Concept explainers
(a)
Interpretation:
The detailed mechanism for the given reaction is to be drawn, and the major product is to be predicted.
Concept introduction:
Lithium aluminium hydride (LAH) or
The chemical behaviour of deuterium (
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Answer to Problem 17.43P
The detailed mechanism for the given reaction is
The major product of the given reaction:
Explanation of Solution
The given reaction is
This alkoxide ion then attacks the deuterium (
Thus, the final product of the given reaction is the secondary alcohol shown below:
A ketone, when treated with a reducing agent such as Lithium aluminium hydride (LAH) or
(b)
Interpretation:
The detailed mechanism for the given reaction is to be drawn, and the major product is to be predicted.
Concept introduction:
Lithium aluminium hydride (LAH) or
The chemical behaviour of deuterium (
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Answer to Problem 17.43P
The detailed mechanism for the given reaction is
The major product of the given reaction:
Explanation of Solution
The given reaction is
This alkoxide ion then attacks the proton (H) of water, which is the solvent used in the next step.
Thus, the final product of the given reaction is the secondary alcohol shown below:
A ketone, when treated with a reducing agent such as Lithium aluminium hydride (LAH) or
(c)
Interpretation:
The detailed mechanism for the given reaction is to be drawn, and the major product is to be predicted.
Concept introduction:
Lithium aluminium hydride (LAH) or
The chemical behaviour of deuterium (

Answer to Problem 17.43P
The detailed mechanism for the given reaction is
The major product of the given reaction:
Explanation of Solution
The given reaction is
This alkoxide ion then attacks the deuterium (
Thus, the final product of the given reaction is the secondary alcohol shown below:
A ketone, when treated with a reducing agent such as Lithium aluminium hydride (LAH) or
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Chapter 17 Solutions
EBK GET READY FOR ORGANIC CHEMISTRY
- Draw the mechanism of the reaction.arrow_forward9. Draw all of the possible Monochlorination Products that would Result From the Free Radical Chlormation OF 23,4-TRIMethyl Pentane b. Calculate the To Yield For the major • Product given the Following Relative Restritus For 1° 2° and 30 Hydrogens toward Free Radical Chloration 5.0: 38 : 1 30 2° 1° C. what would be the major product in the Free Radical brominator Of the Same Molecule. Explain your Reasoning.arrow_forwardWhat is the complete reaction mechanism for the chlorination of Ethane, C2H6?arrow_forward
- A 13C NMR spectrum is shown for a molecule with the molecular formula of C6H100. Draw the structure that best fits this data. 220 200 180 160 140 120100 80 60 40 20 Drawingarrow_forwardPlease help me figure out the blan areas with step by step calculations.arrow_forwardneeding help draw all of the possible monochlorination products that would result from the free radical chlorination of 2,3,4-trimethylpentanearrow_forward
- HAND DRAWarrow_forwardBased on the 1H NMR, 13C NMR, DEPT 135 NMR and DEPT 90 NMR, provide a reasoning step and arrive at the final structure of an unknown organic compound containing 7 carbons. Dept 135 shows peak to be positive at 128.62 and 13.63 Dept 135 shows peak to be negative at 130.28, 64.32, 30.62 and 19.10. Provide assignment for the provided structurearrow_forwardO Predict the 'H NMR integration ratio for the following structure. IV I. 3 H A II. 1 H III. 2 H IV. 3 H I. 3 H B II. O H III. 2 H IV. 3 H I. 3 H C II. 2 H III. 2 Harrow_forward
- Organic Chemistry: A Guided InquiryChemistryISBN:9780618974122Author:Andrei StraumanisPublisher:Cengage Learning
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