The substitution reaction studied here with Chlorobutane and KOH is known to have a second order rate equation meaning the transition state in the slow step involves both nucleophile and electrophile. Knowing that, which of the following statements are true? Select all that apply. A) Adding more Chlorobutane (the electrophile) will not change the rate of the reaction. B) Adding more KOH (the nucleophile) will make the reaction go faster. Adding more Chlorobutane (the electrophile) will make the reaction go faster. (D) Adding more KOH (the nucleophile) will not change the rate of the reaction. E) Adding more KOH (the nucleophile) will make the reaction go slower.

Organic Chemistry: A Guided Inquiry
2nd Edition
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Andrei Straumanis
Chapter13: Substitution
Section: Chapter Questions
Problem 58CTQ
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The substitution reaction studied here with Chlorobutane and KOH is known to have a second order rate equation meaning the
transition state in the slow step involves both nucleophile and electrophile. Knowing that, which of the following statements are
true? Select all that apply.
A) Adding more Chlorobutane (the electrophile) will not change the rate of the reaction.
B Adding more KOH (the nucleophile) will make the reaction go faster.
Adding more Chlorobutane (the electrophile) will make the reaction go faster.
D) Adding more KOH (the nucleophile) will not change the rate of the reaction.
E Adding more KOH (the nucleophile) will make the reaction go slower.
Transcribed Image Text:The substitution reaction studied here with Chlorobutane and KOH is known to have a second order rate equation meaning the transition state in the slow step involves both nucleophile and electrophile. Knowing that, which of the following statements are true? Select all that apply. A) Adding more Chlorobutane (the electrophile) will not change the rate of the reaction. B Adding more KOH (the nucleophile) will make the reaction go faster. Adding more Chlorobutane (the electrophile) will make the reaction go faster. D) Adding more KOH (the nucleophile) will not change the rate of the reaction. E Adding more KOH (the nucleophile) will make the reaction go slower.
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