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Previous year question hub

Yarn Testing - Textile Testing - Textile Engineering & Fibre Science Previous Year Questions

Practice Yarn Testing - Textile Testing - Textile Engineering & Fibre Science previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

17Papers
17Years
34Questions
1Topics

Yarn Testing question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Yarn Testing. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 22 64.7%
Medium 12 35.3%

Question type distribution

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

MCQ 18 52.9%
Numerical Answer Type (NAT) 11 32.4%
MSQ 5 14.7%

Subject weightage

Top subjects by unique question coverage.

Textile Engineering & Fibre Science
34 Qs

Most asked topics

Top topics across the included previous year papers.

Textile Testing
34 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Yarn Testing
34 Qs

Paper coverage

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

Textile Engineering and Fibre Science (TF) 2026
2 Qs
Textile Engineering & Fibre Science (TF) 2025
3 Qs
Textile Engineering & Fibre Science (TF) 2024
4 Qs
Textile Engineering & Fibre Science (TF) 2023
3 Qs
Textile Engineering & Fibre Science (TF) 2022
1 Qs
Textile Engineering & Fibre Science (TF) 2021
1 Qs
Textile Engineering & Fibre Science (TF) 2020
4 Qs
Textile Engineering & Fibre Science (TF) 2019
3 Qs
Textile Engineering & Fibre Science (TF) 2017
1 Qs
Textile Engineering & Fibre Science (TF) 2016
1 Qs
Textile Engineering & Fibre Science (TF) 2015
1 Qs
Textile Engineering & Fibre Science (TF) 2014
1 Qs
Textile Engineering & Fibre Science (TF) 2013
2 Qs
Textile Engineering & Fibre Science (TF) 2011
2 Qs
Textile Engineering & Fibre Science (TF) 2009
3 Qs
Textile Engineering & Fibre Science (TF) 2008
1 Qs
Textile Engineering & Fibre Science (TF) 2007
1 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Textile Engineering and Fibre Science (TF) 202620262View paper
Textile Engineering & Fibre Science (TF) 202520253View paper
Textile Engineering & Fibre Science (TF) 202420244View paper
Textile Engineering & Fibre Science (TF) 202320233View paper
Textile Engineering & Fibre Science (TF) 202220221View paper
Textile Engineering & Fibre Science (TF) 202120211View paper
Textile Engineering & Fibre Science (TF) 202020204View paper
Textile Engineering & Fibre Science (TF) 201920193View paper
Textile Engineering & Fibre Science (TF) 201720171View paper
Textile Engineering & Fibre Science (TF) 201620161View paper
Textile Engineering & Fibre Science (TF) 201520151View paper
Textile Engineering & Fibre Science (TF) 201420141View paper
Textile Engineering & Fibre Science (TF) 201320132View paper
Textile Engineering & Fibre Science (TF) 201120112View paper
Textile Engineering & Fibre Science (TF) 200920093View paper
Textile Engineering & Fibre Science (TF) 200820081View paper
Textile Engineering & Fibre Science (TF) 200720071View paper

All Yarn Testing previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2007

A yarn specimen of 200 mm extends by 10% when loaded with 500 cN force. The length of the specimen after removal of load was found to be 202 mm. Percentage elastic recovery of yarn is

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2
2008 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2008

The relationship between the breaking strength and relative humidity of yarns made from four different fibres is shown in the following diagram. Choose the correct alternative to identify the fibres used to produce the yarns.

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3
2009 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2009

Nep setting on evenness tester is related to the percent mass deviation based on yarn length of

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4
2009 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2009

The value of breaking length in km (RKM) of a yarn is numerically equal to

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5
2009 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2009

Length of 2 kg of 180 denier polyester yarn is

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6
2011 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2011

The nep setting on an evenness tester which will give the highest nep count is

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7
2011 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2011
If the error in the measurement of the diameter of a yarn is 0.5 %, the error in the estimated cross-sectional area of this yarn would be
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8
2013 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2013

CSP of yarn is equal to the product of

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9
2013 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2013

The principle which cannot be used to measure hairiness of yarn is

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10
2014 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2014

With an increase in gauge length, the tenacity of a spun yarn would

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11
2015 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2015

If the numerical value of yarn linear density expressed in Tex and that in English system is the same, this value to the nearest integer is

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12
2016 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2016
A cotton yarn with 5% breaking elongation needs to be tested for breaking strength in a tensile tester at 500 mm gauge length. The clamp speed (mm/min) required to break the specimen in 20 s is __________
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13
2017 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2017
Theoretical limit for mass irregularity (CVlim) of a cotton yarn does NOT depend on
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14
2019 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2019

Among the following options, the thickest Classimat fault is

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15
2019 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2019

Work factor of a perfectly elastic yarn is

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16
2019 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2019
Match the instruments listed in Group I with the corresponding operating principles given in Group II. The correct option is
Group IGroup II
P. Uster evenness tester1. Photoelectric effect
Q. Stelometer2. Spring extension
R. Cambridge extensometer3. Pendulum lever
S. Shirley yarn hairiness tester4. Capacitance
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17
2020 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2020

The limit irregularity and measured irregularity of a yarn are 8.4% and 9.6%, respectively. The Index of Irregularity (rounded off to 2 decimal places) is __________.

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18
2020 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2020

Consider two yarns, one 100% wool and the other 100% cotton, each containing 100 fibres in the yarn cross-section. The respective limit irregularities (%) of wool and cotton yarns will approximately be

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19
2020 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2020

If the numerical value X of yarn linear density, expressed in denier is the same as that expressed in English (Ne) system, then X approximately is

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20
2020 · Textile Engineering & Fibre Science · Textile Testing · Yarn Testing
Textile Engineering & Fibre Science (TF) 2020
Under a load of 500 cN, the extension of a yarn of 300 mm length is 10%. If the elastic recovery is 90%, then the length (mm) of the yarn after removal of load is __________.
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Showing 20 of 34 questions