Organic Chemistry (8th Edition)
Organic Chemistry (8th Edition)
8th Edition
ISBN: 9780134042282
Author: Paula Yurkanis Bruice
Publisher: PEARSON
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Chapter 12, Problem 41P

a. Propose a mechanism for the following reaction:

Chapter 12, Problem 41P, a. Propose a mechanism for the following reaction: b. Given that H for the reaction is 42 kcal/mol , example  1

b. Given that ∆H° for the reaction is –42 kcal/mol and the bond dissociation enthalpies for the Chapter 12, Problem 41P, a. Propose a mechanism for the following reaction: b. Given that H for the reaction is 42 kcal/mol , example  2 bonds are 101, 85, and 105 kcal/mol respectively, calculate the bond dissociation enthalpy of the Chapter 12, Problem 41P, a. Propose a mechanism for the following reaction: b. Given that H for the reaction is 42 kcal/mol , example  3 bond.

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a. Propose a mechanism for the following reaction:   b. Given that ΔH° for the reaction is -42 kcal/mol and the bond dissociation enthalpies for the C¬H, C¬Cl, and O¬H bonds are 101, 85, and 105 kcal/mol respectively, calculate the bond dissociation enthalpy of the O¬Cl bond.
4. The enthalpies, AH°, for the hydrogenation of three alkenes are shown below: Alkene A: -50 kcal/mole Alkene B: -60 kcal/mole Alkene C: -70 kcal/mole Which alkene is the least stable and why?
Given each of the following values, is the starting material or product lower in energy? a. ΔGo = 8.0 kJ/mol b.Keq = 10 c. ΔGo = −12 kJ/mol d.Keq = 10−3

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Organic Chemistry (8th Edition)

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