5. Which of the following equations shows that isoquinoline, CoH;N, behaves as a Bronsted-Lowry base in water? a) CoH;N(aq) + H20(I) C,H;NH"(aq) + OH (aq) b) CoH;N(aq) + H2O(I) c) CoH;N(aq) + OH (aq) d) CoH,N(aq) + H;O*(aq) = C9H,NH (aq) + H2O(1) e) CoH;NH"(aq) + H20(I) = C,H;N(aq) + H3O (aq) CoH,N (aq) + H;O (aq) CoH&N (aq) + H2O(1)

Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter4: Acids And Bases
Section: Chapter Questions
Problem 4.18P: If the G for a reaction is 4.5 kcal/mol at 298 K, what is the Keq for this reaction? What is the...
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5. Which of the following equations shows that isoquinoline, C9H;N, behaves as a Bronsted-Lowry base in water?
a) CóH;N(aq) + H2O(1) =
b) CH;N(aq) + H2O(1)
c) C9H;N(aq) + OH¯(aq) =
d) CoH;N(aq) + H;O*(aq)
e) CoH;NH*(aq) + H2O(!)
C9H;NH*(aq) + OH (aq)
= C9H&N°(aq) + H;O*(aq)
C9HN¯(aq) + H;O(!)
= C9H;NH*(aq) + H2O(1)
= C9H;N(aq) + H;O*(aq)
Transcribed Image Text:5. Which of the following equations shows that isoquinoline, C9H;N, behaves as a Bronsted-Lowry base in water? a) CóH;N(aq) + H2O(1) = b) CH;N(aq) + H2O(1) c) C9H;N(aq) + OH¯(aq) = d) CoH;N(aq) + H;O*(aq) e) CoH;NH*(aq) + H2O(!) C9H;NH*(aq) + OH (aq) = C9H&N°(aq) + H;O*(aq) C9HN¯(aq) + H;O(!) = C9H;NH*(aq) + H2O(1) = C9H;N(aq) + H;O*(aq)
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