On the basis of the frequency factors and activation energy values of the following two reactions, determine which one will have the larger rate constant at room temperature (298 K). O3(g) + O(g) → O2(g) + O,(g) A = 8.0 × 10-12 cm³/(molecules s) -> E, = 17.1 kJ/mol %3D 0;(g) + Cl(g) → CIO(g) + O2(g) A = 2.9 × 10-11" cm /(molecules •s) E, = 2.16 kJ/mol a
On the basis of the frequency factors and activation energy values of the following two reactions, determine which one will have the larger rate constant at room temperature (298 K). O3(g) + O(g) → O2(g) + O,(g) A = 8.0 × 10-12 cm³/(molecules s) -> E, = 17.1 kJ/mol %3D 0;(g) + Cl(g) → CIO(g) + O2(g) A = 2.9 × 10-11" cm /(molecules •s) E, = 2.16 kJ/mol a
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter11: Rate Of Reaction
Section: Chapter Questions
Problem 63QAP: The uncoiling of deoxyribonucleic acid (DNA) is a first-order reaction. Its activation energy is 420...
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C 24. The Rate Laws For The Therm X +
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13.115. On the basis of the frequency factors and activation energy
values of the following two reactions, determine which
one will have the larger rate constant at room temperature
(298 K).
→ O2(g) + O2(g)
O3(g) + O(g)
A = 8.0 X 10-12 cm'/(molecules • s)
→
E = 17.1 kJ/mol
%3D
a
O3(g) + Cl(g) → C1O(g) + O2(g)
A = 2.9 × 10-11 cm³/(molecules • s)
E, = 2.16 kJ/mol
a
13.116. On the basis of the frequency factors and activation energy
values of the following two reactions, determine which
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Transcribed Image Text:Edition_Chemistry_S X
C 24. The Rate Laws For The Therm X +
File C:/Users/danan/AppData/Local/Temp/Temp1 Gilbert 5th_Edition_Chemistry_Science_in_Context.pdf.zip/Gilbert_5th_Edition_Chemistry Sci...
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13.115. On the basis of the frequency factors and activation energy
values of the following two reactions, determine which
one will have the larger rate constant at room temperature
(298 K).
→ O2(g) + O2(g)
O3(g) + O(g)
A = 8.0 X 10-12 cm'/(molecules • s)
→
E = 17.1 kJ/mol
%3D
a
O3(g) + Cl(g) → C1O(g) + O2(g)
A = 2.9 × 10-11 cm³/(molecules • s)
E, = 2.16 kJ/mol
a
13.116. On the basis of the frequency factors and activation energy
values of the following two reactions, determine which
26°C Cloudy ^ ĝ e
Co search
口I A
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