The moment of inertia of an SF6 molecule is 3.07x10^-45 kgm^2. a.) Determine the minimum energy (in cm^-1 and Jmol^-1) required for the molecule to start rotating. b.) Calculate the energy required (in cm^-1 and Jmol^-1) to excite the SF6 molecule frm a state with l = 2 to a state with l = 3
The moment of inertia of an SF6 molecule is 3.07x10^-45 kgm^2. a.) Determine the minimum energy (in cm^-1 and Jmol^-1) required for the molecule to start rotating. b.) Calculate the energy required (in cm^-1 and Jmol^-1) to excite the SF6 molecule frm a state with l = 2 to a state with l = 3
Principles of Modern Chemistry
8th Edition
ISBN:9781305079113
Author:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Publisher:David W. Oxtoby, H. Pat Gillis, Laurie J. Butler
Chapter20: Molecular Spectroscopy And Photochemistry
Section: Chapter Questions
Problem 51AP
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The moment of inertia of an SF6 molecule is 3.07x10^-45 kgm^2.
a.) Determine the minimum energy (in cm^-1 and Jmol^-1) required for the molecule to start rotating.
b.) Calculate the energy required (in cm^-1 and Jmol^-1) to excite the SF6 molecule frm a state with l = 2 to a state with l = 3
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