My Cart
Your Cart 0

    Your cart is empty.

  • Total (Amount) ₹0.00
Exam Details

Mechanical Engineering 2009

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

Questions 60
Duration 180 mins
Package ESE & GATE ME - 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 60 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

Medium 47 78.3%
Easy 9 15%
Hard 4 6.7%

Question type distribution

Multiple Choices 60 100%

Instructions

Demo Instruction

Syllabus

Sample

Sample questions from this paper

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

1
2009 · Unclassified
Mechanical Engineering 2009
For a matrix , the transpose of the matrix is equal to the inverse of the matrix, [M]T = [M]-1. The value of x is given by
A
-0.8
B
2025-03-05 13:30:00
C
2025-04-05 12:30:00
D
-0.6
2
2009 · Unclassified
Mechanical Engineering 2009
The divergence of the vector field at a point (1,1,1) is equal to
A
7
B
4
C
3
D
0
3
2009 · Unclassified
Mechanical Engineering 2009
The inverse Laplace transform of is
A
1 + et
B
1 - et
C
1 - e-t
D
1 + e-t
4
2009 · Unclassified
Mechanical Engineering 2009
If three coins are tossed simultaneously, the probability of getting at least one head is
A
2025-01-08 13:30:00
B
2025-03-08 13:30:00
C
2025-01-02 13:30:00
D
2025-07-08 12:30:00
5
2009 · Unclassified
Mechanical Engineering 2009
If a closed system is undergoing an irreversible process, the entropy of the system
A
Must increase
B
Always remains constant
C
Must decrease
D
Can increase, decrease or remain constant
6
2009 · Unclassified
Mechanical Engineering 2009
The coolant fluid at 30 °C flows over a heated flat plate maintained at a constant temperature of 100 °C. The boundary layer temperature distribution at a given location on the plate may be approximated as T = 30 + 70 exp (-y) where y (in m) is the distance normal to the plate and T is in °C. If thermal conductivity of the fluid is 1.0 W/mK, the local convective heat transfer coefficient (in W/m2K) at that location will be
A
0.2
B
1
C
10
D
5