Connect Online Access 1-Semester for Organic Chemistry
Connect Online Access 1-Semester for Organic Chemistry
6th Edition
ISBN: 9781260475609
Author: SMITH, Janice
Publisher: Mcgraw-hill Higher Education (us)
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Chapter 7, Problem 52P

Consider the following S N 2 reaction.

Chapter 7, Problem 52P, 7.53 	Consider the following  reaction.
		
Draw a mechanism using curved arrows.
Draw an energy

a. Draw a mechanism using curved arrows.

b. Draw an energy diagram. Label the axes, the reactants, products, E a , and Δ H ο . Assume that the reaction is exothermic.

c. Draw the structure of the transition state.

d. What is the rate equation?

e. What happens to the reaction rate in each of the following instances? [1] The leaving group is changed from Br to I ; [2] The solvent is changed from acetone to CH 3 CH 2 OH ; [3] The alkyl halide is changed from CH 3 ( CH 2 ) 4 Br to CH 3 CH 2 CH 2 CH ( Br ) CH 3 ; [4] The concentration of CN is increased by a factor of five; and [5] The concentrations of both the alkyl halide and CN are increased by a factor of five.

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2. The bromination of 2-butene is an exergonic reaction. Br H3C. Br2 CH3 CH3 Br a. Draw the mechanism for the reaction (you may ignore the stereochemistry for this question). b. In the mechanism drawn above, identify any intermediates. C. How many transition states are involved in the above mechanism? Without drawing the transition state(s), indicate where they occur in the mechanism. d. Which of the following reaction co-ordinate diagrams best illustrates this reaction? Explain briefly. On the diagram, draw the structures of the reactants, products and intermediates at the correct locations on the diagram and indicate which position(s) correspond to the transition state(s). Page 18 of 19 EYRERIMENT 7: BROMINATION OF CINNAMIC ACID WINTER 2022
The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve negatively charged nucleophile, the attack of the nucleophile leads directly to the product. H. Br + CH3OH Br Intermediate 2 (product) Intermediate 1 In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OCH3 Cl2 MEOH ĆI racemic mixture Pay attention to the reactants, they may differ from the examples. In some reactions, one part of the molecule acts as the nucleophile. • You do not have to consider stereochemistry. • Draw one structure per sketcher. Add additional sketchers using the drop-down menu in the bottom right corner. Separate intermediate 1 and intermediate 2 using the the dropdown menu. → symbol from
Consider this reaction: Br CH;OH Br-Br H3CO The mechanism proceeds through a first cationic intermediate, intermediate 1. Nucleophilic attack leads to intermediate 2, which goes on to form the final product. In cases that involve a negatively charged nucleophile, the attack of the nucleophile leads directly to the product. Br + CH3OH Br Intermediate 1 Intermediate 2 (product) In a similar fashion, draw intermediate 1 and intermediate 2 (final product) for the following reaction. OH + Br2 + HBr Br racemic mixture

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Connect Online Access 1-Semester for Organic Chemistry

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