4) Given the same concentrations, the reaction CO(g) + Ch(g) → COCI;(g) at 250°C is 1.50 x 10° times as fast as the same reaction at 150°C. Calculate the energy of activation (as kJ/mol) for this reaction. Assume that the frequency factor is constant. (R: 8.314 J/mol.K)

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter16: Thermodynamics: Directionality Of Chemical Reactions
Section16.5: Entropy And The Second Law Of Thermodynamics
Problem 16.6CE
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4) Given the same concentrations, the reaction
CO(g) + Cl2(g) → COC2(g)
at 250°C is 1.50 x 10' times as fast as the same reaction at 150°C. Calculate the energy of
activation (as kJ/mol) for this reaction. Assume that the frequency factor is constant.
(R: 8.314 J/mol.K)
Transcribed Image Text:4) Given the same concentrations, the reaction CO(g) + Cl2(g) → COC2(g) at 250°C is 1.50 x 10' times as fast as the same reaction at 150°C. Calculate the energy of activation (as kJ/mol) for this reaction. Assume that the frequency factor is constant. (R: 8.314 J/mol.K)
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