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Previous year question hub

Fluid Mechanics and Thermal Sciences - Mechanical Engineering Previous Year Questions

Practice Fluid Mechanics and Thermal Sciences - Mechanical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

28Papers
17Years
431Questions
1Topics

Fluid Mechanics and Thermal Sciences question pattern

Every graph below is calculated only from this selection.

Questions by year

Compare question counts across years.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 214 49.7%
Medium 214 49.7%
Hard 3 0.7%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 264 61.3%
Numerical Answer Type (NAT) 151 35%
MSQ 8 1.9%
Fill in the blanks 8 1.9%

Subject weightage

Top subjects by unique question coverage.

Mechanical Engineering
431 Qs

Most asked topics

Top topics across the included previous year papers.

Fluid Mechanics and Thermal Sciences
431 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Thermodynamics
158 Qs
Fluid Mechanics
132 Qs
Heat Transfer
119 Qs
Applications
22 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Mechanical Engineering (ME) 2026
15 Qs
Mechanical Engineering (ME) 2025
15 Qs
Mechanical Engineering (ME) 2024
15 Qs
Mechanical Engineering (ME) 2023
15 Qs
Mechanical Engineering (ME) 2021 [Session 1]
16 Qs
Mechanical Engineering (ME) 2020 [Session 2]
14 Qs
Mechanical Engineering (ME) 2020 [Session 1]
13 Qs
Mechanical Engineering (ME) 2019 [Session 1]
15 Qs
Mechanical Engineering (ME) 2019 [Session 2]
13 Qs
Mechanical Engineering (ME) 2018 [Session 2]
14 Qs
Mechanical Engineering (ME) 2018 [Session 1]
13 Qs
Mechanical Engineering (ME) 2017 [Session 2]
16 Qs
Mechanical Engineering (ME) 2016 [Session 2]
13 Qs
Mechanical Engineering (ME) 2016 [Session 1]
12 Qs
Mechanical Engineering (ME) 2016 [Session 3]
12 Qs
Mechanical Engineering (ME) 2014 [Session 1]
16 Qs
Mechanical Engineering (ME) 2014 [Session 2]
15 Qs
Mechanical Engineering (ME) 2014 [Session 3]
15 Qs
Mechanical Engineering (ME) 2014 [Session 4]
13 Qs
Mechanical Engineering (ME) 2013 [Session 4]
17 Qs
Mechanical Engineering (ME) 2013 [Session 1]
16 Qs
Mechanical Engineering (ME) 2013 [Session 2]
16 Qs
Mechanical Engineering (ME) 2013 [Session 3]
16 Qs
Mechanical Engineering (ME) 2011
16 Qs
Mechanical Engineering (ME) 2010
15 Qs
Mechanical Engineering (ME) 2009
17 Qs
Mechanical Engineering (ME) 2008
24 Qs
Mechanical Engineering (ME) 2007
24 Qs

Browse by subtopics

Open a focused page built from the same verified paper data.

Included previous year papers

Newest papers appear first. Search these papers or sort by year and name.

Paper nameYearPDFAttempt
Mechanical Engineering (ME) 20262026
15 questions in this view
2026
Mechanical Engineering (ME) 20252025
15 questions in this view
2025
Mechanical Engineering (ME) 20242024
15 questions in this view
2024
Mechanical Engineering (ME) 20232023
15 questions in this view
2023
Mechanical Engineering (ME) 2021 [Session 1]2021
16 questions in this view
2021
Mechanical Engineering (ME) 2020 [Session 1]2020
13 questions in this view
2020
Mechanical Engineering (ME) 2020 [Session 2]2020
14 questions in this view
2020
Mechanical Engineering (ME) 2019 [Session 1]2019
15 questions in this view
2019
Mechanical Engineering (ME) 2019 [Session 2]2019
13 questions in this view
2019
Mechanical Engineering (ME) 2018 [Session 1]2018
13 questions in this view
2018
Mechanical Engineering (ME) 2018 [Session 2]2018
14 questions in this view
2018
Mechanical Engineering (ME) 2017 [Session 2]2017
16 questions in this view
2017
Mechanical Engineering (ME) 2016 [Session 1]2016
12 questions in this view
2016
Mechanical Engineering (ME) 2016 [Session 2]2016
13 questions in this view
2016
Mechanical Engineering (ME) 2016 [Session 3]2016
12 questions in this view
2016
Mechanical Engineering (ME) 2014 [Session 1]2014
16 questions in this view
2014
Mechanical Engineering (ME) 2014 [Session 2]2014
15 questions in this view
2014
Mechanical Engineering (ME) 2014 [Session 3]2014
15 questions in this view
2014
Mechanical Engineering (ME) 2014 [Session 4]2014
13 questions in this view
2014
Mechanical Engineering (ME) 2013 [Session 1]2013
16 questions in this view
2013
Mechanical Engineering (ME) 2013 [Session 2]2013
16 questions in this view
2013
Mechanical Engineering (ME) 2013 [Session 3]2013
16 questions in this view
2013
Mechanical Engineering (ME) 2013 [Session 4]2013
17 questions in this view
2013
Mechanical Engineering (ME) 20112011
16 questions in this view
2011
Mechanical Engineering (ME) 20102010
15 questions in this view
2010
Mechanical Engineering (ME) 20092009
17 questions in this view
2009
Mechanical Engineering (ME) 20082008
24 questions in this view
2008
Mechanical Engineering (ME) 20072007
24 questions in this view
2007

Sample previous year questions

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

1
2007 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Thermodynamics
Mechanical Engineering (ME) 2007

Which of the following relationships is valid only for reversible processes undergone by a closed system of simple compressible substance (neglect changes in kinetic and potential energy)?

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2
2008 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Thermodynamics
Mechanical Engineering (ME) 2008
2 moles of oxygen are mixed adiabatically with another 2 moles of oxygen in a mixing chamber, so that the final total pressure and temperature of the mixture become same as those of the individual constituents at their initial states. The universal gas constant is given as \(R\). The change in entropy due to mixing, per mole of oxygen, is given by
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3
2009 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Thermodynamics
Mechanical Engineering (ME) 2009

If a closed system is undergoing an irreversible process, the entropy of the system

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4
2010 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Fluid Mechanics
Mechanical Engineering (ME) 2010
The Blasius equation, \( \frac{d^3 f}{d \eta^3} + \frac{f}{2} \frac{d^2 f}{d \eta^2} = 0 \), is a
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5
2011 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Fluid Mechanics
Mechanical Engineering (ME) 2011
A streamline and an equipotential line in a flow field
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6
2013 · Mechanical Engineering · Fluid Mechanics and Thermal Sciences · Fluid Mechanics
Mechanical Engineering (ME) 2013 [Session 1]
For steady, fully developed flow inside a straight pipe of diameter D, neglecting gravity effects, the pressure drop Δp over a length L and the wall shear stress τw are related by
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