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Analytical solution of vibrational–rotational energy transfer in the dissociation and relaxation of N2, Br2, and CO at high temperature

✍ Scribed by Wendell Forst


Publisher
John Wiley and Sons
Year
1981
Tongue
English
Weight
463 KB
Volume
13
Category
Article
ISSN
0538-8066

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✦ Synopsis


Abstract

An approximate analytical solution of relaxation in a low‐pressure system with exponential transition probabilities is given for vibrational–rotational energy transfer in the dissociation of diatomics. The main assumption is that the rotational degrees of freedom are in thermal equilibrium at all times, and that the barrier to dissociation in the vibrational–rotational plane is linear and asymmetric. The theory is applied to high‐temperature dissociations of N~2~, Br~2~, and CO in excess argon, with satisfactory agreement with available experimental data.