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Exam Details

Instrumentation Engineering (IN) 2013 [Session 2]

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Questions 65
Duration 180 mins
Package Instrumentation Engineering (IN) - Previous Year Papers

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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

Instrumentation Engineering (IN) 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

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Sample questions from this paper

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

1
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]
Q.1 – Q.25 carry one mark each.

The discrete-time transfer function 1 - 2z−1 / 1 - 0.5z−1 is

A
non-minimum phase and unstable.
B
minimum phase and unstable.
C
minimum phase and stable.
D
non-minimum phase and stable.
2
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]

The type of the partial differential equation ∂2f/∂t2 = ∂2f/∂x2 is

A
Parabolic
B
Elliptic
C
Hyperbolic
D
Nonlinear
3
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]

Match the following biomedical instrumentation techniques with their applications

Group IGroup II
P: OtoscopyU: Respiratory volume measurement
Q: Ultrasound TechniqueV: Ear diagnostics
R: SpirometryW: Echo-cardiography
S: Thermodilution TechniqueX: Heart volume measurement
A
P.U, Q.V, R.X, S.W
B
P.V, Q.U, R.X, S.W
C
P.V, Q.W, R.U, S.X
D
P.V, Q.W, R.X, S.U
4
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]

A continuous random variable X has a probability density function f(x) = e−x, 0 < x < ∞. Then P(X > 1) is

A
0.368
B
0.5
C
0.632
D
1.0
5
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]

A band-limited signal with a maximum frequency of 5 kHz is to be sampled. According to the sampling theorem, the sampling frequency in kHz which is not valid is

A
5
B
12
C
15
D
20
6
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 2]

The differential pressure transmitter of a flow meter using a venturi tube reads 2.5 × 102 Pa for a flow rate of 0.5 m3/s. The approximate flow rate in m3/s for a differential pressure 9.0 × 102 Pa is

A
0.30
B
0.18
C
0.83
D
0.60