A. Calculate fractions of 12 molecules in their ground, first excited, and second excited vibrational states at 25°C. The vibrational wavenumber is 214.6 cm-1 B. Calculate the value for the vibrational partition function for the states above. h=6.62×1034 J. S k 1.381x10 23 J.K-1 c=2.99×108 m. s¯¹ (cm) P(8) H, 4401 1.32 x 1014 D₂ 3115 9.33 x 1013 'HBr 2649 7.94 x 1013 'H³CI 2991 8.97 x 1013 'HF 4138 1.24 x 1014 H127 2309 6.92 x 1013 35C₁₂ 559.7 1.68 x 1013 79Br 325.32 9.75 x 1012 19F2 916.64 2.75 x 1013 12712 214.5 6.43 x 1012 14N2 2358.6 7.07 x 1013 160 1580 4.74 x 1013 12C160 2170 2.56 x 1013
A. Calculate fractions of 12 molecules in their ground, first excited, and second excited vibrational states at 25°C. The vibrational wavenumber is 214.6 cm-1 B. Calculate the value for the vibrational partition function for the states above. h=6.62×1034 J. S k 1.381x10 23 J.K-1 c=2.99×108 m. s¯¹ (cm) P(8) H, 4401 1.32 x 1014 D₂ 3115 9.33 x 1013 'HBr 2649 7.94 x 1013 'H³CI 2991 8.97 x 1013 'HF 4138 1.24 x 1014 H127 2309 6.92 x 1013 35C₁₂ 559.7 1.68 x 1013 79Br 325.32 9.75 x 1012 19F2 916.64 2.75 x 1013 12712 214.5 6.43 x 1012 14N2 2358.6 7.07 x 1013 160 1580 4.74 x 1013 12C160 2170 2.56 x 1013
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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