In a study of the gas phase decomposition of dimethyl ether at 500 °C CH3OCH3(2)CH,(2) + H;(g) + CO(g) the concentration of CH3OCH3 was followed as a function of time. It was found that a graph of In[CH3OCH3] versus time in seconds gave a straight line with a slope of -6.08×104 s-l and a y-intercept of -2.39. Based on this plot, the reaction is order in CH3OCH3 and the rate constant for the reaction is |

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter11: Chemical Kinetics: Rates Of Reactions
Section11.1: Reaction Rate
Problem 11.3CE
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In a study of the gas phase decomposition of dimethyl ether at 500 °C
CH3OCH3(g)CH,(g) +?
H;(g) + CO(g)
the concentration of CH3OCH3 was followed as a function of time.
It was found that a graph of In[CH3OCH3] versus time in seconds gave a straight line with a slope of -6.08×10s and a y-intercept of -2.39 .
Based on this plot, the reaction is
V order in CH3OCH3 and the rate constant for the reaction is
Transcribed Image Text:In a study of the gas phase decomposition of dimethyl ether at 500 °C CH3OCH3(g)CH,(g) +? H;(g) + CO(g) the concentration of CH3OCH3 was followed as a function of time. It was found that a graph of In[CH3OCH3] versus time in seconds gave a straight line with a slope of -6.08×10s and a y-intercept of -2.39 . Based on this plot, the reaction is V order in CH3OCH3 and the rate constant for the reaction is
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