Showing posts with label anna univ. Show all posts
Showing posts with label anna univ. Show all posts

Sunday, February 5, 2012

PASSING REQUIREMENTS FOR ANNA UNIV 2008 CREDIT SYSTEM

PASSING REQUIREMENTS
13.1 A candidate who secures not less than 50% of total marks prescribed for the courses (IA
+ End semester examination) with a minimum of 50% of the marks prescribed for the
end-semester Examination in both theory and practical courses (including Project work),
shall be declared to have passed in the Examination.
13.1.1 If a candidate fails to secure a pass in a particular course, it is mandatory that he / she
shall register and reappear for the examination in that course during the next semester
when examination is conducted in that course; he / she should continue to register and
reappear for the examination till he / she secures a pass.
13.1.2 The internal assessment marks obtained by the candidate in the first appearance shall be
retained and considered valid for all subsequent attempts till the candidate secure a pass
as per clause 13.1.
However, from the 3rd attempt onwards if a candidate fails to obtain pass marks (IA +
End Semester Examination) as per clause 13.1 then the passing requirement shall be as
follows:
13.2 The candidate should secure 50% and above the maximum marks prescribed for the
course in the university examinations alone.

Monday, January 23, 2012

TIPS FOR ANNA UNIVERSITY FIRST YEAR STUDENTS

TIPS FOR ANNA UNIVERSITY FIRST YEAR STUDENTS
HI GUYS EXAMS ARE VERY NEAR TO YOU AND MANY ASKED ME HOW TO GET SCORE IN ALL SUBJECTS AND SOME ASKED HOW TO GET PASS EASILY AND THE CRITERIA OF PASSING.

FIRST I AM GOING TO TELL YOU WHAT IS THE PASS MARK AND HOW IT IS GIVEN
TO PASS IN A SUBJECT YOU NEED TO GET 50 . MANY OF YOU MAY THINK THAT WITHOUT PERFORMING WELL IN INTERNAL TESTS AND GETTING 50 IN SEMESTER EXAM IS ENOUGH BUT IT IS NOT TRUE. YOUR SEMESTER MARKS WHICH YOU WRIGHT FOR 100 MARKS WILL BE CONVERTED FOR 80. FOR EXAMPLE IF YOU GET 100 IN SEMESTER EXAM AND 0 IN INTERNAL MEANS THEN YOUR TOTAL MARKS WILL BE 80 ONLY.

YOUR TOTAL MARKS= (EXTERNAL MARK (OUT OF 100) * 0.8 ) + INTERNAL MARKS

INTERNAL MARKS NOT ONLY MAKES YOU TO GET HIGH SCORE BUT ALSO HELP YOU TO PASS EASILY EVEN IN A TOUGH SUBJECT.

EXAMPLE : YOUR INTERNAL MARK IS 20 (OUT OF 20)
THEN YOU NEED TO TAKE ONLY 38 (OUT OF 100) IN YOUR EXTERNAL EXAM
WHICH IS THEN CONVERTED FOR 80 IT WILL BECOME 38*0.8=30
SO, YOUR TOTAL MARKS = 30+20 = 50 YOU ARE PASS CONGRATS!!!

THIS ARTICLE IS FOR THOSE WHO FEEL LITTLE DIFFICULT TO STUDY.
  1. BELIEVE IN YOU. YOU WILL PASS DEFINITELY
  2. FOR PASSING YOU NEED TO DO SOMETHING.WHAT TO DO CUT YOUR PHONES, TV, ETC., WHILE STUDYING
  3. TRY TO COVER ATLEAST 3 UNITS IN EACH SUBJECT FULLY (YOU CAN OMIT ONLY ONE TOPIC FROM EACH UNIT WHICH YOU FIND DIFFICULT EVEN IF COME YOU CAN LEAVE IT IN CHOICE)
  4. FIRST DOWNLOAD THE SYLLABUS FOR ALL SUBJECTS.
  5. DONT STUDY BOOK FULLY PLEASE REFER SYLLABUS BEFORE STUDYING
  6. AFTER STUDYING 3 UNITS JUST STUDY THE IMPORTANT QUESTIONS FROM THE REMAINING 2 UNITS.
  7. EVEN IF THE QUESTION PAPER IS TOO TOUGH DONT LOOSE YOUR HOPE JUST WRITE WHATEVER YOU KNOW.
  8. TRY TO FINISH THE 42 PAGES
  9. WRITE NEATLY ATLEAST FIRST TWO BIG QUESTIONS
CONGRATS PLEASE GO AND STUDY NOW....IF YOU FEEL THIS ARTICLE USEFUL PLEASE LIKE AS ON FACEBOOK AND SHARE TO YOUR FRIENDS TOOO

IMPORTANT QUESTIONS ENGINEERING PHYSICS-1 SUBJECT CODE- PH2111(2009-2010) (Common to all branches of B.E. & B.Tech.)

IMPORTANT QUESTIONS ENGINEERING PHYSICS-1 SUBJECT CODE- PH2111(2009-2010) (Common to all branches of B.E. & B.Tech.)

IMPORTANT QUESTIONS
ENGINEERING PHYSICS-1
SUBJECT CODE- PH2111(2009-2010)
(Common to all branches of B.E. & B.Tech.)

Short Answer Question
PART-A
UNIT I - ULTRASONICS

1. What is an Ultrasonic wave? Mention its properties.
2. Name the methods by which Ultrasonic waves are produced?
3. Define Magnetostriction effect?
4. What are the disadvantages of magnetostriction oscillator?
5. Define Piezo Electric effect?
6. What is the main difference in the quality of ultrasonic waves produced by Piezo electric and magnetostriction method?
7. What is Inverse Piezo electric effect?
8. What are the advantages of Piezo electric oscillators?
9. What are the demerits of the Piezo – electric oscillator?
10. What is an acoustic grating?
11. Name any four methods of detection of ultrasonic waves.
12. Give the important applications of ultrasonics.
13. What is Cavitations? Mention its uses.
14. What is the principle of SONAR?
15. How can SONAR be used to find depth of the sea?
16. What is sonogram?
17. What are the methods to detect the ultrasonic waves?
18. Write a short notes on sonar
19. What is Coagulation?
20. State any four use of ultrasonic.
21. Define Non-destructive testing.
22. What is A-scan?
23. What is B- Scan?
24. What is C- Scan?
25. Write any two medical applications of Ultrasonics.

UNIT II - LASERS

26. What is Laser? What are its characteristics?
27. Distinguish between Spontaneous and stimulated emission
28. What is Stimulated emission?
29. What is Spontaneous emission?
30. What is Stimulated absorption?
31. What are Einstein’s coefficients?
32. Define population Inversion.
33. Define normal population.
34. What is pumping action?
35. What are the conditions to achieve the laser action?
36. Distinguish between Four level and three level lasers.
37. Compare the characteristics of laser with ordinary thermal source of light.
38. What are the three important components of laser device?
39. How lasers are classified? or Mention the various types of lasers.
40. What is Nd – YAG laser?
41. What are the applications of Nd- YAG laser?
42. What is CO2 laser?
43. What is the active medium in CO2 laser?
44. What are the applications of CO2 laser?
45. What is Semiconductor laser?
46. What are the applications of Semiconductor laser?
47. Name any four uses of laser in medical field.
48. Name any four uses of laser in engineering field.
49. What is an optical resonator?
50. Define Active centre and Active medium?
51. What is hologram?

UNIT III – FIBRE OPTICS & APPLICATIONS

52. Define Optical Fiber.
53. What is the principle of optical fiber?
54. What are the conditions for total internal reflection?
55. What is meant by mode?
56. Define numerical apertures.
57. Define acceptance angle.
58. What is single mode fiber?
59. What is multi mode fiber?
60. What is step index fiber?
61. What is graded index fiber?
62. What is a wave guide?
63. What are the types of optical fibers based on number of modes?
64. What are the types of optical fibers based on refractive index profile?
65. Mention the components involved in fiber optical system?
66. Distinguish between step and graded index fiber.
67. Distinguish between single mode and Multi mode fiber.
68. Write a short note on losses in optical fiber.
69. What is intrinsic absorption?
70. Distinguish between Active and Passive fiber.
71. What is sensor? What are the good conditions for sensor?
72. Define Splicing.
73. What is dispersion?
74. What is attenuation?
75. What are the advantages of the fiber optical communication system?
76. Write the applications of fiber optical system.
77. Define Chromatic dispersion
78. Define Intermodel dispersion
79. What are the industrial applications of ultrasonics?
80. Distinguish between hologram and photography.
81. What are the detectors that are used in fiber optic communication?
82. Write a short note on temperature sensor
83. Write a short note on pressure sensor





UNIT IV – QUANTUM PHYSICS

84. What is Black body radiation?
85. What is Schrödinger wave equation?
86. Write the postulates of Planck’s Quantum theory.
87. Write down Planck’s radiation formula.
88. State Wien’s displacement law.
89. State Rayleigh – Jean’s law.
90. State Heisenberg’s uncertainty principle.
91. What is Compton Effect?
92. What is Compton wavelength?
93. What are minimum and maximum values of Compton shift?
94. What is a wavefuntion?
95. Mention some of the physical significance of the wave function.
96. What are “Eigen values” and “Eigen functions”?
97. What is meant by Photon? Give its properties.
98. What are de- Broglie wave or matter waves?
99. Explain degenerate states and non-degenerate states.
100. What is Schrödinger wave equation?
101. Write down Schrödinger time independent and dependent wave equations.
102. Write the energy value of the particle in one dimensional box.
103. Mention some important applications of quantum mechanics.



UNIT V –CRYSTAL PHYSICS

104. Define crystal.
105. Define unit cell.
106. Define atomic radius.
107. Define co-ordination number.
108. Define space lattice.
109. What are lattice parameters?
110. What is a primitive cell?
111. What is non-primitive cell?
112. Define Basis.
113. What is crystallography?
114. What are miller indices?
115. Define Bravais lattice.
116. Define burgers vectors.
117. What is dislocation?
118. Define Screw dislocation.
119. Define edge dislocation.
120. Define Frenkel and Schottky defect.
121. Define Substitution impurity defect.
122. Define interstitial impurities.
123. Define Stacking faults.
124. Define grain boundaries.
125. Draw (111) plane in simple cubic.
126. Draw (101) plane in simple cubic.
127. Define interplanar distance.
128. Define polymorphism and allotropy.
129. Write the atomic radius, co-ordination number for diamond structure.
130. Define packing fraction
131. Name seven crystal systems.

Part-B
UNIT I –ULTRASONICS

1. What is Magnetostriction effect? Explain Magnetostriction Oscillators.
2. What is piezo electric Effect? Explain piezo electric Oscillators.
3. Determine the velocity measurement of ultrasonic waves in liquids.
4. Write a short note on (i) Detection of ultra sonic (ii) Cavitation (iii)Sonar
5. Explain with neat sketch the application of ultrasonic in cardiology.
6. How ultrasonic waves are detected? Explain.
7. Give the industrial applications of ultrasonic waves in detail.
8. Give the medical applications of ultrasonic waves in detail.
9. Explain Non-destructive testing method in detail.
10. Explain ultrasonic imaging systems in detail.

UNIT II - LASERS

11. Describe the construction and working of Nd-YAG laser.
12. Describe the construction and working of Co2 laser.
13. Describe the construction and working of semiconductor laser.
14. Describe the construction and working of He-Ne laser.
15. Explain with neat sketch the construction and reconstruction of holographic image.
16. Explain Einstein coefficient and then prove ratio of stimulated to spontaneous emission is given by 1/ehv/kT-1.
17. Discuss the applications of laser in various fields.


UNIT III –FIBER OPTICS AND APPLICATIONS


18. Derive the expression for acceptance angle and Numerical aperture of an optical fiber.
19. Write a short note on (i) Principle of light in optical fiber (ii) Double crucible method.
20. Classify the optical fibers on the basis of materials, modes of propagation and refractive index difference.
21. Write a shote note on (i) step index fiber (ii) Graded index fiber.
22. Write a short note on (i) Single mode fiber (ii) Multimode fiber.
23. Write a short note on (i) losses in optical fiber (ii) Fiber optic communication system.
24. What are Fiber splices? Explain in detail.
25. Write a short note on (i) Pressure and Intensity sensor (ii) displacement sensor.


UNIT IV – QUANTUM PHYSICS

26. What is Black Body radiation .Derive the expression for Planck theory of black body radiation?
27. What is Compton Effect? Derive the expression for the Compton shift wavelength.
28. Derive the expression for schroedinger time independent and dependent wave equation.
29. Explain particle in one dimensional box and also explain three dimensional effects.
30. Explain (i) Transmission electron Microscope (ii) Scanning Electron Microscope.

UNIT V – CRYSTAL PHYSICS

31. Show that packing fraction for simple cubic is 52%
32. show that packing fraction for body centered cubic is 68%
33. Show that packing fraction for face centered cubic is 74%
34. What is Hcp structure explain c/a ratio is 1.632 and also packing fraction is 74%
35. What are miller indices? Show that interplanar distance is d=a/√(h2+k2+l2).
36. Write a short note on (i) Diamond Structure (ii) Nacl structure (iii) Bravais lattice
37. Explain various types of defects in crystals in detail.

CS2060 High Speed Networks QUESTION BANK DOWNLOAD | ANNA UNIVERSITY SYLLABUS | ANNA UNIVERSITY QUESTION BANK


CS2060 High Speed Networks
QUESTION BANK DOWNLOAD | ANNA UNIVERSITY SYLLABUS | ANNA UNIVERSITY QUESTION BANK
HIGH SPEED NETWORKS


DEPARTMENT OF ELECTRONICS AND COMMUNICATION
ENGINEERING
QUESTION BANK


SUBJECT CODE : CS2060 SEM / YEAR : VII / IV
SUBJECT NAME : HIGH SPEED NETWORKS
UNIT - I
HIGH SPEED NETWORKS (Introduction)
PART- A ( 2 marks)
1. What are the data link control functions provided by LAPF?
2. What are the main features of ATM?
3. What is virtual path identifier and Virtual connection identifier?
4. What is ATM ?
5. List the levels of fiber channel and the functions of each level?
6. What is meant by SAR and CS?
7. What is the difference between AAL3/4 and AAL3/5.
8. Draw the diagram for ATM layers?
9. Give the data rates for frame relay and X.25?
10. Define NIC and Ethernet.
PART - B
1. Explains the Frame relay architecture & compare it with x.25. (16)
2. a. Explain the ATM cell with a suitable diagram and explain Generic Flow
Control and Header error control. (8)
b. Explain varies ATM services. (8)
3. a. Discuss and compare the CPCS-PDU & SAR-PDU of AAL ¾ & AAL 5 (8)
b. Explain the architecture of AAL 1 (8)
4. Explain the architecture of 802.11 (16)
5. Explain the following:
a. Classical Ethernet (8)
b.IEEE 802.3 medium options at 10 Mbps (8)
6 a. Fast Ethernet (8)
b. gigabit Ethernet (8)
C.Explain Fiber channel Protocol architecture. (8)


UNIT- II
CONGESTION & TRAFFIC MANAGEMENT
PART- A ( 2 marks)
1. What is the role of DE lint in Frame relay?
2. How does frame relay report congestion?
3. Write Little’s formula.
4. Define Traffic intensity or utilization factor and QOS.
5. What is the difference between committed burst size (Bc) and Excess burst size (Be).
6. Define terms Router, Bridge and Gateway.
7. What is Bluetooth?
8. Distinguish between Poisson and Exponential formulae.
9. How we calculate the percentile of packets transfer at a time in traffic management technique.
10 Define Arrival rate and service rate.
PART - B
1. Explain the single- server and multi server queering models. (16)
2. At an ATM machine in a supermarket, the average length of a transaction is 2 minutes,and on average, customers arrive to use the machine once every 5 minutes, How long is the average time that a person must spend waiting and using the machine? What is the 90th percentile of residence time? On average, how many people are waiting to use the machine? Assume M/M/1. .(16)
3. Consider a frame relay node that is handling a Poisson stream of incoming frames to betransmitted on a particular 1 – Mbps outgoing link. The stream consists of two types of frames. Both types pf frames have the same exponential distribution of frame length with a mean of 1000 bits.
a. Assume that priorities are not used. The combined arrival rate of frame of both types is 800 frames/second. What is the mean residences time (Tr) for all frames?
b. Now assume that the two types are assigned different priorities, with the arrival rate of type 1 of 200 frames/second and the arrival rate of type 2 of 600 frames/second. Calculate
the mean residence time for type 1, type2, and overall.
c. Repeat (b) for _1 = _2 = 400 frames/second.
d. Repeat (b) for _1 = 600 frames/second and _2 = 200 frames/second. . (16)
4. Messages arrive at a switching center for a particular outgoing communications line in a poisson manner with a mean arrival rate of 180 messages per hour. Message length is distributed exponentially with a mean length of 14,400 characters. Line speed is 9600 bps.
a. What is the mean waiting time in the switching center? (6)
b. How many messages will be waiting in the switching center for transmission on the average? (10)
5. a.Explain the effects of congestion. (8)
b. Explain the congestion control mechanisms in networks. (8)


UNIT – III
TCP AND ATM CONGESTION CONTROL
PART- A ( 2 marks)
1. Define the relationship between through put and TCP window size W.
2. Why is retransmission strategy essential in TCP?
3. What are the types of retransmit policy?
4. Why congestion control in a TCP/IP-based internet is complex.
5. Define cell delay variation.
6. Define CBR 8 ABR.
7. What are the advantages of sliding window protocol
PART - B
1 a. Explain TCP flow & congestion control. (10)
b.Explain the Retransmissions Timer management techniques. (6)
2. Explain the five important window management techniques. (16)
3. a Explain the congestion control mechanism in ATM networks carrying TCP traffic. (10)
b.Explain the ATM traffic control (6)
4. a. What are the requirements for ATM traffic and congestion control? (10)
b. Explain the ATM traffic – related attributes. (6)
5 a.. Explain in detail ABR traffic management. (8)
b. Explain in detail GFR traffic management. (8)


UNIT- IV
INTEGRATED AND DIFFERENTIATED SERVICES
PART- A ( 2 marks)
1. What are the requirements for inelastic traffic?
2. State the drawbacks of FIFO queering discipline.?
3. What is global synchronization?
4. Distinguish between inelastic and elastic traffic.?
5. Define the format of DS field.?
PART - B
1. Explain the block diagram for Integrated Services Architecture. and give details about
components (16)
2.a. Explain the services offered by ISA (8)
b.Define Differentiated services. (8)
3. Explain the various queering disciplines in ISA. (16)
4. Explain the RED algorithm. (16)
5. Explain the various types of Traffic. (16)


UNIT-V
PROTOCOLS FOR QOS SUPPORT
PART- A ( 2 marks)
1. What are the reservations attributes and styles in RSVP.
2. Define Forwarding equivalence class (FEC).
3. Define MPLS label format in RSVP.
4. Compare hop – lug – hop routing and explicit routing.
5. Define the format of RTP header.
PART - B
1.a. Explain the characteristics of RSVP & the types of data flow. (8)
b. Explain the RSVP operation and protocol mechanisms. (8)
2. Explain the operation of multi protocol label switching. (16)
3 a. Explain the RTP protocol architecture. (8)
b. Explain the RTP data transfer protocol. (8)
4. Explain the MPLS characteristics and advantages. (16)
***ALL THE BEST*****
CS2060 HIGH SPEED NETWORKS QUESTION BANK DOWNLOAD | ANNA UNIVERSITY SYLLABUS | ANNA UNIVERSITY QUESTION BANK
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PASSING REQUIREMENTS for regulation 2008 credit system

PASSING REQUIREMENTS
13.1 A candidate who secures not less than 50% of total marks prescribed for the courses (IA
+ End semester examination) with a minimum of 50% of the marks prescribed for the
end-semester Examination in both theory and practical courses (including Project work),
shall be declared to have passed in the Examination.
13.1.1 If a candidate fails to secure a pass in a particular course, it is mandatory that he / she
shall register and reappear for the examination in that course during the next semester
when examination is conducted in that course; he / she should continue to register and
reappear for the examination till he / she secures a pass.
13.1.2 The internal assessment marks obtained by the candidate in the first appearance shall be
retained and considered valid for all subsequent attempts till the candidate secure a pass
as per clause 13.1.
However, from the 3rd attempt onwards if a candidate fails to obtain pass marks (IA +
End Semester Examination) as per clause 13.1 then the passing requirement shall be as
follows:
13.2 The candidate should secure 50% and above the maximum marks prescribed for the
course in the university examinations alone.

GE2152 BASIC CIVIL & MECHANICAL ENGINEERING GE2152 syllabus

CIVIL & MECHANICAL ENGINEERING 4 0 0 4
(Common to branches under Electrical and I & C Faculty)
A – CIVIL ENGINEERING
UNIT I SURVEYING AND CIVIL ENGINEERING MATERIALS 15
Surveying: Objects – types – classification – principles – measurements of
distances – angles – leveling – determination of areas – illustrative examples.
Civil Engineering Materials: Bricks – stones – sand – cement – concrete – steel
sections.
UNIT II BUILDING COMPONENTS AND STRUCTURES 15
Foundations: Types, Bearing capacity – Requirement of good foundations.
Superstructure: Brick masonry – stone masonry – beams – columns – lintels –
roofing – flooring – plastering – Mechanics – Internal and external forces – stress –
strain – elasticity – Types of Bridges and Dams – Basics of Interior Design and
Landscaping.
TOTAL : 30 PERIODS
B – MECHANICAL ENGINEERING
UNIT III POWER PLANT ENGINEERING 10
Introduction, Classification of Power Plants – Working principle of steam, Gas,
Diesel, Hydro-electric and Nuclear Power plants – Merits and Demerits – Pumps and
turbines – working principle of Reciprocating pumps (single acting and double acting)
– Centrifugal Pump.
UNIT IV I C ENGINES 10
Internal combustion engines as automobile power plant – Working principle of Petrol
and Diesel Engines – Four stroke and two stroke cycles – Comparison of four stroke
and two stroke engines – Boiler as a power plant.
UNIT V REFRIGERATION AND AIR CONDITIONING SYSTEM 10
Terminology of Refrigeration and Air Conditioning. Principle of vapour compression
and absorption system – Layout of typical domestic refrigerator – Window and Split
type room Air conditioner.
TOTAL: 30 PERIODS
R EFERENCES:
1. Shanmugam G and Palanichamy M S, “Basic Civil and Mechanical
Engineering”,Tata McGraw Hill Publishing Co., New Delhi, (1996).
2. Ramamrutham. S, “Basic Civil Engineering”, Dhanpat Rai Publishing Co. (P)
Ltd. (1999).
3. Seetharaman S. “Basic Civil Engineering”, Anuradha Agencies, (2005).
4. Venugopal K and Prahu Raja V, “Basic Mechanical Engineering”, Anuradha
Publishers, Kumbakonam, (2000).
5. Shantha Kumar S R J., “Basic Mechanical Engineering”, Hi-tech Publications,

MA2264 NUMERICAL METHODS MA 2264 NUMERICAL METHODS syllabus

MA2264 NUMERICAL METHODS MA 2264 NUMERICAL METHODS

MA2264 NUMERICAL METHODS 3 1 0 4
(Common to Civil, Aero & EEE) (VISIT )
AIM
With the present development of the computer technology, it is necessary to develop
efficient algorithms for solving problems in science, engineering and technology. This
course gives a complete procedure for solving different kinds of problems occur in
engineering numerically.
OBJECTIVES
At the end of the course, the students would be acquainted with the basic
concepts in numerical methods and their uses are summarized as follows:
i. The roots of nonlinear (algebraic or transcendental) equations, solutions of large
system of linear equations and eigen value problem of a matrix can be obtained
numerically where analytical methods fail to give solution.
ii. When huge amounts of experimental data are involved, the methods discussed on
interpolation will be useful in constructing approximate polynomial to represent the
data and to find the intermediate values.
iii. The numerical differentiation and integration find application when the function in
the analytical form is too complicated or the huge amounts of data are given such
as series of measurements, observations or some other empirical information.
iv. Since many physical laws are couched in terms of rate of change of one/two or
more independent variables, most of the engineering problems are characterized in
the form of either nonlinear ordinary differential equations or partial differential
equations. The methods introduced in the solution of ordinary differential equations
and partial differential equations will be useful in attempting any engineering
problem.
1. SOLUTION OF EQUATIONS AND EIGENVALUE PROBLEMS 9
Solution of equation - Fixed point iteration: x=g(x) method – Newton’s method –
Solution of linear system by Gaussian elimination and Gauss-Jordon methods - Iterative
methods - Gauss-Seidel methods - Inverse of a matrix by Gauss Jordon method –
Eigen value of a matrix by power method and by Jacobi method for symmetric matrix.
2. INTERPOLATION AND APPROXIMATION 9
Lagrangian Polynomials – Divided differences – Interpolating with a cubic spline –
Newton’s forward and backward difference formulas.
3. NUMERICAL DIFFERENTIATION AND INTEGRATION 9
Differentiation using interpolation formulae –Numerical integration by trapezoidal and
Simpson’s 1/3 and 3/8 rules – Romberg’s method – Two and Three point Gaussian
quadrature formulas – Double integrals using trapezoidal and Simpsons’s rules.
25
4. INITIAL VALUE PROBLEMS FOR ORDINARY DIFFERENTIAL
EQUATIONS 9
Single step methods: Taylor series method – Euler methods for First order Runge –
Kutta method for solving first and second order equations – Multistep methods: Milne’s
and Adam’s predictor and corrector methods.
5. BOUNDARY VALUE PROBLEMS IN ORDINARY AND PARTIAL
DIFFERENTIAL EQUATIONS 9
Finite difference solution of second order ordinary differential equation – Finite difference
solution of one dimensional heat equation by explicit and implicit methods – One
dimensional wave equation and two dimensional Laplace and Poisson equations.
L = 45 T = 15 Total = 60
TEXT BOOKS
1. VEERARJAN,T and RAMACHANDRAN.T, ‘NUMERICAL MEHODS with
programming in ‘C’ Second Edition Tata McGraw Hill Pub.Co.Ltd, First reprint
2007.
2. SANKAR RAO K’ NUMERICAL METHODS FOR SCIENTISITS AND
ENGINEERS –3rd Edition Princtice Hall of India Private, New Delhi, 2007.
REFERENCE BOOKS(VISIT )
1. P. Kandasamy, K. Thilagavathy and K. Gunavathy, ‘Numerical Methods’,
S.Chand Co. Ltd., New Delhi, 2003.
2. GERALD C.F. and WHEATE, P.O. ‘APPLIED NUMERICAL ANALYSIS’…
Edition, Pearson Education Asia, New Delhi.