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Previous year question hub

Quantum Mechanics - Physics Previous Year Questions

Practice Quantum Mechanics - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

20Papers
20Years
166Questions
1Topics

Quantum Mechanics 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.

Medium 83 50%
Easy 82 49.4%
Hard 1 0.6%

Question type distribution

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

MCQ 118 71.1%
Numerical Answer Type (NAT) 35 21.1%
MSQ 11 6.6%
Fill in the blanks 2 1.2%

Subject weightage

Top subjects by unique question coverage.

Physics
166 Qs

Most asked topics

Top topics across the included previous year papers.

Quantum Mechanics
166 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Quantum Principles and Exactly Solvable Potentials
116 Qs
Central Potentials and Angular Momentum
32 Qs
Approximation Methods and Scattering
18 Qs

Paper coverage

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

Physics (PH) 2026
9 Qs
Physics (PH) 2025
9 Qs
Physics (PH) 2024
6 Qs
Physics (PH) 2023
6 Qs
Physics (PH) 2022
10 Qs
Physics (PH) 2021
8 Qs
Physics (PH) 2020
9 Qs
Physics (PH) 2019
9 Qs
Physics (PH) 2018
3 Qs
Physics (PH) 2017
8 Qs
Physics (PH) 2016
11 Qs
Physics (PH) 2015
3 Qs
Physics (PH) 2014
9 Qs
Physics (PH) 2013
6 Qs
Physics (PH) 2012
7 Qs
Physics (PH) 2011
11 Qs
Physics (PH) 2010
5 Qs
Physics (PH) 2009
7 Qs
Physics (PH) 2008
8 Qs
Physics (PH) 2007
22 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
Physics (PH) 20262026
9 questions in this view
2026
Physics (PH) 20252025
9 questions in this view
2025
Physics (PH) 20242024
6 questions in this view
2024
Physics (PH) 20232023
6 questions in this view
2023
Physics (PH) 20222022
10 questions in this view
2022
Physics (PH) 20212021
8 questions in this view
2021
Physics (PH) 20202020
9 questions in this view
2020
Physics (PH) 20192019
9 questions in this view
2019
Physics (PH) 20182018
3 questions in this view
2018
Physics (PH) 20172017
8 questions in this view
2017
Physics (PH) 20162016
11 questions in this view
2016
Physics (PH) 20152015
3 questions in this view
2015
Physics (PH) 20142014
9 questions in this view
2014
Physics (PH) 20132013
6 questions in this view
2013
Physics (PH) 20122012
7 questions in this view
2012
Physics (PH) 20112011
11 questions in this view
2011
Physics (PH) 20102010
5 questions in this view
2010
Physics (PH) 20092009
7 questions in this view
2009
Physics (PH) 20082008
8 questions in this view
2008
Physics (PH) 20072007
22 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 · Physics · Quantum Mechanics · Quantum Principles and Exactly Solvable Potentials
Physics (PH) 2007
The wavefunction of a particle, moving in a one-dimensional time-independent potential V(x), is given by ψ(x) = e^{-ax^2 + bx}, where a and b are constants. This means that the potential V(x) is of the form
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2
2008 · Physics · Quantum Mechanics · Central Potentials and Angular Momentum
Physics (PH) 2008
Let $|\psi_0\rangle$ denote the ground state of the hydrogen atom. Choose the correct statement from those given below:
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3
2009 · Physics · Quantum Mechanics · Quantum Principles and Exactly Solvable Potentials
Physics (PH) 2009
\( \sigma_i (i = 1, 2, 3) \) represent the Pauli spin matrices. Which one of the following is NOT true ?
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4
2010 · Physics · Quantum Mechanics · Quantum Principles and Exactly Solvable Potentials
Physics (PH) 2010
Which of the following is an allowed wavefunction for a particle in a bound state? \( N \) is a constant and \( \alpha, \beta > 0 \).
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5
2011 · Physics · Quantum Mechanics · Quantum Principles and Exactly Solvable Potentials
Physics (PH) 2011

The quantum mechanical operator for the momentum of a particle moving in one dimension is given by

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6
2012 · Physics · Quantum Mechanics · Quantum Principles and Exactly Solvable Potentials
Physics (PH) 2012
A particle of mass $m$ is confined in a two dimensional square well potential of dimension $a$. This potential $V(x,y)$ = 0 for $-a= $\infty$ elsewhere
The energy of the first excited state for this particle is given by,
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