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Previous year question hub

Non-destructive Testing (NDT) - Manufacturing Processes - Metallurgical Engineering Previous Year Questions

Practice Non-destructive Testing (NDT) - Manufacturing Processes - Metallurgical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

19Papers
19Years
19Questions
1Topics

Non-destructive Testing (NDT) question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Non-destructive Testing (NDT). Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 15 78.9%
Medium 4 21.1%

Question type distribution

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

MCQ 15 78.9%
MSQ 4 21.1%

Subject weightage

Top subjects by unique question coverage.

Metallurgical Engineering
19 Qs

Most asked topics

Top topics across the included previous year papers.

Manufacturing Processes
19 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Non-destructive Testing (NDT)
19 Qs

Paper coverage

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

Metallurgical Engineering (MT) 2026
1 Qs
Metallurgical Engineering (MT) 2025
1 Qs
Metallurgical Engineering (MT) 2024
1 Qs
Metallurgical Engineering (MT) 2023
1 Qs
Metallurgical Engineering (MT) 2022
1 Qs
Metallurgical Engineering (MT) 2021
1 Qs
Metallurgical Engineering (MT) 2020
1 Qs
Metallurgical Engineering (MT) 2019
1 Qs
Metallurgical Engineering (MT) 2018
1 Qs
Metallurgical Engineering (MT) 2017
1 Qs
Metallurgical Engineering (MT) 2016
1 Qs
Metallurgical Engineering (MT) 2014
1 Qs
Metallurgical Engineering (MT) 2013
1 Qs
Metallurgical Engineering (MT) 2012
1 Qs
Metallurgical Engineering (MT) 2011
1 Qs
Metallurgical Engineering (MT) 2010
1 Qs
Metallurgical Engineering (MT) 2009
1 Qs
Metallurgical Engineering (MT) 2008
1 Qs
Metallurgical Engineering (MT) 2007
1 Qs

Included previous year papers

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

PaperYear / sessionQuestions in this viewOpen
Metallurgical Engineering (MT) 202620261View paper
Metallurgical Engineering (MT) 202520251View paper
Metallurgical Engineering (MT) 202420241View paper
Metallurgical Engineering (MT) 202320231View paper
Metallurgical Engineering (MT) 202220221View paper
Metallurgical Engineering (MT) 202120211View paper
Metallurgical Engineering (MT) 202020201View paper
Metallurgical Engineering (MT) 201920191View paper
Metallurgical Engineering (MT) 201820181View paper
Metallurgical Engineering (MT) 201720171View paper
Metallurgical Engineering (MT) 201620161View paper
Metallurgical Engineering (MT) 201420141View paper
Metallurgical Engineering (MT) 201320131View paper
Metallurgical Engineering (MT) 201220121View paper
Metallurgical Engineering (MT) 201120111View paper
Metallurgical Engineering (MT) 201020101View paper
Metallurgical Engineering (MT) 200920091View paper
Metallurgical Engineering (MT) 200820081View paper
Metallurgical Engineering (MT) 200720071View paper

All Non-destructive Testing (NDT) previous year questions

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

1
2007 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2007

A suitable technique for monitoring a growing crack in an alloy is

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2
2008 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2008

The NDT technique used to detect deep lying defects in a large sized casting is

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3
2009 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2009

X-ray radiography is used to determine the

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4
2010 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2010
Match the defects given in Group I with the suitable non-destructive evaluation technique from Group II.
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5
2011 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2011

Match those listed in Group I with the NDT methods listed in Group II.

Group IGroup II
P. Penetrameter1. Ultrasonic test
Q. Differential coil probe2. Dye-penetrant test
R. Piezo-electric probe3. X-Ray radiography
S. Developer4. Acoustic emission test
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6
2012 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2012

Radiography technique of detecting defects is based on the principle of

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7
2013 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2013

Match the suitability of non-destructive testing method in Group I for the detection of defects listed in Group II

Group IGroup II
(P) Magnetic particle inspection(1) Surface crack in martensitic stainless steels
(Q) X-ray radiography(2) Surface crack in austenitic stainless steels
(R) Dye penetrant test(3) Hairline crack in aluminium
(S) Ultrasonic testing(4) Inclusions in steels
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8
2014 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2014

Which one of the following NDT techniques CANNOT be used to detect an internal crack in a steel shaft?

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9
2016 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2016

For dye-penetrant test, identify the CORRECT statement

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10
2017 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2017

Dye penetrant test is based on the principle of

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11
2018 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2018

A long oil pipeline made of steel is suspected to have developed a scale on the inner surface due to corrosion. Which of the following non-destructive techniques is the most suitable for detecting and quantifying such a defect?

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12
2019 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2019
The most suitable non-destructive testing method for detecting small internal flaws in a dense bulk material is ____________.
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13
2020 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2020

The dye penetrant test for detecting flaws is based on:

Question diagram

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14
2021 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2021
Match the nondestructive technique (in Column I) with its underlying phenomenon (in Column II): Column I: (P) Dye penetrant test, (Q) Radiography, (R) Eddy current test, (S) Ultrasonic inspection Column II: 1. X-ray absorption, 2. Capillary action, 3. Elastic waves reflection, 4. Electromagnetic induction

Question diagram

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15
2022 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2022

Which one of the following Non Destructive Testing (NDT) techniques CANNOT be used to identify volume defects in the interior of a casting?

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16
2023 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2023

The non-destructive testing technique(s) for detecting internal defects in a steel component is/are

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17
2024 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2024

Which of the following statements is/are correct for non-destructive testing?

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18
2025 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2025

Which of the following techniques can be used to detect an internal defect in a metal casting?

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19
2026 · Metallurgical Engineering · Manufacturing Processes · Non-destructive Testing (NDT)
Metallurgical Engineering (MT) 2026
Match the descriptions listed in Column I with the corresponding non-destructive testing methods listed in Column II:
Column I
(P) Internal flaws in railroad wheel
(Q) In-service monitoring of crack
(R) Inclusion in mild steel
(S) Surface crack in Al-based alloy
Column II
(1) Ultrasonic
(2) Radiography
(3) Dye Penetrant
(4) Acoustic Emission
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