Saturday 9 March 2013

Software engineering-software engineering question papers-anna university software engineering question papers-cs338 software engineering

PART – A (10 x 2 = 20 Marks)


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1. Define the term software engineering?
2. Name the different approaches to software sizing problems.
3. Define the terms cardinality and modality.
4. What are the properties to be specified in architectural design.
5. What are the factors to be considered for computing function points?
6. Give the definition software reliability and availability.
7. Give any two differences between white box and black box testing.
8. What do we need version control.
9. Why do meant by sensitivity testing?
10. Write any four features and contents of Case repository.

PART – B (5 x 16 = 80 Marks)

11.a)i) Explain the spiral model with neat diagram. (8)
ii) What are the approaches for software prototyping? Describe in detail. (8)

12.a)i) What is data modeling? Identify the data objects with attributes used in Employee Information systems. Draw the ER diagram neatly. (8)
ii) Explain modularity in detail (8)

OR

12.b)i) Explain cohesion and coupling in with necessary diagrams. (10)
ii) List out design heuristics for effective modular design (6)
13.a)i) Compute the function point value for a project with the following information domain characteristics.
Number of user inputs 32
Number of outputs 60
Number of inquiries 24
Number of files 8
Number of external interfaces 2
Assume that all complexity adjustment values are average (8)
ii) What are direct and indirect measures? Explain size-oriented metrics in detail. (8)

OR

13.b)i) Explain formal technical review in detail. (8)
ii) Write notes on ISO 9000 quality standards. (8)
14.a)i) Write a procedure to find the sum of Fibonacci series up to N. Draw the flow graph and find cyclomatic complexity. Derive all possible test cases. (16)
OR
14.b)i) Write in detail about system testing (8)
ii) Elaborate the types of maintenance (8)

15.a)i) What is CASE repository? Write about any 5 CASE tools. (10)
ii) What are the building blocks of CASE tools. (6)
OR
15.b) What are the tasks in SCM process? Explain each of them. (16)

Monday 17 December 2012

IMPORTANT QUESTIONS IN USER INTERFACE DESIGN-IT2024 IT 2024 subject for NOV/DEC 2012 AU ANNA UNIVERSITY EXAMINATIONS FOR FINAL YEAR 7th semester CSE Students


Important Questions in User Interface Design IT2024 IT 2024 subject for NOV/DEC 2012 AU ANNA UNIVERSITY EXAMINATIONS FOR FINAL YEAR 7th semester CSE Students


Unit-1

SECTION-1

1. Characteristics of Internet Vs Intranet - 8 Marks
2. Compare Printed Pages Vs Web Pages - 8 Marks
3. Need for Human Computer Interface - 8 Marks
4. Direct manipulation graphical system with example. - 8 Marks
5. Characteristics of GUI. - 16 Marks
6. Characteristics and Principles of UID - 16 Marks

SECTION-2
1. Compare GUI and Web Interface - 16 Marks
2. Characteristics and Principles involved in web user interface design - 16 Marks
3. Steps to be followed for creating an effective web user interface.

UNIT-2

SECTION-1
1. Impact of Human characteristics in design - 16 Marks
2. Requirement analysis. Direct method and indirect methods of business req analysis. - 16 Marks
3. Obstacles faced in UID? How is it improved by the designers? - 16 Marks

SECTION-2
1. Detailed note on graphical menu's. -16 Marks
2. Requirement analysis. Direct and indirect methods -16 Marks
3. Explain the concept of organizing screen display elements clearly and meaningfully. -16 Marks

UNIT-3

SECTION-1
1. Write in detail about types of windows -16 Marks
2. Components and presentation styles of windows - 16 Marks

SECTION-2
1. Detail about presentation controls - 16 Marks
2. Screen based controls used in web interface. -16 Marks
3. Selection and combination controls -16 Marks



UNIT-4

SECTION-1
1. Discuss the guidelines to be followed to provide text for web pages. -16 Marks
2. Accessibility -16 Marks
3. Guidance and Assistance -16 Marks
4. Internationalization and its issues - 16 Marks

SECTION-2
1. Detailed note on multimedia in UID -16 Marks
2. Accessibility -16 Marks
3. Icon Design guidelines -16 Marks

UNIT-5

SECTION-1
1. Prototypes -16 Marks
2. Usability Test and its types -16 Marks
3. Elaborate on need and types of text. -16 Marks

SECTION-2
1. Hypermedia -8 Marks
2. Test and stages involved in test -16 Marks
3. Information Search -8 Marks

Sunday 2 September 2012

ENGINEERING GRAPHICS-GE2111 ANNA UNIVERSITY QUESTION BANK-GE2111 . 185101 Engineering Graphics - PREVIOUS YEAR QUESTION PAPERS-185101(GE2111) Engineering Graphics — QUESTION BANk


B.E./B.Tech. DEGREE EXAMINATION, NOVEMBER/DECEMBER 2011

Common to All B.E./B.Tech.
First Semester
185101 — ENGINEERING GRAPHICS
(REGULATION 2010)
Time : Three hours Maximum : 100 marks
Answer ALL questions.
(5 X20 = 100 marks)
1. (a) Construct an ellipse when the distance of its focus from its directrix is equal to 50 mm and the eccentricity is 2/3. Also draw a tangent and a normal to the ellipse.
Or
(b) Make free hand sketches of the front, top and left side view of the object
shown in Fib. Q 1(b).

Fib. Q 1(b)
2. (a) A Line AB has its end A 15 mm above H.P and 20 mm in front of V.P. The end B is 60 mm above H.P. and the line is inclined at 30° to H.P. The distance between the end projectors of the line is 55 mm. Draw the projections and find its inclination with V.P.
Or
(b) A regular hexagonal lamina of 40 mm side is resting on one of its corner on H.P. Its surface is inclined at 45° to H.P. The plan of the diagonal through the corner which is on H.P. makes an angle of 45° with XY. Draw its projections.
3. (a) A hexagonal prism of side of base 25 mm and axis 60 mm rests on a corner of its base in H.P. with the axis of the prism inclined at 40° to H.P. and parallel to V.P. Draw its projections.
Or
(b) A pentagonal pyramid of base edge 25 mm and axis length 60 mm rests on one base side on HP such that the highest base corner is 20 mm above HP. Its axis is parallel to VP. Draw its top and front views.
4. (a) A tetrahedron of 60 mm long edges rests with one of its face on H.P. and an edge is perpendicular to V.P. A section plane perpendicular to V.P cuts the tetrahedron such that the true shape of section is an isosceles triangle of base 50 mm and altitude 36 mm. Draw the front view, sectional top view and the true shape of the section. Also find the inclination of the section plane.
Or
(b) A vertical cylinder of diameter 50 mm and height 80 mm is drilled by a hole of diameter 30 mm such that the axis of the hole is perpendicular toV.P. and parallel to H.P. Draw the lateral surface development of the solid.
5. (a) A hexagonal prism of base edge, 20 mm and height 60 mm rests on the H.P. on its base with two of its rectangular faces parallel to V.P. It is cut by a plane inclined at 30° to H.P cutting the axis of the prism at a height of 45 mm from its base. Draw the isometric view of the truncated prism.
Or
(b) A square prism of 55 mm edge of base and 70 mm height is placed on the ground behind the PP with its axis vertical and one of the edges of the base receding to the left at an angle of 40° to the PP. The nearest vertical edge of the solid is 20 mm behind PP and 25 mm to the left of the observer who is at a distance of 120 mm in front of PP. The height of the observer above the ground is 100 mm. Draw the perspective view of the prism.



                                   

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