Physical Chemistry
Physical Chemistry
2nd Edition
ISBN: 9781133958437
Author: Ball, David W. (david Warren), BAER, Tomas
Publisher: Wadsworth Cengage Learning,
bartleby

Concept explainers

Question
Book Icon
Chapter 10, Problem 10.79E
Interpretation Introduction

Interpretation:

The degeneracies of all levels for a cubical box from the lowest-energy wavefunction, described by the set of quantum numbers (1,1,1) to the wavefunction described by the quantum number set (4,4,4) are to be stated.

Concept introduction:

The Schrödinger equation is used to find the allowed energy levels for electronic transitions in the quantum mechanics. It is generally expressed as follows.

HΨ=EΨ

Where,

H is the Hamiltonian operator.

Ψ is the wavefunction.

E is the energy.

The energy obtained after applying the operator on wavefunction is known as the eigen value for the wavefunction.

Expert Solution & Answer
Check Mark

Answer to Problem 10.79E

The degeneracies of all levels for a cubical box from the lowest-energy wavefunction, described by the set of quantum numbers (1,1,1) to the wavefunction described by the quantum number set (4,4,4) are given below.

(1,1,2),(2,1,1),(1,2,1)

(2,1,2),(2,2,1),(1,2,2)

(3,1,1),(1,3,1),(1,1,3)

(3,2,1),(2,3,1),(3,1,2),(2,1,3),(1,2,3),(1,3,2)

(3,2,2),(2,3,2),(2,2,3)

(4,1,1),(1,4,1),(1,1,4)

(3,1,3),(3,3,1),(1,3,3)

(4,2,1),(4,1,2),(2,1,4),(2,4,1),(1,2,4),(1,4,2)

(3,3,2),(3,2,3),(2,3,3)

(4,2,2),(2,4,2),(2,2,4)

(4,3,1),(4,1,3),(3,1,4),(3,4,1),(1,3,4),(1,4,3)

(1,1,5),(5,1,1),(1,5,1),(3,3,3)

(4,3,2),(4,2,3),(3,2,4),(3,4,2),(2,3,4),(2,4,3)

(4,4,1),(4,1,4),(1,4,4),(5,2,2),(2,5,2),(2,2,5)

(4,3,3),(3,4,3),(3,3,4)

(4,2,4),(4,4,2),(2,4,4)

(4,4,3),(4,3,4),(3,4,4),(6,2,1),(6,1,2),(2,1,6),(2,6,1),(1,2,6),(1,6,2)

Explanation of Solution

The formula to calculate energy for an electron confined to a three dimensional box is given below.

E=2π22m(nx2a2+ny2b2+nz2c2) …(1)

Substitute the values in the equation (1) for the three-dimensional box having same dimensions and n values to be 1,1,1 as follows.

E1,1,1=2π22m(1a2+1a2+1a2)=32π22ma2

Similarly, other values for the energy by changing quantum numbers are calculated as follows.

E1,2,1=2π22m(1a2+4a2+1a2)=62π22ma2

E2,1,1=2π22m(4a2+1a2+1a2)=62π22ma2

E1,1,2=2π22m(1a2+1a2+4a2)=62π22ma2

The values of energies obtained for higher values of n are as follows.

E2,2,2=2π22m(4a2+4a2+4a2)=122π22ma2

E2,1,2=92π22ma2

E1,2,2=92π22ma2

E2,2,1=92π22ma2

E3,1,1=112π22ma2

E3,1,2=142π22ma2

E3,2,2=172π22ma2

E3,3,2=222π22ma2

E3,3,3=272π22ma2

E5,1,1=272π22ma2

E4,1,1=182π22ma2

E1,5,1=272π22ma2

E1,1,5=272π22ma2

E3,3,1=192π22ma2

E4,2,1=212π22ma2

E4,2,2=242π22ma2

E4,3,1=262π22ma2

E4,4,1=332π22ma2

E5,2,2=332π22ma2

E4,3,3=342π22ma2

E5,3,1=352π22ma2

E4,4,2=362π22ma2

E5,3,2=382π22ma2

E6,1,1=382π22ma2

E4,4,3=412π22ma2

E6,2,1=412π22ma2

E5,4,1=422π22ma2

E5,3,3=332π22ma2

E6,2,2=442π22ma2

E5,4,2=452π22ma2

E6,3,1=462π22ma2

E4,4,4=482π22ma2

The set of quantum numbers degenerate wavefunctions are as follows:

(1,1,2),(2,1,1),(1,2,1)

(2,1,2),(2,2,1),(1,2,2)

(3,1,1),(1,3,1),(1,1,3)

(3,2,1),(2,3,1),(3,1,2),(2,1,3),(1,2,3),(1,3,2)

(3,2,2),(2,3,2),(2,2,3)

(4,1,1),(1,4,1),(1,1,4)

(3,1,3),(3,3,1),(1,3,3)

(4,2,1),(4,1,2),(2,1,4),(2,4,1),(1,2,4),(1,4,2)

(3,3,2),(3,2,3),(2,3,3)

(4,2,2),(2,4,2),(2,2,4)

(4,3,1),(4,1,3),(3,1,4),(3,4,1),(1,3,4),(1,4,3)

(1,1,5),(5,1,1),(1,5,1),(3,3,3)

(4,3,2),(4,2,3),(3,2,4),(3,4,2),(2,3,4),(2,4,3)

(4,4,1),(4,1,4),(1,4,4),(5,2,2),(2,5,2),(2,2,5)

(4,3,3),(3,4,3),(3,3,4)

(4,2,4),(4,4,2),(2,4,4)

(4,4,3),(4,3,4),(3,4,4),(6,2,1),(6,1,2),(2,1,6),(2,6,1),(1,2,6),(1,6,2)

Conclusion

The degeneracies of all levels for a cubical box from the lowest-energy wavefunction, described by the set of quantum numbers (1,1,1) to the wavefunction described by the quantum number set (4,4,4) are given below.

(1,1,2),(2,1,1),(1,2,1)

(2,1,2),(2,2,1),(1,2,2)

(3,1,1),(1,3,1),(1,1,3)

(3,2,1),(2,3,1),(3,1,2),(2,1,3),(1,2,3),(1,3,2)

(3,2,2),(2,3,2),(2,2,3)

(4,1,1),(1,4,1),(1,1,4)

(3,1,3),(3,3,1),(1,3,3)

(4,2,1),(4,1,2),(2,1,4),(2,4,1),(1,2,4),(1,4,2)

(3,3,2),(3,2,3),(2,3,3)

(4,2,2),(2,4,2),(2,2,4)

(4,3,1),(4,1,3),(3,1,4),(3,4,1),(1,3,4),(1,4,3)

(1,1,5),(5,1,1),(1,5,1),(3,3,3)

(4,3,2),(4,2,3),(3,2,4),(3,4,2),(2,3,4),(2,4,3)

(4,4,1),(4,1,4),(1,4,4),(5,2,2),(2,5,2),(2,2,5)

(4,3,3),(3,4,3),(3,3,4)

(4,2,4),(4,4,2),(2,4,4)

(4,4,3),(4,3,4),(3,4,4),(6,2,1),(6,1,2),(2,1,6),(2,6,1),(1,2,6),(1,6,2)

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!

Chapter 10 Solutions

Physical Chemistry

Ch. 10 - Indicate which of these expressions yield an...Ch. 10 - Why is multiplying a function by a constant...Ch. 10 - Prob. 10.13ECh. 10 - Using the original definition of the momentum...Ch. 10 - Under what conditions would the operator described...Ch. 10 - A particle on a ring has a wavefunction =12eim...Ch. 10 - Calculate the uncertainty in position, x, of a...Ch. 10 - For an atom of mercury, an electron in the 1s...Ch. 10 - Classically, a hydrogen atom behaves as if it were...Ch. 10 - The largest known atom, francium, has an atomic...Ch. 10 - How is the Bohr theory of the hydrogen atom...Ch. 10 - Though not strictly equivalent, there is a similar...Ch. 10 - The uncertainty principle is related to the order...Ch. 10 - Prob. 10.24ECh. 10 - Prob. 10.25ECh. 10 - For a particle in a state having the wavefunction...Ch. 10 - Prob. 10.27ECh. 10 - A particle on a ring has a wavefunction =eim,...Ch. 10 - Prob. 10.29ECh. 10 - Prob. 10.30ECh. 10 - Prob. 10.31ECh. 10 - Normalize the following wavefunctions over the...Ch. 10 - Prob. 10.33ECh. 10 - Prob. 10.34ECh. 10 - For an unbound or free particle having mass m in...Ch. 10 - Prob. 10.36ECh. 10 - Prob. 10.37ECh. 10 - Prob. 10.38ECh. 10 - Evaluate the expression for the total energies for...Ch. 10 - Prob. 10.40ECh. 10 - Verify that the following wavefunctions are indeed...Ch. 10 - In exercise 10.41a, the wavefunction is not...Ch. 10 - Prob. 10.43ECh. 10 - Prob. 10.44ECh. 10 - Explain why n=0 is not allowed for a...Ch. 10 - Prob. 10.46ECh. 10 - Prob. 10.47ECh. 10 - Prob. 10.48ECh. 10 - Carotenes are molecules with alternating CC and...Ch. 10 - The electronic spectrum of the molecule butadiene,...Ch. 10 - Prob. 10.51ECh. 10 - Prob. 10.52ECh. 10 - Show that the normalization constants for the...Ch. 10 - Prob. 10.54ECh. 10 - Prob. 10.55ECh. 10 - An official baseball has a mass of 145g. a...Ch. 10 - Is the uncertainty principle consistent with our...Ch. 10 - Prob. 10.58ECh. 10 - Prob. 10.59ECh. 10 - Instead of x=0 to a, assume that the limits on the...Ch. 10 - In a plot of ||2, the maximum maxima in the plot...Ch. 10 - Prob. 10.62ECh. 10 - Prob. 10.63ECh. 10 - The average value of radius in a circular system,...Ch. 10 - Prob. 10.65ECh. 10 - Prob. 10.66ECh. 10 - Prob. 10.67ECh. 10 - Prob. 10.68ECh. 10 - Prob. 10.69ECh. 10 - Assume that for a particle on a ring the operator...Ch. 10 - Mathematically, the uncertainty A in some...Ch. 10 - Prob. 10.72ECh. 10 - Prob. 10.73ECh. 10 - Verify that the wavefunctions in equation 10.20...Ch. 10 - An electron is confined to a box of dimensions...Ch. 10 - a What is the ratio of energy levels having the...Ch. 10 - Consider a one-dimensional particle-in-a-box and a...Ch. 10 - Prob. 10.78ECh. 10 - Prob. 10.79ECh. 10 - Prob. 10.80ECh. 10 - Prob. 10.81ECh. 10 - What are x,y, and z for 111 of a 3-D...Ch. 10 - Prob. 10.83ECh. 10 - Prob. 10.84ECh. 10 - Prob. 10.85ECh. 10 - Prob. 10.86ECh. 10 - Prob. 10.87ECh. 10 - Prob. 10.88ECh. 10 - Substitute (x,t)=eiEt/(x) into the time-dependent...Ch. 10 - Write (x,t)=eiEt/(x) in terms of sine and cosine,...Ch. 10 - Prob. 10.91ECh. 10 - Prob. 10.92ECh. 10 - Prob. 10.93ECh. 10 - Prob. 10.95E
Knowledge Booster
Background pattern image
Chemistry
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, chemistry and related others by exploring similar questions and additional content below.
Recommended textbooks for you
  • Text book image
    Physical Chemistry
    Chemistry
    ISBN:9781133958437
    Author:Ball, David W. (david Warren), BAER, Tomas
    Publisher:Wadsworth Cengage Learning,
Text book image
Physical Chemistry
Chemistry
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Wadsworth Cengage Learning,