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Previous year question hub

Metallurgical Thermodynamics - Metallurgical Engineering Previous Year Questions

Practice Metallurgical Thermodynamics - Metallurgical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

19Papers
19Years
135Questions
1Topics

Metallurgical Thermodynamics question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Metallurgical Thermodynamics. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Easy 69 51.1%
Medium 63 46.7%
Hard 3 2.2%

Question type distribution

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

MCQ 84 62.2%
Numerical Answer Type (NAT) 44 32.6%
MSQ 7 5.2%

Subject weightage

Top subjects by unique question coverage.

Metallurgical Engineering
135 Qs

Most asked topics

Top topics across the included previous year papers.

Metallurgical Thermodynamics
135 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Laws of Thermodynamics
115 Qs
Electrochemistry
20 Qs

Paper coverage

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

Metallurgical Engineering (MT) 2026
10 Qs
Metallurgical Engineering (MT) 2025
10 Qs
Metallurgical Engineering (MT) 2024
5 Qs
Metallurgical Engineering (MT) 2023
7 Qs
Metallurgical Engineering (MT) 2022
5 Qs
Metallurgical Engineering (MT) 2021
7 Qs
Metallurgical Engineering (MT) 2020
5 Qs
Metallurgical Engineering (MT) 2019
6 Qs
Metallurgical Engineering (MT) 2018
9 Qs
Metallurgical Engineering (MT) 2017
11 Qs
Metallurgical Engineering (MT) 2016
4 Qs
Metallurgical Engineering (MT) 2014
6 Qs
Metallurgical Engineering (MT) 2013
6 Qs
Metallurgical Engineering (MT) 2012
1 Qs
Metallurgical Engineering (MT) 2011
8 Qs
Metallurgical Engineering (MT) 2010
6 Qs
Metallurgical Engineering (MT) 2009
8 Qs
Metallurgical Engineering (MT) 2008
11 Qs
Metallurgical Engineering (MT) 2007
10 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
Metallurgical Engineering (MT) 2026202610View paper
Metallurgical Engineering (MT) 2025202510View paper
Metallurgical Engineering (MT) 202420245View paper
Metallurgical Engineering (MT) 202320237View paper
Metallurgical Engineering (MT) 202220225View paper
Metallurgical Engineering (MT) 202120217View paper
Metallurgical Engineering (MT) 202020205View paper
Metallurgical Engineering (MT) 201920196View paper
Metallurgical Engineering (MT) 201820189View paper
Metallurgical Engineering (MT) 2017201711View paper
Metallurgical Engineering (MT) 201620164View paper
Metallurgical Engineering (MT) 201420146View paper
Metallurgical Engineering (MT) 201320136View paper
Metallurgical Engineering (MT) 201220121View paper
Metallurgical Engineering (MT) 201120118View paper
Metallurgical Engineering (MT) 201020106View paper
Metallurgical Engineering (MT) 200920098View paper
Metallurgical Engineering (MT) 2008200811View paper
Metallurgical Engineering (MT) 2007200710View paper

Sample previous year questions

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

1
2007 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2007

In a three component system at constant pressure, the maximum number of phases that can coexist at equilibrium is

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2
2008 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2008

For a closed system of fixed internal energy and volume, at equilibrium

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3
2009 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2009
Gibbs free energies of a system in states 1 and 2 are denoted by \( G_1 \) and \( G_2 \) respectively. The system will go spontaneously from state 1 to state 2, if and only if
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4
2010 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2010

In a homogeneous system (with c as the number of components) in equilibrium the total number of independent intensive thermodynamic variables is

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5
2011 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2011

If two systems P and Q are in thermal equilibrium with a third system M, then P and Q will also be in thermal equilibrium with each other. This is following

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6
2012 · Metallurgical Engineering · Metallurgical Thermodynamics · Laws of Thermodynamics
Metallurgical Engineering (MT) 2012
The reduction of FeO with CO gas in co-current flow is given by the following equation:
\[ FeO + CO = Fe + CO_2 \quad \Delta G^\circ = 8120 \text{ J at } 1173 \text{ K} \]
The ratio of pCO/pCO2 for this reaction at 1173 K is
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