Organic Chemistry: Principles and Mechanisms (Second Edition)
2nd Edition
ISBN: 9780393663556
Author: Joel Karty
Publisher: W. W. Norton & Company
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Chapter 8, Problem 8.46P
Interpretation Introduction
Interpretation:
The racemization that occurs when
Concept introduction:
When the
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Racemization occurs when
OH
OH
(S)-3,3-dimethylcyclohexanol is dissolved
in dilute acid. Draw a mechanism to
account for this, including curved arrows.
(S)-3,3-Dimethylcyclohexanol
When trans-2-chloro-1-cyclohexanol is treated with a base, cyclohexene oxide is the product. However, when cis-2-chloro-1-cyclohexanol is treated with a base, the product is cyclohexanone.
Write the mechanism for each of the two reactions.
(R)-2-iodo-3-methylbutane is treated with sodium bromide in acetone. Select all products that are formed.
2-methylbutan-1-ol
2-methylbutan-2-ol
3-methylbut-1-ene
(R)-3-methyl-2-butanol
2-methylbut-2-ene
O (S)-2-bromo-3-methylbutane
Chapter 8 Solutions
Organic Chemistry: Principles and Mechanisms (Second Edition)
Ch. 8 - Prob. 8.1PCh. 8 - Prob. 8.2PCh. 8 - Prob. 8.3PCh. 8 - Prob. 8.4PCh. 8 - Prob. 8.5PCh. 8 - Prob. 8.6PCh. 8 - Prob. 8.7PCh. 8 - Prob. 8.8PCh. 8 - Prob. 8.9PCh. 8 - Prob. 8.10P
Ch. 8 - Prob. 8.11PCh. 8 - Prob. 8.12PCh. 8 - Prob. 8.13PCh. 8 - Prob. 8.14PCh. 8 - Prob. 8.15PCh. 8 - Prob. 8.16PCh. 8 - Prob. 8.17PCh. 8 - Prob. 8.18PCh. 8 - Prob. 8.19PCh. 8 - Prob. 8.20PCh. 8 - Prob. 8.21PCh. 8 - Prob. 8.22PCh. 8 - Prob. 8.23PCh. 8 - Prob. 8.24PCh. 8 - Prob. 8.25PCh. 8 - Prob. 8.26PCh. 8 - Prob. 8.27PCh. 8 - Prob. 8.28PCh. 8 - Prob. 8.29PCh. 8 - Prob. 8.30PCh. 8 - Prob. 8.31PCh. 8 - Prob. 8.32PCh. 8 - Prob. 8.33PCh. 8 - Prob. 8.34PCh. 8 - Prob. 8.35PCh. 8 - Prob. 8.36PCh. 8 - Prob. 8.37PCh. 8 - Prob. 8.38PCh. 8 - Prob. 8.39PCh. 8 - Prob. 8.40PCh. 8 - Prob. 8.41PCh. 8 - Prob. 8.42PCh. 8 - Prob. 8.43PCh. 8 - Prob. 8.44PCh. 8 - Prob. 8.45PCh. 8 - Prob. 8.46PCh. 8 - Prob. 8.47PCh. 8 - Prob. 8.48PCh. 8 - Prob. 8.49PCh. 8 - Prob. 8.50PCh. 8 - Prob. 8.51PCh. 8 - Prob. 8.52PCh. 8 - Prob. 8.53PCh. 8 - Prob. 8.54PCh. 8 - Prob. 8.55PCh. 8 - Prob. 8.56PCh. 8 - Prob. 8.57PCh. 8 - Prob. 8.58PCh. 8 - Prob. 8.59PCh. 8 - Prob. 8.60PCh. 8 - Prob. 8.61PCh. 8 - Prob. 8.62PCh. 8 - Prob. 8.63PCh. 8 - Prob. 8.64PCh. 8 - Prob. 8.65PCh. 8 - Prob. 8.66PCh. 8 - Prob. 8.67PCh. 8 - Prob. 8.68PCh. 8 - Prob. 8.69PCh. 8 - Prob. 8.70PCh. 8 - Prob. 8.71PCh. 8 - Prob. 8.72PCh. 8 - Prob. 8.73PCh. 8 - Prob. 8.74PCh. 8 - Prob. 8.75PCh. 8 - Prob. 8.76PCh. 8 - Prob. 8.1YTCh. 8 - Prob. 8.2YTCh. 8 - Prob. 8.3YTCh. 8 - Prob. 8.4YTCh. 8 - Prob. 8.5YTCh. 8 - Prob. 8.6YTCh. 8 - Prob. 8.7YTCh. 8 - Prob. 8.8YTCh. 8 - Prob. 8.9YTCh. 8 - Prob. 8.10YTCh. 8 - Prob. 8.11YTCh. 8 - Prob. 8.12YTCh. 8 - Prob. 8.13YTCh. 8 - Prob. 8.14YTCh. 8 - Prob. 8.15YTCh. 8 - Prob. 8.16YTCh. 8 - Prob. 8.17YTCh. 8 - Prob. 8.18YTCh. 8 - Prob. 8.19YT
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- Can you draw the mechanism for the synthesis of cyclohexene from cyclohexanol through an acid-catalyzed dehydration reaction. Where Phosphoric acid donates a proton ((H^+)) to the hydroxyl group of cyclohexanol, forming a protonated cyclohexanol intermediate. • The protonated cyclohexanol undergoes dehydration, leading to the removal of a water molecule and the formation of cyclohexene. • The released proton combines with water to form hydronium ion (H3O+), regenerating the catalyst. The mechanism should illustrate the acid-catalyzed dehydration process, where phosphoric acid facilitates the removal of water from cyclohexanol, resulting in the formation of cyclohexene.arrow_forwardDehydration of 1,2,2-trimethylcyclohexanol with H2SO4 affords 1-tert-butylcyclopentene as a minor product. (a) Draw a stepwise mechanism that shows how this alkene is formed. (b) Draw other alkenes formed in this dehydration. At least one must contain a five-membered ring.arrow_forwardPlease complete parts A and Barrow_forward
- Draw the products formed when phenol (C6H5OH) is treated with following set of reagents. [1] (CH3CH2)2CHCOCl, AlCl3; [2] Zn(Hg), HClarrow_forward2) Suggest a mechanism explaining how the following reaction leads to an acetal, yet no alcohol is present. MeO OMe H* OMe OMearrow_forwardWhen cis-2-decalone is dissolved in ether containing a trace of HCI, an equilibrium is established with trans-2-decalone. The latter ketone predominates in the equilibrium mixture. H H HCI cis-2-Decalone trans-2-Decalone Propose a mechanism for this isomerization and account for the fact that the trans iso- mer predominates at equilibrium.arrow_forward
- When a cyclic ketone reacts with diazomethane, the next larger cyclic ketone is formed. This is called a ring-expansion reaction. Draw a mechanism forthe following ring-expansion reaction.arrow_forwardNon-conjugated β,γ-unsaturated ketones, such as 3-cyclohexenone, as in acid-catalysed equilibrium with their α,β-unsaturated isomers. The mechanism has several intermediates. Draw the structure of the second reaction intermediate in the conversion of 3-cyclohexenone to 2-cyclohexenone. This intermediate is a neutral compound.arrow_forwardDraw a stepwise mechanism for the following reaction in (a) aacid-catalyzed and (b) base-catalyzed hydration.arrow_forward
- 1.Does This have the ability to form a hemiacetal or acetal if acetone is added in the presence of heat and acid? Draw the product.arrow_forwardDehydration of 1,2,2-trimethylcyclohexanol with H2SO4 affords 1-tert-butylcyclopentene as a minor product. (a) Draw a stepwise mechanism that shows how this alkene is formed. (b) Draw other alkenes formed in this dehydration. At least one must contain a ve-membered ring.arrow_forwardWhen (R)-6-bromo-2,6-dimethylnonane is dissolved in CH3OH,nucleophilic substitution yields an optically inactive solution. When theisomeric halide (R)-2-bromo-2,5-dimethylnonane is dissolved in CH3OHunder the same conditions, nucleophilic substitution forms an opticallyactive solution. Draw the products formed in each reaction, and explainwhy the difference in optical activity is observed.arrow_forward
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