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Previous year question hub

ESE & GATE ME - Previous Year Papers Previous Year Questions

Practice ESE & GATE ME - Previous Year Papers previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

55Papers
19Years
4,860Questions
0Topics

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
ESE Mechanical Engineering PAPER 1 20212021100View paper
ESE Mechanical Engineering PAPER 2 (TECHNICAL) 20212021150View paper
Mechanical Engineering 14 FEBRUARY SHIFT 1 2021202165View paper
Mechanical Engineering 14 FEBRUARY SHIFT 2 2021202165View paper
ESE Mechanical Engineering PRELIMS PAPER 1 20202020100View paper
ISRO Mechanical Engineering 2020202080View paper
Mechanical Engineering SET 1 2020202065View paper
ESE Mechanical Engineering PAPER 2 TECHNICAL 20192019150View paper
ESE Mechanical Engineering PRELIMS PAPER 1 20192019100View paper
Mechanical Engineering SET 1 2019201965View paper
Mechanical Engineering SET 2 2019201965View paper
ESE (IES) Mechanical Engineering PAPER 2 (TECHNICAL) 20182018150View paper
Mechanical Engineering SET 1 20182018165View paper
Mechanical Engineering SET 2 2018201865View paper
ESE (IES) Mechanical Engineering NON TECHNICAL 20172017100View paper
ESE (IES) Mechanical Engineering TECHNICAL 20172017150View paper
ISRO Mechanical Engineering P2 2017201780View paper
Mechanical Engineering SET 1 2017201765View paper
Mechanical Engineering SET 2 2017201765View paper
ESE (IES) Mechanical Engineering P1 20162016120View paper
ESE (IES) Mechanical Engineering P2 20162016120View paper
ISRO Mechanical Engineering 2016201680View paper
Mechanical Engineering SET 1 2016201665View paper
Mechanical Engineering SET 2 2016201665View paper
Mechanical Engineering SET 3 2016201665View paper
ESE (IES) Mechanical Engineering P1 20152015120View paper
ESE (IES) Mechanical Engineering P2 20152015120View paper
Mechanical Engineering SET 1 2015201565View paper
Mechanical Engineering SET 2 2015201565View paper
Mechanical Engineering SET 3 2015201565View paper
ESE (IES) Mechanical Engineering P1 20142014120View paper
ESE (IES) Mechanical Engineering P2 20142014120View paper
Mechanical Engineering SET 1 2014201465View paper
Mechanical Engineering SET 2 2014201465View paper
Mechanical Engineering SET 3 2014201465View paper
Mechanical Engineering SET 4 2014201465View paper
ESE (IES) Mechanical Engineering P1 20132013120View paper
ESE (IES) Mechanical Engineering P2 20132013120View paper
ISRO Mechanical Engineering 2013201380View paper
Mechanical Engineering 2013201365View paper
ISRO Mechanical Engineering 2012201280View paper
Mechanical Engineering 2012201265View paper
ISRO Mechanical Engineering 2011201180View paper
Mechanical Engineering 2011201165View paper
ISRO Mechanical Engineering 2010201080View paper
Mechanical Engineering 2010201065View paper
Mechanical Engineering 2009200960View paper
Mechanical Engineering 2008200885View paper
ISRO Mechanical Engineering 2007200780View paper
Mechanical Engineering 2007200785View paper
ISRO Mechanical Engineering 2006200680View paper
Mechanical Engineering 2006200685View paper
Mechanical Engineering 2005200590View paper
Mechanical Engineering 2004200490View paper
Mechanical Engineering 2003200390View paper

Sample previous year questions

A varied preview from the papers represented in this selection, with every available option.

1
2021 · Unclassified
ESE Mechanical Engineering PAPER 2 (TECHNICAL) 2021
Consider the following statements regarding mechatronics systems:
1) The anti-lock brakes on a car are a simple example of a real time computing system.
2) The completion of an operation after its deadline is considered useless in soft real time system.
3) The hard real time system tolerates lateness and may respond with decreased service quality.
Which of the above statements is/are correct?
A
1 Only
B
2 and 3 only
C
3 only
D
1, 2 and 3
Open complete paper
2
2021 · Unclassified
ESE Mechanical Engineering PAPER 1 2021
Which one of the following rules is NOT used for identifying an out-of-control process?
A
A process is assumed to be out-of-control if a single point plots outside the control limits.
B
A process is assumed to be out-of-control if there is a run of six or more consecutive points steadily increasing or decreasing.
C
A process is assumed to be out-of-control if nine or more consecutive points fall to one side of the centre line.
D
A process is assumed to be out-of-control if two or more consecutive points fall beyond the 1σ limit on the same side of the centre line.
Open complete paper
3
2021 · Unclassified
Mechanical Engineering 14 FEBRUARY SHIFT 2 2021
Five persons P, Q, R, S and T are to be seated in a row, all facing the same direction but not necessarily in the same order. P and T cannot be seated at either end of the row. P should not be seated adjacent to S.R is to be seated at the second position from the left end of the row. The number of distinct seating arrangements possible is:
A
4
B
3
C
2
D
5
Open complete paper
4
2021 · Unclassified
Mechanical Engineering 14 FEBRUARY SHIFT 1 2021
Consider the following sentences:
(i) After his surgery. Raja hardly could walk.
(ii) After his surgery. Raja could barely walk.
(iii) After his surgery. Raja barely could walk.
(iv) After his surgery. Raja could hardly walk.
Which of the above sentences are grammatically CORRECT?
A
(iii) and (iv)
B
(i) and (ii)
C
(i) and (iii)
D
(ii) and (iv)
Open complete paper
5
2020 · Unclassified
Mechanical Engineering SET 1 2020
Select the graph that schematically represents BOTH y=xm and y=x1/m properly in the interval 0 ≤ x ≤1, for integer values of m, where , m>1
A
A.
B
C
D
Open complete paper
6
2020 · Unclassified
ISRO Mechanical Engineering 2020
The laws of adhesive wear, commonly referred to as Archard’s law can be expressed as _____.
If ‘Q’ is the total volume of wear debris produced, ‘W’ is the normal load, ‘L’ is the sliding distance, ‘H’ is the hardness of the softest contacting surface being worn away, and ‘k’ is a non- dimensional wear coefficient dependent on the materials in contact and their exact degree of cleanliness)
A
Q = kWL/H
B
Q = kHW/L
C
Q = k/LWH
D
Q = kW/LH
Open complete paper