(a)
Interpretation:
The synthesis of ethyl acetate using only acetic acid as the source of carbon is to be proposed.
Concept introduction:
A

Answer to Problem 21.86P
Ethyl acetate can be synthesized using only acetic acid as the source of carbon in the following way.
Explanation of Solution
The synthesis of ethyl acetate from acetic acid can be designed using retrosynthetic analysis.
The transform is an undoing of nucleophilic substitution at the carbonyl carbon.
In the forward direction, it can be achieved by reacting to acyl chloride with ethanol, both of which derived from acetic acid. The first one can be synthesized by reacting acetic acid with
Thus the synthesis of ethyl acetate can be carried out as
The synthesis of ethyl acetate was proposed based on conversion of acetic acid to acid chloride followed by nucleophilic addition.
(b)
Interpretation:
The synthesis of
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Explanation of Solution
The acid chloride can be obtained by treating acetic acid with
The synthesis of
(c)
Interpretation:
The synthesis of
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Explanation of Solution
The first transform breaks up the bond between one ethyl group and the carbon bonded to the OH group. This fragment can come from ethyl lithium while the larger one would be butanone. Butanone, in turn, can be derived from ethyl acetate and ethyl lithium. Thus, the synthesis in the forward direction can be carried out as
The synthesis of
(d)
Interpretation:
The synthesis of
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Explanation of Solution
Thus,
The synthesis of
(e)
Interpretation:
The synthesis of ethanamine using only acetic acid as the source of carbon is to be proposed.
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Ethanamine can be synthesized using only acetic acid as the source of carbon as
Explanation of Solution
Ethanamine has only two carbons, the same as acetic acid. So it can be synthesized using only one mole of acetic acid. The first reaction is the conversion of the acid to acid chloride. The acid chloride can then be treated with ammonia to produce acetamide. The amide on reduction with
The synthesis of ethanamine was proposed based on the conversion of acetic acid to acid chloride followed by nucleophilic substitution and reduction.
(f)
Interpretation:
The synthesis of
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Explanation of Solution
The synthesis of
(g)
Interpretation:
The synthesis of
Concept introduction:
A carboxylic acid is a fairly stable compound and does not readily undergo nucleophilic addition to form a new

Answer to Problem 21.86P
Explanation of Solution
The synthesis of
Want to see more full solutions like this?
Chapter 21 Solutions
Organic Chemistry: Principles And Mechanisms
- Li+ is a hard acid. With this in mind, which if the following compounds should be most soluble in water? Group of answer choices LiBr LiI LiF LiClarrow_forwardQ4: Write organic product(s) of the following reactions and show the curved-arrow mechanism of the reactions. Br MeOH OSO2CH3 MeOHarrow_forwardProvide the correct IUPAC name for the compound shown here. Reset cis- 5- trans- ☑ 4-6- 2- 1- 3- di iso tert- tri cyclo sec- oct but hept prop hex pent yl yne ene anearrow_forward
- Q6: Predict the major product(s) for the following reactions. Note the mechanism (SN1, SN2, E1 or E2) the reaction proceeds through. If no reaction takes place, indicate why. Pay attention to stereochemistry. NaCN DMF Br σ Ilm... Br H Br H H NaCN CH3OH KOtBu tBuOH NaBr H₂O LDA Et2O (CH3)2CHOH KCN DMSO NaOH H₂O, A LDA LDA Systemarrow_forwardQ7: For the following reactions, indicate the reaction conditions that would provide the indicated product in a high yield. Note the major reaction pathway that would take place (SN1, SN2, E1, or E2) Note: There may be other products that are not shown. There maybe more than one plausible pathway. Br H3C OH H3C CI ... H3C SCH2CH3 CI i SCH2CH3 ཨ་ Br System Settarrow_forwardQ2: Rank the compounds in each of the following groups in order of decreasing rate of solvolysis in aqueous acetone. OSO2CF3 OSO2CH3 OH a. b. CI Brarrow_forward
- ох 4-tert-butyl oxy cyclohex-1-ene Incorrect, 1 attempt remaining The systematic name of this compound classifies the -OR group as a substituent of the hydrocarbon, which is considered the principal functional group. The ether substituent is named with the suffix 'oxy'. The general format for the systematic name of a hydrocarbon is: [prefix/substituent] + [parent] + [functional group suffix] Substituents are listed in alphabetical order. Molecules with a chiral center will indicate the absolute configuration at the beginning of its name with the R and S notation.arrow_forward5. Compressibility (6 points total). The isothermal compressibility is a measure of how hard/easy it is to compress an object (how squishy is it?) at constant temperature. It is др defined as Br=-()=-(200²)T' (a) You might wonder why there is a negative sign in this formula. What does it mean when this quantity is positive and what does it mean when this quantity is negative? (b) Derive the formula for the isothermal compressibility of an ideal gas (it is very simple!) (c) Explain under what conditions for the ideal gas the compressibility is higher or lower, and why that makes sense.arrow_forward19. (3 pts) in Chapter 7 we will see a reaction of halocyclohexanes that requires that the halogen occupy an axial position with this in mind, would you expect cis-1-bromo-3-methylcyclohexane or trans-1-bromo-3-methylcyclohexane to be more reactive in this reaction? Briefly explain your choice using structures to support your answer. Mere-eries-cecleone) The tran-i-browse-3-methylcyclohexionearrow_forward
- Please help me calculate the undiluted samples ppm concentration. My calculations were 280.11 ppm. Please see if I did my math correctly using the following standard curve. Link: https://mnscu-my.sharepoint.com/:x:/g/personal/vi2163ss_go_minnstate_edu/EVSJL_W0qrxMkUjK2J3xMUEBHDu0UM1vPKQ-bc9HTcYXDQ?e=hVuPC4arrow_forwardProvide an IUPAC name for each of the compounds shown. (Specify (E)/(Z) stereochemistry, if relevant, for straight chain alkenes only. Pay attention to commas, dashes, etc.) H₁₂C C(CH3)3 C=C H3C CH3 CH3CH2CH CI CH3 Submit Answer Retry Entire Group 2 more group attempts remaining Previous Nextarrow_forwardArrange the following compounds / ions in increasing nucleophilicity (least to most nucleophilic) CH3NH2 CH3C=C: CH3COO 1 2 3 5 Multiple Choice 1 point 1, 2, 3 2, 1, 3 3, 1, 2 2, 3, 1 The other answers are not correct 0000arrow_forward
- ChemistryChemistryISBN:9781305957404Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCostePublisher:Cengage LearningChemistryChemistryISBN:9781259911156Author:Raymond Chang Dr., Jason Overby ProfessorPublisher:McGraw-Hill EducationPrinciples of Instrumental AnalysisChemistryISBN:9781305577213Author:Douglas A. Skoog, F. James Holler, Stanley R. CrouchPublisher:Cengage Learning
- Organic ChemistryChemistryISBN:9780078021558Author:Janice Gorzynski Smith Dr.Publisher:McGraw-Hill EducationChemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage LearningElementary Principles of Chemical Processes, Bind...ChemistryISBN:9781118431221Author:Richard M. Felder, Ronald W. Rousseau, Lisa G. BullardPublisher:WILEY





