For 'H3$Cl molecule, (N¡/No) ratio at 300 K is 6.091 x 10² . Calculate the wavenumber ( in cm') for J=2→J=3 transition in the microwave spectrum of the molecule.

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter15: Introduction To Electronic Spectroscopy And Structure
Section: Chapter Questions
Problem 15.58E
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h= 6.626x10 34 J.s c=2.998x10% m.s1 1 eV = 1.6022x10-19 J 1Å = 1010 m,
%3D
6.
1/2
mẹ =9.109x1031 kg, k= 1.3807x10-23 J/K Sº x*e¬ax² dx =-
8a2
16
S" sin50 de =-
15
Transcribed Image Text:h= 6.626x10 34 J.s c=2.998x10% m.s1 1 eV = 1.6022x10-19 J 1Å = 1010 m, %3D 6. 1/2 mẹ =9.109x1031 kg, k= 1.3807x10-23 J/K Sº x*e¬ax² dx =- 8a2 16 S" sin50 de =- 15
For 'H3$Cl molecule, (N1/No) ratio at 300 K is 6.091 x 10². Calculate the
wavenumber ( in cm') for J=2→J=3 transition in the microwave spectrum of the molecule.
Transcribed Image Text:For 'H3$Cl molecule, (N1/No) ratio at 300 K is 6.091 x 10². Calculate the wavenumber ( in cm') for J=2→J=3 transition in the microwave spectrum of the molecule.
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