(a)
Interpretation:
The product formed when butyric acid reacts with ethanol in the presence of
Concept introduction:
Esterification occurs when a
Answer to Problem 20.27AP
The product formed when butyric acid reacts with ethanol in the presence of
Explanation of Solution
When butyric acid reacts with ethanol in the presence of
Figure 1
When butyric acid reacts with ethanol in presence of
(b)
Interpretation:
The product formed when butyric acid reacts with aqueous
Concept introduction:
An acid-base reaction occurs through a transfer of proton from an acid to a base. The base gets protonated and the acid gets deprotonated. The reaction results in the formation of a conjugate acid and a conjugate base as the products. The type of products formed affects the direction of reaction at equilibrium.
Answer to Problem 20.27AP
The product formed when butyric acid reacts with aqueous
Explanation of Solution
When a carboxylic acid reacts with a base, the hydrogen atom is abstracted by the base and a salt of carboxylic acid is formed.
So, when butyric acid reacts with aqueous
Figure 2
The product formed when butyric acid reacts with aqueous
(c)
Interpretation:
The product formed when butyric acid reacts with
Concept introduction:
The substances which on addition removes oxygen atom or hydrogen atom from the other substance, that is, reduces the other substances are known as reducing agents. Reducing agents themselves get oxidized. Carboxylic acid is reduced when reacts with reducing agent,
Answer to Problem 20.27AP
The product formed when butyric acid reacts with
Explanation of Solution
Carboxylic acid is reduced when reacts with reducing agent,
When butyric acid reacts with excess of
Figure 3
When butyric acid reacts with excess of
(d)
Interpretation:
The product formed when butyric acid is heated is to be stated.
Concept introduction:
Carboxylic acids such as
Answer to Problem 20.27AP
When butyric acid is heated, no product is formed.
Explanation of Solution
The structure of butyric acid does not have any electron-withdrawing group like
Butyric acid on heating gives no reaction.
(e)
Interpretation:
The product formed when butyric acid reacts with
Concept introduction:
Carboxylic acids react with
Answer to Problem 20.27AP
The product formed when butyric acid reacts with
Explanation of Solution
When butyric acid reacts with
Figure 4
The product formed when butyric acid reacts with
(f)
Interpretation:
The product formed when butyric acid reacts with diazomethane in ether is to be stated.
Concept introduction:
Esterification occurs when carboxylic acid reacts with diazomethane in ether. Esters end with a suffix,
Answer to Problem 20.27AP
The product formed when butyric acid reacts with diazomethane in ether is shown below.
Explanation of Solution
Esterification occurs when butyric acid reacts with diazomethane in ether and methyl butyrate is formed as a product along with the release of nitrogen gas. The complete reaction is shown below.
Figure 5
The product formed when butyric acid reacts with diazomethane in ether is methyl butyrate.
(g)
Interpretation:
The product formed when
Concept introduction:
Acetal is formed when an alcohol in excess reacts with an aldehyde or ketone in acidic medium. The
Answer to Problem 20.27AP
The product formed when
Explanation of Solution
When an alcohol reacts with an aldehyde in presence of an acid catalyst, a hemiacetal is formed as an intermediate which further reacts to produce acetal with the release of water. The acidic catalyst is used because the alcohol is a weak nucleophile. So on addition of an acid, the oxygen of aldehyde gets protonated and a carbocation is formed. The alcohol easily attacks the carbocation to form the germinal diether derivative of aldehyde, that is, an acetal. When
Figure 6
When
(h)
Interpretation:
The product formed when butanoyl chloride reacts with benzene in
Concept introduction:
Friedel crafts acylation reaction is a reaction in which an
Answer to Problem 20.27AP
The product formed when butanoyl chloride reacts with benzene in
Explanation of Solution
Benzene undergoes Friedel Crafts acylation reaction on reaction with butanoyl chloride in presence of
Figure 7
The product formed when butanoyl chloride reacts with benzene in
(i)
Interpretation:
The product formed when
Concept introduction:
Wolff Kishner Reduction is a reaction in which aldehydes and ketones are converted into
Answer to Problem 20.27AP
The product formed when
Explanation of Solution
Wolff Kishner reduction takes place when
Figure 8
The product formed when
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Chapter 20 Solutions
ORGANIC CHEM +SG +SAPLING >IP<
- n Feb 3 A T + 4. (2 pts) Draw the structure of the major component of the Limonene isolated. Explain how you confirmed the structure. 5. (2 pts) Draw the fragment corresponding to the base peak in the Mass spectrum of Limonene. 6. (1 pts) Predict the 1H NMR spectral data of R-Limonene. Proton NMR: 5.3 pon multiplet (H Ringarrow_forwardPart VI. Ca H 10 O is the molecular formula of compound Tom and gives the in the table below. Give a possible structure for compound Tom. 13C Signals summarized C1 C2 C3 C4 C5 C6 C7 13C shift (ppm) 23.5 27.0 33.0 35.8 127 162 205 DEPT-90 + DEPT-135 + +arrow_forward2. Using the following data to calculate the value of AvapH o of water at 298K. AvapH o of water at 373K is 40.7 kJ/mol; molar heat capacity of liquid water at constant pressure is 75.2J mol-1 K-1 and molar heat capacity of water vapor at constant pressure is 33.6 J mol-1 K-1.arrow_forward
- Part VII. Below are the 'HNMR 13 3 C-NMR, COSY 2D- NMR, and HSQC 20-NMR (Similar with HETCOR but axes are reversed) spectra of an organic compound with molecular formula C6H13 O. Assign chemical shift values to the H and c atoms of the compound. Find the structure. Show complete solutions. Predicted 1H NMR Spectrum ли 4.7 4.6 4.5 4.4 4.3 4.2 4.1 4.0 3.9 3.8 3.7 3.6 3.5 3.4 3.3 3.2 3.1 3.0 2.9 2.8 2.7 2.6 2.5 2.4 2.3 2.2 2.1 2.0 1.9 1.8 1.7 1.6 1.5 1.4 1.3 1.2 1.1 1.0 0.9 0.8 f1 (ppm)arrow_forward3. Draw the expanded structural formula, the condensed structural formula, and the skeletal structural formula for 2-pentene. expanded structure: Condensed structure: Skeletal formula: 4. Draw the expanded structural formula, the condensed structural formula, and the skeletal structural formula for 2-methyl-3-heptene. expanded structure: Condensed structure: Skeletal formula: following structurearrow_forwardPart IV. Propose a plausible Structure w/ the following descriptions: a) A 5-carbon hydrocarbon w/ a single peak in its proton decoupled the DEPT-135 Spectrum shows a negative peak C-NMR spectrum where b) what cyclohexane dione isomer gives the largest no. Of 13C NMR signals? c) C5H120 (5-carbon alcohol) w/ most deshielded carbon absent in any of its DEPT Spectivaarrow_forward
- 13C NMR is good for: a) determining the molecular weight of the compound b) identifying certain functional groups. c) determining the carbon skeleton, for example methyl vs ethyl vs propyl groups d) determining how many different kinds of carbon are in the moleculearrow_forward6 D 2. (1 pt) Limonene can be isolated by performing steam distillation of orange peel. Could you have performed this experiment using hexane instead of water? Explain. 3. (2 pts) Using GCMS results, analyze and discuss the purity of the Limonene obtained from the steam distillation of orange peel.arrow_forwardPart III. Arrange the following carbons (in blue) in order of increasing chemical shift. HO B NH 2 A CIarrow_forward
- Chemistry: Principles and ReactionsChemistryISBN:9781305079373Author:William L. Masterton, Cecile N. HurleyPublisher:Cengage Learning