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Previous year question hub

Particle in a Box - Physical Chemistry - Chemistry Previous Year Questions

Practice Particle in a Box - Physical Chemistry - Chemistry previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

14Papers
14Years
20Questions
1Topics

Particle in a Box 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.

Easy 13 65%
Medium 7 35%

Question type distribution

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

MCQ 12 60%
Numerical Answer Type (NAT) 4 20%
MSQ 2 10%
Fill in the blanks 2 10%

Subject weightage

Top subjects by unique question coverage.

Chemistry
20 Qs

Most asked topics

Top topics across the included previous year papers.

Physical Chemistry
20 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Particle in a Box
20 Qs

Paper coverage

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

Chemistry (CY) 2025
2 Qs
Chemistry (CY) 2024
1 Qs
Chemistry (CY) 2020
1 Qs
Chemistry (CY) 2019
2 Qs
Chemistry (CY) 2018
1 Qs
Chemistry (CY) 2017
2 Qs
Chemistry (CY) 2016
1 Qs
Chemistry (CY) 2015
1 Qs
Chemistry (CY) 2013
1 Qs
Chemistry (CY) 2011
1 Qs
Chemistry (CY) 2010
2 Qs
Chemistry (CY) 2009
2 Qs
Chemistry (CY) 2008
1 Qs
Chemistry (CY) 2007
2 Qs

Included previous year papers

Newest papers appear first. Search these papers or sort by year and name.

Paper nameYearPDFAttempt
Chemistry (CY) 20252025
2 questions in this view
2025
Chemistry (CY) 20242024
1 questions in this view
2024
Chemistry (CY) 20202020
1 questions in this view
2020
Chemistry (CY) 20192019
2 questions in this view
2019
Chemistry (CY) 20182018
1 questions in this view
2018
Chemistry (CY) 20172017
2 questions in this view
2017
Chemistry (CY) 20162016
1 questions in this view
2016
Chemistry (CY) 20152015
1 questions in this view
2015
Chemistry (CY) 20132013
1 questions in this view
2013
Chemistry (CY) 20112011
1 questions in this view
2011
Chemistry (CY) 20102010
2 questions in this view
2010
Chemistry (CY) 20092009
2 questions in this view
2009
Chemistry (CY) 20082008
1 questions in this view
2008
Chemistry (CY) 20072007
2 questions in this view
2007

All Particle in a Box previous year questions

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

1
2008 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2008
A particle is confined to a one-dimensional box of length 1 mm. If the length is changed by 10-9 m, the % change in the ground state energy is
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2
2009 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2009

The lowest allowed energy is equal to zero for

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3
2009 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2009

The degeneracy of a quantum particle in a cubic box having energy four times that of the lowest energy is

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4
2011 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2011
The wave function for a quantum mechanical particle in a 1-dimensional box of length 'a' is given by \(\psi = A \sin \frac{\pi x}{a}\). The value of 'A' for a box of length 200 nm is
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5
2013 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2013
Two trial wave functions $\psi_1 = c_1 x(a-x)$ and $\psi_2 = c_2 x(a-x) + c_3 x^2 (a-x)^2$ give ground state energies $E_1$ and $E_2$, respectively, for the microscopic particle in a 1-D boxy using the variation method. If the exact ground state energy is $E_0$, the correct relationship between $E_0$, $E_1$ and $E_2$ is
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6
2016 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2016
The linear momentum of a particle described by the wavefunction e-ikx is
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7
2019 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2019
Suppose the wave function of a one dimensional system is
\[ \psi = \sin(kx)\exp(3ikx) \]
In an experiment measuring the momentum of the system, one of the expected outcomes is

Question diagram

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8
2019 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2019
A particle in one dimensional box of length 2a with potential energy
V = { 0 |x| < a ; ∞ |x| > a }
is perturbed by the potential V' = cx eV, where c is a constant. The 1st order correction to the 1st excited state of the system is ______ × c eV.
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9
2024 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2024
The wave function of a particle in a cubic box (of side \( L \)) is given by \( \psi(x, y, z) = \sqrt{32/L^3} \sin\frac{\pi x}{L} \cos\frac{\pi x}{L} \sin\frac{2\pi y}{L} \sin\frac{\pi z}{L} \).
The ratio of the energy of the state corresponding to the above wave function to the ground state energy is ____.
(rounded off to the nearest integer)
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10
2025 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2025
Consider two non-interacting particles confined to a one-dimensional box with infinite potential barriers. Their wavefunctions are ψ₁ and ψ₂ and energies are E₁ and E₂, respectively. The INCORRECT statement(s) about this system is/are
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11
2025 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2025
Wavefunctions and energies for a particle confined in a cubic box are \(\psi_{n_x,n_y,n_z}\) and \(E_{n_x,n_y,n_z}\), respectively. The functions \(\phi_1\), \(\phi_2\), \(\phi_3\), and \(\phi_4\) are written as linear combinations of \(\psi_{n_x,n_y,n_z}\). Among these functions, the eigenfunction(s) of the Hamiltonian operator for this particle is/are

Question diagram

Question diagram

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12
2007 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2007
Consider a particle of mass m moving in a one-dimensional box under the potential V=0 for 0 ≤ x ≤ a and V = ∞ outside the box. When the particle is in its lowest energy state the average momentum ⟨px⟩ of the particle is
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13
2007 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2007
The uncertainty in the momentum (Δpx) of the particle in its lowest energy state is
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14
2010 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2010
For eigen functions ψ₁ = √(2/b) sin(πx/b) and ψ₂ = √(2/b) sin(2πx/b) of particle in a 1-D box of length b (0 ≤ x ≤ b)
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15
2010 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2010
An electron of mass 'm' is confined to a one dimensional box of length 'b'. If it makes a radiative transition from second excited state to the ground state, the frequency of the photon emitted is
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16
2015 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2015
The difference in the ground state energies (kJ/mol) of an electron in one-dimensional boxes of lengths 0.2 nm and 2 nm is ____________________
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17
2017 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2017
The wavelength associated with a particle in one-dimensional box of length L is (n refers to the quantum number)
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18
2017 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2017
Assume 1,3,5-hexatriene to be a linear molecule and model the π electrons as particles in a one-dimensional box of length 0.70 nm. The wavelength (in nm) corresponding to the transition from the ground-state to the first excited-state is ________________________
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19
2018 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2018
The π electrons in benzene can be modelled as particles in a ring that follow Pauli's exclusion principle. Given that the radius of benzene is 1.4 Å, the longest wavelength of light that is absorbed during an electronic transition in benzene is __________ nm. (Up to one decimal place. Use me = 9.1×10-31 kg, h = 6.6×10-34 J s, c = 3.0×108 m s-1)
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20
2020 · Chemistry · Physical Chemistry · Particle in a Box
Chemistry (CY) 2020
The % error (rounded off to two decimal places) in the ground state energy of a particle in a one dimensional box of length 'a' described by a trial variation function φ = x(a−x), where 0 ≤ x ≤ a, is ______
(Given: The true ground state energy of the above system is h$^2$/8ma$^2$; ∫$_0^a$ φ*dφ dτ = a$^5$/30)
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