Bundle: Physical Chemistry, 2nd + Student Solutions Manual
Bundle: Physical Chemistry, 2nd + Student Solutions Manual
2nd Edition
ISBN: 9781285257594
Author: David W. Ball
Publisher: Cengage Learning
Question
Book Icon
Chapter 18, Problem 18.21E
Interpretation Introduction

Interpretation:

The values of qvib for H2S at 310K is to be determined.

Concept introduction:

A molecule is made up of atoms that are bonded together by covalent bonds. These bonds undergo a to and fro movement to vibrate. This vibration of the molecule contributes to the overall partition function of the system. The vibrational partition function of the polyatomic molecule is represented as,

qvib=i=13N611ehvi/kT

Where,

k represents the Boltzmann constant with value 1.381×1023J/K.

T represents the temperature (K).

h represents planck’s constant with a value 6.626×1034Js.

v represents the ith vibrational frequency.

N represents the number of atoms present in the molecule.

Blurred answer
Students have asked these similar questions
Estimate the ratio of the number of molecules in the first excited vibrational state of the molecule N2 to the number in the ground state, at a temperature of 450 K. The vibrational frequency of N2 is 7.07 × 1013 s-1.
Estimate the ratio of the number of molecules in the firstexcited vibrational state of the molecule N2 to the numberin the ground state, at a temperature of 450 K. The vibrational frequency of N2 is 7.07 × 1013 s-1.
You have a vibrational degree of freedom that can be treated like a harmonic oscillator with a spacing between energy levels of 538,03 cm1, What is the probability that this degree of freedom is in state v = 1 at a temperature of 1,138.2 K. Give your answer with at least 3 significant figures.

Chapter 18 Solutions

Bundle: Physical Chemistry, 2nd + Student Solutions Manual

Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Fundamentals Of Analytical Chemistry
Chemistry
ISBN:9781285640686
Author:Skoog
Publisher:Cengage
Text book image
Principles of Instrumental Analysis
Chemistry
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Cengage Learning