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Exam Details

Production & Industrial Engineering (PI) 2013 [Session 2]

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Questions 65
Duration 180 mins
Package Production & Industrial Engineering (PI) - Previous Year Papers

Paper pattern & analysis

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Subject distribution

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Topic distribution

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Subtopic distribution

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Difficulty distribution

Easy 65 100%

Question type distribution

Multiple Choices 65 100%

Instructions

Production & Industrial Engineering (PI) 2013 [Session 2] – Instructions
  • Total number of questions: 65
  • 30 questions carry one mark each
  • 35 questions carry two marks each
  • Negative marking: 1/3 of the marks allotted to the question
  • Use of calculator is allowed
  • This is a proctored examination
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  • After three warnings, the examination window will close automatically

Syllabus

Full Syllabus

Sample questions from this paper

Questions are selected across the paper subjects wherever the paper contains that variety.

1
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]
Q.1 – Q.25 carry one mark each.

The type of control chart used to monitor the amount of dispersion in a sample is

A
B
C
D
2
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]

Which one of the following is modeled based on adaptation capabilities of biological systems?

A
Relational database
B
Fuzzy system
C
Simulated annealing algorithm
D
Genetic algorithm
3
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]

A company manufactures 1000 toys every day. On an average, 10% of the toys are defective and 40% of the defective toys can be reworked into defect-free ones. The average number of defect-free toys manufactured daily is

A
900
B
920
C
940
D
960
4
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]

In simple exponential smoothing forecasting, to give higher weightage to recent demand information, the smoothing constant must be close to

A
−1
B
zero
C
0.5
D
1
5
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]

In the 3-2-1 principle of fixture design, 3 refers to the number of

A
clamps required
B
locators on the primary datum face
C
degrees of freedom of the workpiece
D
operations carried out on the primary datum face
6
2013 · Unclassified
Production & Industrial Engineering (PI) 2013 [Session 2]

A steel bar 200 mm in diameter is turned at a feed of 0.25 mm/rev with a depth of cut of 4 mm. The rotational speed of the workpiece is 160 rpm. The material removal rate in mm3/s is

A
160
B
167.6
C
1600
D
1675.5