12) The First-order rate constant for the reaction of methyl chloride (CH3C1) with water to produce methanol (CH3OH) and hydrochloric acid (HCI) is 0.332 S^-1 at 25°C. Calculate the rate constant at 40°C if the activation energy is 116 kJ/mol.
12) The First-order rate constant for the reaction of methyl chloride (CH3C1) with water to produce methanol (CH3OH) and hydrochloric acid (HCI) is 0.332 S^-1 at 25°C. Calculate the rate constant at 40°C if the activation energy is 116 kJ/mol.
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
Section11.5: Temperature And Reaction Rate: The Arrhenius Equation
Problem 11.9E: The frequency factor A is 6.31 108 L mol1 s1 and the activation energy is 10. kJ/mol for the...
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![12) The First-order rate constant for the reaction of methyl chloride (CH3C1) with water to
produce methanol (CH3OH) and hydrochloric acid (HCI) is 0.332 S^-1 at 25°C. Calculate
the rate constant at 40°C if the activation energy is 116 kJ/mol.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F10c6922d-5073-4a3b-bf4a-2e5e5cf03c96%2Ff7c0c856-7644-4d2d-a6fe-ca1002004e1d%2F4fjv2ie_processed.jpeg&w=3840&q=75)
Transcribed Image Text:12) The First-order rate constant for the reaction of methyl chloride (CH3C1) with water to
produce methanol (CH3OH) and hydrochloric acid (HCI) is 0.332 S^-1 at 25°C. Calculate
the rate constant at 40°C if the activation energy is 116 kJ/mol.
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