(b) Write the relation between half-life and rate constant and define the term. Question 2 In a reaction, the rate constant is found to be quadruple when the temperature increases from 30°C to 70°C, calculate the activation energy for the reaction. Question 3 In general for the reaction: C + dD →aA + B, write the rate law expression for reaction. Question 4 What is the order of reaction with respect to the individual concentration and over all order of reaction for given rate law expression: Rate (Ms-!) = K[L]s?[C]'[P]? /3

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
Section: Chapter Questions
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Question
(a) Write Arrhenius equation with variation of temperature and define the term.
(b) Write the relation between half-life and rate constant and define the term.
Question 2
In a reaction, the rate constant is found to be quadruple when the temperature increases from
30°C to 70°C, calculate the activation energy for the reaction.
Question 3
In general for the reaction: C + dD →aA + B, write the rate law expression for reaction.
Question 4
What is the order of reaction with respect to the individual concentration and over all order of
reaction for given rate law expression: Rate (Ms-1) =K[L]s/?[C]'[P]? /3
Transcribed Image Text:(a) Write Arrhenius equation with variation of temperature and define the term. (b) Write the relation between half-life and rate constant and define the term. Question 2 In a reaction, the rate constant is found to be quadruple when the temperature increases from 30°C to 70°C, calculate the activation energy for the reaction. Question 3 In general for the reaction: C + dD →aA + B, write the rate law expression for reaction. Question 4 What is the order of reaction with respect to the individual concentration and over all order of reaction for given rate law expression: Rate (Ms-1) =K[L]s/?[C]'[P]? /3
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