The C O double bond has a dipole moment of about 2.4 D and a bond length of about 1.23 . (a) Calculate the amount of charge separation in this bond. (b) Use this information to evaluate the relative importance of the following two resonance contributors: O C R R C+ R R O (R is a general symbol for a carbon-containing group.)
Read moreTable of Contents
1
Structure and Bonding
2
Acids and Bases; Functional Groups
3
Structure and Stereochemistry of Alkanes
4
The Study of Chemical Reactions
5
Stereochemistry
6
Alkyl Halides; Nucleophilic Substitution
7
Structure and Synthesis of Alkenes; Elimination
8
Reactions of Alkenes
9
Alkynes
10
Structure and Synthesis of Alcohols
11
Reactions of Alcohols
12
Infrared Spectroscopy and Mass Spectrometry
13
Nuclear Magnetic Resonance Spectroscopy
14
Ethers, Epoxides, and Thioethers
15
Conjugated Systems, Orbital Symmetry, and Ultraviolet Spectroscopy
16
Aromatic Compounds
17
Reactions of Aromatic Compounds
18
Ketones and Aldehydes
19
Amines
20
Carboxylic Acids
21
Carboxylic Acid Derivatives
22
Condensations and Alpha Substitutions of Carbonyl Compounds
23
Carbohydrates and Nucleic Acids
24
Amino Acids, Peptides, and Proteins
25
Lipids
26
Synthetic Polymers
Textbook Solutions for Organic Chemistry
Chapter 2 Problem 2-46
Question
The following compounds can all react as bases.
(a) For each compound, show its conjugate acid. Show any resonance forms if applicable.
(b) Rank the conjugate acids in the order you would predict, from most stable to least stable.
(c) Rank the original compounds in order, from strongest base to weakest base.
Solution
Step 1 of 4
(a)
Protonation (or hydronation) is the adding of a proton (or hydron, or hydrogen cation), to an atom, molecule, or ion, forming a conjugate acid.
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Title
Organic Chemistry 9
Author
Leroy G. Wade, Jan W. Simek
ISBN
9780321971371