LOYOLA COLLEGE (AUTONOMOUS), CHENNAI – 600 034
M.Sc. DEGREE EXAMINATION – STATISTICS
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FOURTH SEMESTER – APRIL 2008
ST 4805 – APPLIED EXPRIMENTAL DESIGN
Date : 16-04-08 Dept. No. Max. : 100 Marks
Time : 9:00 – 12:00
SECTION – A
Answer all the questions (10 x 2 = 20 marks)
- Briefly explain the term “Randomization”
- Define mutually orthogonal contrast with an example.
- Give sum of squares for 3 factors interaction for 33 Factorial Design.
- If G(F) = pn where p = 5 and n = 1, list the elements of the finite field.
- When do we go for confounding Design?.
- What is meant by resolvable BIBD? Give an example.
- Give any two advantages of fractional factorial design
- Define a simple Lattice Square.
- State any two parametric conditions of a BIBD.
- What is meant by optimal surfaces?
SECTION-B
Answer any Five questions (5 x 8 = 40 marks)
- Describe, the analysis of variance for a 33 factorial design, stating all the
hypothesis, ANOVA and conclusions
- Distinguish between FIXED EFFECT MODEL and RANDOM EFFECT MODEL with suitable
illustrations.
- Construct a mutual mutually orthogonal Latin Square when the number of treatments v = 5.
- When do go for a PBIBD? Explain briefly with an illustration.
- Discuss in detail the various RESOLUTION DESIGNS.
- Explain the term repeated Latin Square Design and hence construct 5 X 5 repeated Latin Square
Design.
- Distinguish between ANOVA and ANOCOVA.
- Explain the term SPLIT – PLOT and STRIP = PLOT with an example.
SECTION-C
Answer any Two questions (2 x 20 = 40 marks)
- a) Distinguish between confounding and fractional replication.
- b) Develop, the analysis of variance for a 24 fractional factorial design, stating all the
hypothesis, ANOVA and conclusions
(10+10-Marks)
- a) Construct a PBIBD with 2 associate classes, stating all the parametric conditions.
- b) Discuss in detail the Linear and Quadratic Response Surface Designs stating the model analysis
and conclusions.
(10+10-Marks)
- a) Discuss in detail confounding in MORE THAN TWO BLOCKS using finite field.
- b) Construct BIBDs with v = 5 with k = 2, k = 3 and k = 4.
(10+10-Marks)
22 Write shorts on the following
- Local control
- Partial confounding
- Orthogonal Design. (5+5+5+5-Marks)
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