahl, Essentials of Physical Chemistry, S. Chand
& Company Ltd., New Delhi, 2004.
2. Morrison R.T., & Boyd R.N., Organic chemistry, Prentice-Hall of India Private
Limited, New Delhi, 1992.
3. Sanyal S.N., Reactions, Rearrangements and Reagents Bharati Bhawan Publishers
& Distributors New Delhi, 2006.
4. G. B. Sergeev, Nanochemistry, Elsevier Science, New York, 2006
GE 9111 ENGINEERING GRAPHICS L T P C
(Common to All branches of B.E. / B.Tech. Programmes) 2 0 3 4
OBJECTIVES:
To develop in students the graphic skills that would enable them to communicate the
concepts, ideas and design of engineering products
To provide an exposure to the national/international standards related to technical
drawings
INTRODUCTION 2
Importance of graphics in engineering applications – use of drafting instruments – BIS
specifications and conventions – size, layout and folding of drawing sheets – lettering
and dimensioning
8
UNIT I FREE HAND SKETCHING OF ENGG OBJECTS AND
CONSTRUCTION OF PLANE CURVE 3+9=12
Pictorial representation of engineering objects – representation of three dimensional
objects in two dimensional media – need for multiple views – developing visualization
skills through free hand sketching of three dimensional objects.
Polygons & curves used in engineering practice– methods of construction– construction
of ellipse, parabola and hyperbola by eccentricity method – Cycloidal and involute
curves- construction - drawing of tangents to the above curves.
UNIT II ORTHOGRAPHIC PROJECTION: PROJECTION OF POINTS, LINES
AND PLANE SURFACES 6+9=15
General principles of orthographic projection – first angle projection – layout of views –
projections of points, straight lines located in the first quadrant – determination of true
lengths of lines and their inclinations to the planes of projection – traces – projection of
polygonal surfaces and circular lamina inclined to both the planes of projection
UNIT-III ORTHOGRAPHIC PROJECTION: PROJECTION OF SOLIDS AND
SECTIONS OF SOLIDS 6+9=15
Projection of simple solids like prism, pyramid, cylinder and cone when the axis is
inclined to one plane of projection –change of position & auxiliary projection methodssectioning
of above solids in simple vertical positions by cutting plane inclined to one
reference plane and perpendicular to the other and above solids in inclined position with
cutting planes parallel to one reference plane – true shapes of sections
UNIT IV DEVELOPMENT OF SURFACES AND INTERSECTION OF SOLIDS
6+9=15
Need for development of surfaces – development of lateral surfaces of simple and
truncated solids – prisms, pyramids, cylinders and cones – development of lateral
surfaces of the above solids with square and circular cutouts perpendicular to their axes.
Intersection of solids and curves of intersection –prism with cylinder, cylinder & cylinder,
cone & cylinder with normal intersection of axes and with no offset.
UNIT V ISOMETRIC AND PERSPECTIVE PROJECTIONS 4+9=13
Principles of isometric projection – isometric scale – isometric projections of simple
solids, truncated prisms, pyramids, cylinders and cones – principles of perspective
projections – projection of prisms, pyramids and cylinders by visual ray and vanishing
point methods.
COMPUTER AIDED DRAFTING (DEMONSTRATION ONLY) 3
Introduction to computer aided drafting software packages and demonstration of their
use.
L=30 P=45 TOTAL: 75 PERIODS
TEXT BOOKS
1. Bhatt,N.D, “Engineering Drawing”, Charotar Publishing House, 46th Edition-2003
2. Natarajan,K.V, “ A Textbook of Engineering Graphics”, Dhanalakshmi Publishers,
Chennai, 2006 .
9
REFERENCES
1. Shah,M.B and Rana,B.C.,”Engineering Drawing”, Pearson Education,2005,
2. Gopalakrishnan.K.R,. “Engineering Drawing I & II”, Subhas Publications 1998.
3. Dhananjay,A.J., “Engineering Drawing with Introduction to AutoCAD”, Tata McGraw-
Hill Publishing Company Ltd., 2008.
4. Venugopal,K. and Prabhu Raja, V., “Engineering Graphics”, New Age
International(P) Ltd.,2008.
Codes from Bureau of Indian Standards
1. IS 10711-2001: Technical Products Documentation – Size and Layout of Drawing
Sheets
2. IS 9609 (Parts 0 & 1 )-2001: Technical Products Documentation – Lettering
3. IS 10714(Part 20)-2001 & SP 46 -2003: Lines for Technical Drawings
4. IS 11669-1986 & SP 46-2003: Dimensioning of Technical Drawings
IS 15021(Parts 1 to 4)-2001: Technical Drawings-Projection Methods
Special points applicable to University Examinations on Engineering Graphics:
1. There will be five questions one from each unit covering all units of the syllabus
2. All questions will carry equal marks of 20 each making a total of 100
3. Answer paper shall consist of drawing sheets of A3 size only. The students will be
permitted to use appropriate scale to fit solutions within A3 size
4. The examination will be conducted in appropriate sessions on the same day
GE 9112 FUNDAMENTALS OF COMPUTING L T P C
(Common to all branches of B.E. / B.Tech. Programmes) 3 0 0 3
AIM:
To introduce the basics of computing and the fundamentals of C programming.
OBJECTIVES:
 To introduce the fundamentals of computing systems.
 To introduce the concepts of internet and WWW.
 To teach programming in C.
UNIT I 9
Computer systems – Exploring computers – Inside the system – Processing data –
CPUs – Types of storage devices - Operating systems basics – Networking basics.
UNIT II 9
The internet and the WWW – Internet services – connecting to the internet - Working
with applications software – productivity software – graphics and multimedia – Data base
Management systems – Creating computer program.
10
UNIT III 9
C programming fundamentals – compilation process – variables – Data types –
Expressions – looping – decisions.
UNIT IV 9
Arrays - Working with functions – structures – character strings – pre processor.
UNIT V 9
Pointers – Dynamic memory allocation – linked list - Applications
TOTAL: 45 PERIODS
TEXT BOOKS
1. Peter Norton, “Introduction to Computers”, Sixth Edition, Tata McGraw Hill, 2007.
2. Stephen G. Kochan, “Programming in C”, Third Edition, Pearson Education, 2007.
REFERENCES
1. Kernighan,B.W and Ritchie,D.M, “The C Programming language”, Second Edition,
Pearson Education, 2006
2. Ashok N. Kamthane, “Computer programming”, Pearson Education, 2007.
3. Kenneth A. Reek, “Pointers on C”, Pearson Education, 2007.
4. Dromey,R.G, “How to solve it by Computer”, Pearson Education, 2007.
PH 9112 PHYSICS LABORATORY L T P C
(Common to ALL Branches of B.E. / B.Tech. Programmes) 0 0 2 1
1. Torsional Pendulum- Determination of rigidity modulus of wire and moment of
Inertia of disc.
2. Non-uniform bending - Determination of Young’s modulus.
3. Lees’ disc- Determination of thermal conductivity of a bad conductor.
4. Potentiometer - Determination of thermo e.m.f of thermocouple
5. Air wedge- Determination of thickness of a thin sheet of paper.
6. i. Optical fibre - Determination of Numerical Aperture and
acceptance angle
ii. Compact disc - Determination of width of the groove using laser.
7. Acoustic grating - Determination of velocity of ultrasonic waves in liquids.
8. Post office box - Determination of Band gap
9. Spectrometer - Determination of wavelength using grating
10. Viscosity of liquid- Determination of co-efficient of viscosity of a liquid by
Poiseuille’s flow.
TOTAL: 30 PERIODS
11
CY9112 CHEMISTRY LABORATORY L T P C
(Common to all branches of Engineering and Technology) 0 0 2 1
I. WEIGHING AND PREPARATION OF STANDARD SOLUTIONS
i) Preparation of molar and normal solutions of the following substances oxalic
acid, sodium carbonate, sodium hydroxide, and hydrochloric acid.
ii) Preparation of buffer solutions: borate buffer, phosphate buffer using
Henderson equation.
2. WATER ANALYSIS
i) Determination of total hardness, temporary & permanent hardness of water
by EDTA method.
i) Determination of DO content by Winkler’s method.
ii) Determination of alkalinity in a water sample.
iii) Determination of chloride content of water sample by argentometric method.
3. PH-METRY
To find out the strength of given hydrochloric acid by sodium hydroxide.
4. CONDUCTOMETRY
i) Conductometric titration of mixture of acids
ii) Conductometric precipitation titration using BaCl2- Na2SO4
5. POTENTIOMETRY
i) Redox titration – Iron Vs. dichromate
6. SPECTROPHOTOMETRY
i) To determine max of a colored solution such as potassium permanganate.
ii) To determine the iron content of an unknown solution (1,10- phenanthroline/
thiocyanate method)
7. FLAME PHOTOMETRY
i) To determine sodium and potassium in water.
8. VISCOMETRY
i) Determination of molecular weight of a polymer
9. WATER POLLUTION
i) COD analysis of a waste water by dichromate method.
10. KINETICS
i) Determination of reaction rate constant of acid catalyzed hydrolysis of ester.
11. ADSORPTION
i) Adsorption of acetic acid on activated charcoal.
TOTAL: 30 PERIODS
12
REFERENCE BOOKS
1. A text of quantitative Inorganic Analysis, A. L. Vogel , ELBS London. 1995.
2. Experiments in physical chemistry, D.P. Shoemarker and C.W. Gardad, McGraw
Hill, London, 2001.
GE 9113 ENGINEERING PRACTIES LABORATORY L T P C
(Common to all Branches of B.E. / B.Tech. Programmes) 0 0 3 2
OBJECTIVE
To provide exposure to the students with hands-on experience on various basic
engineering practices in Civil, Mechanical, Electrical and Electronics Engineering.
GROUP – A (CIVIL & ELECTRICAL)
1. CIVIL ENGINEERING PRACTICE 12
Plumbing
Basic pipe connections involving the fittings like valves, taps, coupling, unions,
reducers, elbows and other components used in household fittings. Preparation of
plumbing line sketches.
Laying pipe connection to the suction side of a pump – inlet.
Laying pipe connection to the delivery side of a pump – out let.
Practice in mixed pipe connections: Metal, plastic and flexible pipes used in
household appliances.
Wood Work
Sawing, planning and making common joints: T-Joint, Mortise and Tennon joint,
Dovetail joint.
Study
Study of joints in door panels, wooden furniture
Study of common industrial trusses using models.
2. ELECTRICAL ENGINEERING PRACTICE 9
Basic household wiring using switches, fuse, indicator – lamp etc.,
Preparation of wiring diagrams
13
Stair case light wiring
Tube – light wiring
Study of iron-box, fan with regulator, emergency lamp
GROUP – B (MECHANICAL AND ELECTRONICS) 15
3. MECHANICAL ENGINEERING PRACTICE
Welding
Arc welding of butt joints, lap joints, tee joints
Gas welding Practice.
Basic Machining
Simple turning, drilling and tapping operations.
Machine assembly Practice.
Study and assembling the following:
Centrifugal pump, mixies and air conditioners.
Demonstration on
(a) Smithy operations like the production of hexagonal bolt.
(b) Foundry operation like mould preparation for grooved pulley.
4. ELECTRONIC ENGINEERING PRACTICE 9
Soldering simple electronic circuits and checking continuity.
Assembling electronic components on a small PCB and testing.
Study of Telephone, FM radio, low-voltage power supplies.
TOTAL: 45 PERIODS
14
GE 9114 COMPUTER PRACTICE LABORATORY L T P C
(Common to all branches of B.E. / B.Tech. Programmes) 0 0 3 2
AIM:
The aim is to teach the use of computer applications related to office automation
and to teach implementation of C programs.
OBJECTIVES:
 To introduce office automation software packages.
 To teach the fundamentals in C programming.
1. Simple OS commands and simple editors for file operations.
2. Word processors for more complex operations, like formatting documents,
creating tables and so on.
3. Simple data base packages for creating and manipulating databases.
4. Spread sheet packages for data preparation and analysis.
5. Preparation of reports involving mathematical functions (Income Tax
Statement, Mark sheets, Payroll etc.,)
6. C Programs using one dimensional arrays.
7. C Programs using multi-dimensional arrays and pointer data types.
8. Programs using structures, nested structures and union.
9. Programs using functions- recursive, non-recursive and Library functions.
10. Programs for passing aggregate data types as parameters between
functions.
11. Programs for dynamic memory allocation / deallocation.
12. Programs for self-referential structure – Implementing linked list.
TOTAL: 45 PERIODS
15
HS 9161 TECHNICAL ENGLISH II L T P C
(For all branches of B.E. / B.Tech. Programmes) 2 0 2 3
AIM:
To help students specialising in the field of Engineering and Technology develop their
proficiency in oral and written communication in Technical English.
OBJECTIVES:
 To enable students develop their critical thinking skills.
 To enable students develop higher order reading skills such as interpreting,
evaluating and analysing.
 To enable students develop their active listening skills.
 To enable students participate successfully in Group Discussions.
UNIT I 6
Word formation using prefixes ‘self’ – modified cloze – contextual meanings -
Sequencing words - future simple passive form - Predicting content – Intensive reading –
interpreting advertisements – Listening and completing table – Writing extended
definition – describing a process using sequence words – developing ideas into
paragraphs – writing about the future.
UNIT II 6
Identifying objects and their use – word puzzles using words with suffixes – Prepositions
– adverbs – structures that express purpose - adjectives – group discussion – Reading -
skimming for content and analysis of style – modes of non verbal communication –
Listening and categorising data in tables – Writing formal letter – writing paragraphs on
various issues.
UNIT III 6
Stress and intonation - Cause and effect expressions - Tense forms - simple past and
past continuous - Different grammatical forms of the same word - Critical reading -
guided note-making and evaluating content - Listening – guided note-taking –
completing a table – Role-play – group discussion techniques - discussing an issue –
offering suggestions – Sequencing jumbled sentences using coherence markers–
Writing a report – Writing recommendations – Writing a letter of complaint.
UNIT IV 6
Numerical adjectives - Prepositions – use of intensifying prefixes – phrasal verbs -
different grammatical forms of the same words – cloze exercise - Reading a text and
evaluating the content - advertisements – analysing style and language - Listening and
entering classified information – Intensive listening and completing the steps of a
process - Role-play - Group discussion expressing opinions and convincing (agreeing
and disagreeing) - Giving oral instructions – Descriptive writing - writing based on hints
– writing argumentative paragraphs – formal letter writing – letter of application with
biodata / CV Writing safety instructions - warnings and notices – preparing checklist –
email communication.
UNIT V 6
Identifying problems, their causes and finding solutions using case studies – creative
and critical thinking – levels of thinking – thinking strategies – brainstorming - analytical
reasoning skills – evaluative essay – decision making – conflict resolution
16
English Language Lab (30 Periods)
1. Listening: (10)
Recognising English sounds – accents - listening & answering questions - gap filling -
listening & note making - listening to telephonic conversations - listening to speeches.
2. Speaking: (10)
Pronouncing words & sentences correctly - word stress - conversation practice.
3. Reading: (5)
Cloze test - Reading and answering questions - sequencing of sentences.
4. Writing: (5)
Correction of errors - Blogging.
TOTAL : 60 PERIODS
TEXTBOOK
1. Department of Humanities & Social Sciences, Anna University. English for Engineers
and Technologists, Combined edition Vols. I & II. Chennai: Orient Longman, Pvt. Ltd.
2006, Themes 5 to 8 (for Units 1 – 4)
2. Sunita Mishra & C. Muralikrishna, Communication Skills for Engineers, Pearson
Education, Second Impression, 2007. ( for Unit 5)
REFERENCES
1. Ashraf, R.M, Effective Technical Communication, New Delhi: Tata McGraw Hill,
2007.
2. Thorpe, E & Thorpe, S, Objective English, New Delhi : Pearson Education, 2007.
3. Joan Van, Emden, A Handbook of writing for Engineers, Cambridge University
Press, 1997
4. Website: www.englishclub.com
LAB REQUIREMENTS
1. Teacher – Console and systems for students
2. English Language Lab Software
3. Tape Recorders
17
MA 9161 MATHEMATICS - II L T P C
(Common to all branches of B.E. / B.Tech Programmes) 3 1 0 4
AIM:
To introduce the effective mathematical tools needed for solving engineering problems
and to emphasize the underlying mathematical principles in specific situations
confronting practicing engineers.
OBJECTIVES:
 To make the student acquire sound knowledge of techniques in solving ordinary
differential equations that model engineering problems
 To acquaint the student with the concepts of vector calculus, needed for
problems in all engineering disciplines
 To develop an understanding of the standard techniques of complex variable
theory so as to enable the student to apply them with confidence, in application
areas such as heat conduction, elasticity, fluid dynamics and flow the of electric
current
 To make the student appreciate the purpose of using transforms to create a
new domain in which it is easier to handle the problem that is being investigated
UNIT I DIFFERENTIAL EQUATIONS 9+3
Method of variation of parameters – Method of undetermined coefficients – Homogenous
equation of Euler’s and Legendre’s type – System of Simultaneous linear differential
equations with constant coefficients.
UNIT II VECTOR CALCULUS 9+3
Gradient and directional derivative – Divergence and Curl – Irrotational and Solenoidal
vector fields – Line integral over a plane curve – Surface Integral and Volume Integral -
Green’s, Gauss divergence and Stoke’s theorems – Verification and Application in
evaluating line, surface and volume integrals.
UNIT III ANALYTIC FUNCTION 9+3
Analytic functions – Necessary and sufficient conditions for analyticity - Properties –
Harmonic conjugates – Construction of analytic function - Conformal Mapping – Mapping
by functions w z c, az, 1, z2
z
  - Bilinear transformation.
UNIT IV COMPLEX INTEGRATION 9+3
Line Integral - Cauchy’s theorem and integral formula – Taylor’s and Laurent’s Series –
Singularities – Residues – Residue theorem – Application of Residue theorem for
evaluation of real integrals – Use of circular contour and semicircular contour with no
pole on real axis.
UNIT V LAPLACE TRANSFORMS 9+3
Existence conditions – Transforms of elementary functions – Basic properties –
Transforms of derivatives and integrals – Initial and Final value theorems – Inverse
transforms – Convolution theorem – Transform of periodic functions – Application to
solution of linear ordinary differential equations with constant coefficients.
18
L: 45, T: 15, TOTAL : 60 PERIODS
TEXT BOOKS
1. Grewal, B.S. “Higher Engineering Mathematics”, Khanna Publications (2007)
2. Ramana, B.V. “Higher Engineering Mathematics” Tata McGraw Hill (2007).
REFERENCES
1. Glyn James, “Advanced Modern Engineering Mathematics, Pearson Education
(2007)
2. Jain R.K. and Iyengar S.R.K., Advanced Engineering Mathematics (3rd Edition)
Narosa Publications, Delhi (2007).
PH9167 PHYSICS OF ELECTRICAL AND ELECTRONIC MATERIALS LT P C
(Common to EEE and E & I) 3 0 0 3
OBJECTIVE:
To introduce the essential principles of physics for electrical and related engineering
applications.
UNIT I ELECTRICAL PROPERTIES OF METALS 9
Classical theory: Drude model - thermal conductivity, thermal resistance - electrical
conductivity of nonmetals: semiconductors, ionic crystals and glasses - thin metal films:
conductivity and resistivity - Schroedinger wave equation – particle in a box –
degenerate states – Fermi-Dirac statistics – density of states: electron concentration and
Fermi Level - band theory of solids: energy band formation – electron effective mass.
UNIT II SEMICONDUCTORS 9
Intrinsic semiconductors: energy band-diagram - direct and indirect band gap
semiconductors - carrier concentrations and conductivity - extrinsic semiconductors: n,
p-type doping, compensation doping - temperature dependence of conductivity -
degenerate and nondegenerate semiconductors - recombination and minority carrier
injection: direct and indirect recombination - minority carrier lifetime - diffusion and
conduction equations and random motion - continuity equation: time-dependent
continuity equation, steady-state continuity equation - optical absorption - Hall effect and
devices - Ohmic contacts - Schottky diode and solar cell.
UNIT III DIELECTRIC MATERIALS AND INSULATION 9
Matter polarization and relative permittivity: definition - dipole moment and polarization
vector P - polarization mechanisms: electronic, ionic, orientational, interfacial and total
polarization – frequency dependence - local field and Clausius-Mossotti equation -
dielectric constant and dielectric loss - Gauss’s law and boundary conditions - dielectric
strength and insulation breakdown in gases, liquids and solids - capacitor materials -
typical capacitor constructions - piezoelectricity, ferroelectricity and pyroelectricity -
quartz oscillators and filters - piezo and pyroelectric crystals.
19
UNIT IV MAGNETIC PROPERTIES AND SUPERCONDUCTIVITY 9
Magnetic dipole moment – origin: atomic magnetic moments - magnetic materials:
diamagnetism, paramagnetism, ferromagnetism, antiferromagnetism, ferrimagnetism,
ferromagnetism origin and the exchange interaction - saturation magnetization and Curie
temperature - ferromagnetic materials: magnetic domains, magnetocrystalline
anisotropy, domain walls and motion - M versus H behaviour, demagnetization - soft and
hard magnetic materials - examples and uses – Giant Magneto Resistance and
materials - superconductivity: properties and classifications - High Tc superconductors -
applications.
UNIT V OPTICAL PROPERTIES OF MATERIALS 9
Light waves in a homogeneous medium - refractive index - dispersion: refractive indexwavelength
behavior - group velocity and group index - Fresnel’s equations: amplitude,
reflection and transmission coefficients, intensity, reflectance and transmittance -
complex refractive index and light absorption - lattice absorption - luminescence,
phosphors and white LEDs – polarization - optical anisotropy: uniaxial crystals, Fresnel’s
optical indicatrix, birefringence, dichroism - birefringent retarding plates - electro-optic
effect and amplitude modulators – phase modulators – electro-optic effect in waveguide
devices.
TOTAL: 45 PERIODS
TEXT BOOKS
1. Palanisamy, P.K. Materials Science, Scitech, 2003
2. Arumugam, M., Materials Science, Anirutha Publ., 2002.
REFERENCES:
1. Kasap, S.O. Principles of Electronic Materials and Devices, Tata McGraw-Hill, 2007.
2. Ali Omar, M., Elementary Solid State Physics, Addition Wiley, 1974
3. Kittel, C., Introduction to Solid State Physics, John Wiley, 1996
CY9164 CHEMISTRY FOR INSTRUMENTATION ENGINEERING L T P C
3 0 0 3
AIM
* To gain a sound knowledge of photochemistry, polymer chemistry, corrosion and its
control, Energy sources and devices, and dynamic electrochemistry and
electrometallurgy.
OBJECTIVES
To make the student conversant with the
 Applications of Photochemistry
 Basic principles of polymerization and applications of polymers
 Causes of corrosion and its prevention.
 Various sources of energy and its storage devices
20
 Theories of electron transfer reactions and its applications.
UNIT I PHOTOCHEMICAL TECHNOLOGY 9
Photochemical reactions – laws of photo chemistry – Grotthus – Draper law – Stark –
Einstein law – quantum efficiency – photochemical decomposition of HI and HBr –
quantum yield determination – chemical actinometer – energy transfer in photochemical
reactions – photosentization and quenching (example – photosynthesis in plants) -
chemiluminescence – photophysical processes – fluroscence, phosphorescence –
photoinhibitors – radiation chemistry – radiolysis – principles – radiation dosimetry (units,
Fricke dosimeter)
UNIT II POLYMER CHEMISTRY 9
Preparation, properties and uses of PVC, phenol – formaldehyde and urea formaldehyde
– effect of heat on polymers – polymer blends – ABS plastics – polycarbonates –
polyamides – polymer alloys – ABS – PC alloy, ABS-PVC alloy – vulcanization of rubber
– blending of rubber with plastics – laminates and fibre reinforced plastics – chemical
structure and electronic behavior of conducting polymers – semi conducting properties of
organic polymers containing metal groups such as poly ferrocenes – optical fibre –
definition, principles and structure – characteristics of optical fibre – photoresist optical
fibre – advantages of optical fibre.
UNIT III CORROSION AND ITS INHIBITION 9
Corrosion – causes of corrosion – principles of chemical corrosion – pilling – Bedworth
rule – principles of electrochemical corrosion – factors influencing corrosion – types of
corrosion – galvanic corrosion – differential aeration corrosion – stress corrosion – soil
corrosion – pitting corrosion – water line corrosion – corrosion control – cathodic
protection – sacrificial anode – selection of materials and proper coatings – paints –
constituents – functions – mechanism of drying.
UNIT IV ENERGY SOURCES AND ENERGY STORING DEVICES 9
Nuclear fission process – characteristics of nuclear fission – chain reactions – nuclear
energy – nuclear reactors – light water nuclear power plant – batteries – introduction –
primary and secondary batteries – dry cells – alkaline batteries, lead acid storage cell,
nickel – cadmium cell, lithium battery – fuel cell – hydrogen – oxygen fuel cell – solar
cell.
UNIT V DYNAMIC ELECTRO CHEMISTRY AND ELECTRO METALLURGY 9
Theories of electron transfer in homogeneous and heterogeneous – voltametry – electrochemical
extraction of metals – electro winning process (extraction of aluminium)–
Baeyer’s process and Hoope’s process – electro refining of copper – electro-chemical
machining – advantages.
TOTAL : 45 PERIODS
TEXT BOOKS
1. Jain, P.C. and Jain, R., “Engineering chemistry”, Dhanpat Rai Publications, New
Delhi, 2002.
2. Puri, B.R., Sharma, C.R. and Pathania, M.S., “Principles of Physical Chemistry”,
Shoban Lal Nagin Chand and Co., 2000.
REFERENCES
1. Wang, M.N., “Polymers for Electronic and Photonic Applications”, Wiley New York,
1994.
21
2. Bahl, B.S., Tuli, G.D. and Bhal, A., “Essentials of physical Chemistry”, S.Chand and
Co.Ltd., New Delhi, 2003.
GE 9151 ENGINEERING MECHANICS L T P C
(Common to Civil, Geoinformatics and Agriculture & Irrigation Engineering) 3 1 0 4
OBJECTIVE:
At the end of this course the student should be able to understand the vectorial and
scalar representation of forces and moments, static equilibrium of particles and rigid
bodies both in two dimensions and also in three dimensions. Further, the student should
understand the principle of work and energy. The student should be able to comprehend
the effect of friction on equilibrium. The student should be able to understand the laws of
motion, the kinematics of motion and the interrelationship. The student should also be
able to write the dynamic equilibrium equation. All these should be achieved both
conceptually and through solved examples.
UNIT I BASICS & STATICS 12
Introduction - Units and Dimensions - Laws of Mechanics – Lame’s theorem,
Parallelogram and triangular Law of forces – Vectors – Vectorial representation of forces
and moments – Vector operations on forces, dot product and cross product - Coplanar
Forces – Resolution and Composition of forces – Equilibrium of a forces – Forces in
space - Equilibrium in space - Equivalent systems of forces – Principle of transmissibility
– Single equivalent force
UNIT II EQUILIBRIUM OF RIGID BODIES 12
Free body diagram – Types of supports and their reactions – requirements of stable
equilibrium – Moments and Couples – Moment of a force about a point and about an
axis – Vectorial representation of moments and couples – Scalar components of a
moment – Varignon’s theorem - Equilibrium of Rigid bodies in two dimensions –
Equilibrium of Rigid bodies in three dimensions – Examples
UNIT III PROPERTIES OF SURFACES AND SOLIDS 12
Determination of Areas and Volumes – First moment of area and the Centroid of
standard sections – T section, I section, Angle section, Hollow section – second and
product moments of plane area – Rectangle, triangle, circle - T section, I section, Angle
section, Hollow section – Parallel axis theorem and perpendicular axis theorem – Polar
moment of inertia – Principal moments of inertia of plane areas – Principal axes of inertia
- Mass moment of inertia – Derivation of mass moment of inertia for rectangular solids,
prism, rods, sphere from first principle – Relation to area moments of inertia.
UNIT IV DYNAMICS OF PARTICLES 12
Displacements, Velocity and acceleration, their relationship – Relative motion –
Curvilinear motion – Newton’s law – Work Energy Equation of particles – Impulse and
Momentum
22
UNIT V CONTACT FRICTION AND ELEMENTS OF RIGID BODY DYNAMICS12
Frictional force – Laws of Coloumb friction – simple contact friction – Rolling friction –
Belt friction Translation and Rotation of Rigid Bodies – Velocity and acceleration –
General Plane motion – Impact of elastic bodies
L: 45+T=15 TOTAL : 60 PERIODS
TEXT BOOK
1. Beer,F.P and Johnson Jr. E.R, “Vector Mechanics for Engineers”, Vol. 1 Statics and
Vol. 2 Dynamics, McGraw-Hill International Edition, 2007.
REFERENCES
1. Irving H. Shames, Engineering Mechanics - Statics and Dynamics, IV Edition – PHI /
Pearson Education Asia Pvt. Ltd., 2003
2. Hibbeller, R.C., Engineering Mechanics, Vol. 1 Statics, Vol. 2 Dynamics, Pearson
Education Asia Pvt. Ltd., 2000.
3. Ashok Gupta, Interactive Engineering Mechanics – Statics – A Virtual Tutor
(CDROM), Pearson Education Asia Pvt., Ltd., 2002
4. J.L. Meriam & L.G. Kraige, Engineering Mechanics Vol. I & Vol. II, V edition, John
Wiley & Sons, 2006.
5. P. Boresi & J. Schmidt, Engineering Mechanics Statics & Dynamics, Micro Print Pvt.
Ltec., Chennai, 2004.
EE9165 ELECTRIC CIRCUIT THEORY L T P C
3 0 0 3
AIM
To give a complete conceptual knowledge on electrical quantities, elements and circuits.
OBJECTIVES
At the end of this course, student would have exposure to:
 Elementary concept of electric sources, elements and their
properties.
 Basic series, parallel and complex circuit configurations,
Laws and Theorems governing them.
 Techniques to analyze D.C. and A.C. circuits using
mathematical tools.
 Use of standard software’s for problem solving.
PREREQUISITE
Physics
UNIT I D.C. CIRCUIT ANALYSIS 9
Charge and current, voltage, power, and energy – Ohm’s law – Ideal voltage and
current sources – Independent sources – Dependent sources – Circuit elements –
Kirchhoff’s Laws – Voltage and Current division in series and parallel circuits, Network
reduction – Mesh and Nodal analysis with voltage and current sources – Circuit
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theorems:- Superposition, Thevenin’s Norton’s Reciprocity and Maximum Power
Transfer – Source transformation – Υ-Δ transformation - Problem solving using standard
software .
UNIT II A.C.CIRCUIT FUNDAMENTALS AND ANALYSIS 10
Sinusoidal voltage and current – RMSvalue – Form factor – Phasor representation of
sinusoidal of voltages –Current and voltage relationship in R, L, and C circuits –
Impedance and admittance, power factor concepts in RC, RL and RLC circuits –
Impedance combinations – Real power, reactive power, complex power, apparent power
– Kirchhoff’s laws – Analysis of simple series and parallel circuits - Problem solving
using standard software.
UNIT III RESONANCE AND COUPLED CIRCUITS 9
Resonance in parallel and series circuits – Half power frequencies – Bandwidth and Q
factor of Resonant circuits – Mutual Inductance – Dot convention – Coefficient of
coupling – Sinusoidal steady state analysis of network with coupled inductance -
Problem solving using standard software.
UNIT IV THREE-PHASE CIRCUIT ANALYSIS 8
Three-phase balanced and unbalanced voltage sources – Three - phase balance and
unbalanced loads – Line voltage and phase voltage – Phasor diagram and Power in
three - phase circuit – Three - phase circuit analysis with star and delta balanced and
unbalanced loads – Phasor diagram – Power and power factor measurement in threephase
circuits – Problem solving using standard software.
UNIT V TRANSIENT ANALYSIS OF FIRST AND SECOND ORDER
LINEARCIRCUITS 9
Source free RC and RL Circuit responses – Step response of RC and RL circuits –
source free RLC series and parallel circuit responses – Step responses of RLC series
and parallel circuits – Responses of RC, RL and RLC series circuits to sinusoidal
excitation - Problem solving using standard software.
TOTAL : 45 PERIODS
TEXT BOOKS
1. Edminister, J.A. and Nahvi, M., “Electric Circuits”, 4th Edition, Schaum’s Outline series,
McGraw-Hill, 2002.
2. Husain, A., “Networks and Systems”, Khanna Publishers, 2000.
REFERENCE S
1. Boylsted, R.L., “Essentials of Circuit Analysis”, Prentice Hall, 2003.
2. HAYT, Jr.W.H., Kemmerly, J.E., and Durbin, S.M., “Engineering Circuit Analysis”,
Tata McGraw-Hill, 2002.
3. Alexander, C.K., Matthew, N.O., and Sadiku, “Fundamentals of Electric Circuits”, Tata
McGraw- Hill, 2003.
4. Decarlo, R.A. and Lin, P.M., “Linear Circuit Analysis”, Oxford University Press, 2001.
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CS9161 OBJECT ORIENTED PROGRAMMING L T P C
3 0 0 3
AIM
To present the concepts of Object Oriented Programming through C++ and Java.
OBJECTIVES
 To study the object oriented programming principles.
 To introduce the classes, objects, constructors and destructors in C++.
 To introduce the operator overloading, inheritance, polymorphism
concepts and file operations in C++.
 To introduce classes, objects, methods, arrays and strings in Java.
 To introduce the programming approach in Java like interfaces, packages, multi -
threading, managing errors and exceptions and Applet programming.
PREREQUISITE
Fundamentals of Computing
UNIT I OOP CONCEPTS, BASICS OF C++, CLASSES AND OBJECTS 9
Basic concepts of object oriented programming – Object oriented languages –
Applications of OOP – Structure of C++ program – Tokens – Data types – Constants –
Variables – Initializations – Operators – Expressions – Control structures – Functions –
Overloading – Defining of class – Data members - Member functions and its definitions –
Object as an array, arguments and return types – Friendly functions.
UNIT II CONSTRUCTORS AND OPERATOR OVERLOADING 9
Constructors – Different types of constructors – Dynamic initialization of objects –
Dynamic constructors – Destructors - Defining unary and binary Operators overloading
with member function and friend function – Rules for overloading operators – Type
conversions.
UNIT III NHERITANCES, POLYMORPHISM, CONSOLE AND FILE OPERATIONS 9
Different types of inheritances – Virtual and abstract classes - Pointers to objects,
derived classes – Virtual functions – C++ streams / classes – Unformatted and formatted
console operations – Classes for file stream operations – Files – Opening – Closing –
Detecting end of files – File modes – Sequential and random files.
UNIT IV JAVA BASICS, CLASSES, METHODS AND INHERITANCES 9
Java features – Java program structures – Java tokens - Statements – Constants –
Variables – Data types – Operators – Expressions – Defining a class – Instance
variables and methods – Creating objects – Accessing class members – Constructors –
Method overloading – Static members – Inheritance: Extending a class – Overriding
methods – Final variables, Final methods and Final classes – Abstract methods and
classes – Visibility control - Arrays – One and two dimensional arrays – Strings, vectors
and wrapper classes.
UNIT V INTERFACES, PACKAGES, THREADING, EXCEPTIONS AND APPLETS 9
Defining interfaces – Extending, implementing, accessing interfaces – Java API
packages – Defining user defined packages and usage – Creating threads – Extending
the thread class – Life cycle of a thread – Thread priority – Synchronization –
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Exceptions – Syntax of exception handling code – try, catch and finally statements –
Throwing our own exceptions – Preparing to write applets – Applet lifecycle –
Executable applet – Designing a web page – Applet tags – Adding applet to HTML file –
Running the Applet – Passing parameter to Applets.
TOTAL : 45 PERIODS
TEXT BOOKS
1. Balagurusamy, E., “Object Oriented Programming with C++”, 3rd Edition, Tata
McGraw-Hill, 2006.
2. Balagurusamy, E., “Programming with JAVA – A Primer”, 3rd Edition, Tata McGraw-
Hill, 2007.
REFERENCES
1. Sourav Sahay, “Object Oriented Programming with C++”, Second Impression,
Oxford University Press, 2006.
2. Herbert Schildt, “C++ - The Complete Reference”, 14th Reprint, Tata McGraw-Hill,
2006.
3. Herbert Schildt, “Java - The Complete Reference”, 7th Edition, Tata McGraw-Hill,
2007.
4. Deitel, H.M., and Deitel, P.J., “C++ : How to program”, 5th Edition,Prentice - Hall of
India, 2005.
5. Deitel, H.M., and Deitel, P.J., “Java : How to program’, 6th Edition, Prentice - Hall of
India, 2006.
CS9162 COMPUTER PRACTICE II L T P C
0 0 3 2
1. Shell Commands, Wild Cards, Escaping and Redirection.
2. Pipes, Tees and Command Substitution.
3. Shell Variables, Simple program using Shell Scripting.
4. Shell Programs using Loops.
5. Simple Shell Programs using File I/O.
6. Advanced Shell Programs using File I/O.
7. Directories and i-nodes.
8. Simple programs using classes for understanding objects, member function,
constructions and destructors.
9. Programs using operator overloading including unary operators, new and delete
10. Programs using inheritance concepts
11. Programs using virtual functions and dynamic polymorphism
12. Programs using templates.
TOTAL: 45 PERIODS
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EE9162 ELECTRIC CIRCUITS LABORATORY L T P C
0 0 3 2
1. Verification of Kirchhoff’s Laws.
2. Verification of Thevenin’s Theorem and Norton’s Theorem
3. Verification of Super position and Compensation Theorem.
4. Verification of Reciprocity Theorem and Maximum Power Transfer Theorem.
5. Study of CRO and measurement of sinusoidal voltage, frequency and
power factor.
6. Study of Low-Pass and High-Pass filters.
7. Study of the characteristics of series and parallel resonance circuits.
8. Frequency response of RC and RL circuits.
9. Frequency response of series RLC circuit.
10. Transient response of RC and RLC circuits.
TOTAL: 45 PERIODS

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E & I Syllabus