My Cart
Your Cart 0

    Your cart is empty.

  • Total (Amount) ₹0.00
Exam Details

Instrumentation Engineering (IN) 2013 [Session 1]

Review the key details, then start the test when you are ready. You can also open the full package to see related papers.

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

Paper pattern & analysis

Filter this paper by subject, topic or subtopic. Every graph updates from the selected questions.

Explore previous papers
Showing all 65 questions in this paper.

Subject distribution

No subject classification is available.

Topic distribution

No topic classification is available.

Subtopic distribution

No subtopic classification is available.

Difficulty distribution

Easy 65 100%

Question type distribution

Multiple Choices 65 100%

Instructions

Instrumentation Engineering (IN) 2013 [Session 1] – 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
  • All other browser applications will be automatically closed
  • 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
Instrumentation Engineering (IN) 2013 [Session 1]
Q.1 – Q.25 carry one mark each.

The dimension of the null space of the matrix is

A
0
B
1
C
2
D
3
2
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 1]

If the A-matrix of the state space model of a SISO linear time invariant system is rank deficient, the transfer function of the system must have

A
a pole with a positive real part
B
a pole with a negative real part
C
a pole with a positive imaginary part
D
a pole at the origin
3
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 1]

Two systems with impulse responses h1(t) and h2(t) are connected in cascade. Then the overall impulse response of the cascaded system is given by

A
product of h₁(t) and h₂(t)
B
sum of h₁(t) and h₂(t)
C
convolution of h₁(t) and h₂(t)
D
subtraction of h₂(t) from h₁(t)
4
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 1]

The complex function tanh(s) is analytic over a region of the imaginary axis of the complex s-plane if the following is TRUE everywhere in the region for all integers n

A
Re(s) = 0
B
Im(s) ≠ nπ
C
Im(s) ≠ nπ/3
D
Im(s) ≠ (2n+1)π/2
5
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 1]

For a vector E, which one of the following statements is NOT TRUE?

A
If ∇·E = 0, E is called solenoidal.
B
If ∇×E = 0, E is called conservative.
C
If ∇×E = 0, E is called irrotational.
D
If ∇·E = 0, E is called irrotational.
6
2013 · Unclassified
Instrumentation Engineering (IN) 2013 [Session 1]

For a periodic signal v(t) = 30sin100t + 10cos300t + 6sin(500t + π/4), the fundamental frequency in rad/s is

A
100
B
300
C
500
D
1500