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Previous year question hub

Polymer Rheology - Engineering Sciences Previous Year Questions

Practice Polymer Rheology - Engineering Sciences previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

14Papers
14Years
35Questions
1Topics

Polymer Rheology question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Polymer Rheology. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 20 57.1%
Easy 14 40%
Hard 1 2.9%

Question type distribution

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

MCQ 18 51.4%
Numerical Answer Type (NAT) 14 40%
MSQ 2 5.7%
Fill in the blanks 1 2.9%

Subject weightage

Top subjects by unique question coverage.

Engineering Sciences
35 Qs

Most asked topics

Top topics across the included previous year papers.

Polymer Rheology
35 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Polymer Flow and Viscoelasticity
22 Qs
Rheological Measurements and Models
13 Qs

Paper coverage

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

Engineering Sciences (XE) 2026
3 Qs
Engineering Sciences (XE) 2025
1 Qs
Engineering Sciences (XE) 2024
4 Qs
Engineering Sciences (XE) 2023
4 Qs
Engineering Sciences (XE) 2022
1 Qs
Engineering Sciences (XE) 2021
5 Qs
Engineering Sciences (XE) 2019
2 Qs
Engineering Sciences (XE) 2018
1 Qs
Engineering Sciences (XE) 2017
4 Qs
Engineering Sciences (XE) 2016
1 Qs
Engineering Sciences (XE) 2015
1 Qs
Engineering Sciences (XE) 2014
1 Qs
Engineering Sciences (XE) 2013
5 Qs
Engineering Sciences (XE) 2012
2 Qs

Browse by subtopics

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

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Engineering Sciences (XE) 202620263View paper
Engineering Sciences (XE) 202520251View paper
Engineering Sciences (XE) 202420244View paper
Engineering Sciences (XE) 202320234View paper
Engineering Sciences (XE) 202220221View paper
Engineering Sciences (XE) 202120215View paper
Engineering Sciences (XE) 201920192View paper
Engineering Sciences (XE) 201820181View paper
Engineering Sciences (XE) 201720174View paper
Engineering Sciences (XE) 201620161View paper
Engineering Sciences (XE) 201520151View paper
Engineering Sciences (XE) 201420141View paper
Engineering Sciences (XE) 201320135View paper
Engineering Sciences (XE) 201220122View paper

Sample previous year questions

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

1
2012 · Engineering Sciences · Polymer Rheology · Polymer Flow and Viscoelasticity
Engineering Sciences (XE) 2012
If the above sample is stressed to 2 MPa initially, then the time required to relax the stress to 1 MPa will be
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2
2013 · Engineering Sciences · Polymer Rheology · Polymer Flow and Viscoelasticity
Engineering Sciences (XE) 2013
What is the relaxation time constant for this material?
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3
2014 · Engineering Sciences · Polymer Rheology · Rheological Measurements and Models
Engineering Sciences (XE) 2014
The constitutive equation of a shear thinning polymeric fluid is given by \[ \sigma = \frac{\mu_0 \dot{\gamma}}{1 + (\dot{\gamma}/\dot{\gamma}_0)} \] where \(\sigma\) represents shear stress (Pa), and \(\dot{\gamma}\), the corresponding shear rate (s⁻¹). The quantities \(\mu_0\) = 20 Pas and \(\dot{\gamma}_0\) = 10 s⁻¹ are constants. Find the apparent viscosity of the sample (Pas) when the applied shear rate is 40 s⁻¹.
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4
2015 · Engineering Sciences · Polymer Rheology · Polymer Flow and Viscoelasticity
Engineering Sciences (XE) 2015
The viscoelastic behavior of a plastic is represented by spring and dashpot elements having constants of 2 GN m⁻² and 90 GN s m⁻², respectively. If a constant stress of 12 MN m⁻² is applied, the strain predicted by Maxwell model after 50 s is _____ %.
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5
2016 · Engineering Sciences · Polymer Rheology · Rheological Measurements and Models
Engineering Sciences (XE) 2016
For a high molecular weight polymer sample with a viscosity of 6 x 1011 Poise and a stress relaxation modulus of 3 x 106 dyne cm-2 at a given temperature, the relaxation time will be ______ hours.
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6
2017 · Engineering Sciences · Polymer Rheology · Polymer Flow and Viscoelasticity
Engineering Sciences (XE) 2017
Match plots 1-4 given in the figure below with the correct flow behavior of polymeric fluid listed as P, Q, R & S:
P. Newtonian
Q. Shear thickening
R. Pseudoplastic
S. Bingham plastic
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