Consider the following dissociation reaction of iodine at 1000k: I2(g) <=> 2 I (g) The following data is relevent: v(I2)= 214.36 cm-1 ; B(I2)=0.0373 cm-1 ; De(I2)= 1.5422 eV The ground state of the iodine atoms is 2P3/2 , which implies fourfold degeneracy. Calculate the equilibrium constant for the reaction.
Consider the following dissociation reaction of iodine at 1000k: I2(g) <=> 2 I (g) The following data is relevent: v(I2)= 214.36 cm-1 ; B(I2)=0.0373 cm-1 ; De(I2)= 1.5422 eV The ground state of the iodine atoms is 2P3/2 , which implies fourfold degeneracy. Calculate the equilibrium constant for the reaction.
Principles of Instrumental Analysis
7th Edition
ISBN:9781305577213
Author:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Publisher:Douglas A. Skoog, F. James Holler, Stanley R. Crouch
Chapter32: Radiochemical Methods
Section: Chapter Questions
Problem 32.19QAP: Show, via a calculation, that the average kinetic energy of a population of thermal neutrons is...
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Consider the following dissociation reaction of iodine at 1000k:
I2(g) <=> 2 I (g)
The following data is relevent: v(I2)= 214.36 cm-1 ; B(I2)=0.0373 cm-1 ; De(I2)= 1.5422 eV
The ground state of the iodine atoms is 2P3/2 , which implies fourfold degeneracy.
Calculate the equilibrium constant for the reaction.
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