Essential oils are concentrated liquid containing metabolites extracted from plant sources and are widely used in the production of perfumes. The structures of some of these compounds present in essential oils are presented below. H₂C H₂C. H₂C CH₂ IC O CH CH₂ FCH₂ Compound A MM: 136.228 g/mol H₂C CH₂ CH Compound B MM: 168.270 g/mol 1. Arrange the given compounds in terms of increasing boiling points. HC HC. H₂C CH3 CH CH3 OH Compound C MM: 150.212 g/mol
Essential oils are concentrated liquid containing metabolites extracted from plant sources and are widely used in the production of perfumes. The structures of some of these compounds present in essential oils are presented below. H₂C H₂C. H₂C CH₂ IC O CH CH₂ FCH₂ Compound A MM: 136.228 g/mol H₂C CH₂ CH Compound B MM: 168.270 g/mol 1. Arrange the given compounds in terms of increasing boiling points. HC HC. H₂C CH3 CH CH3 OH Compound C MM: 150.212 g/mol
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Essential oils are concentrated liquid containing metabolites extracted from plant sources and are widely used in the production of
perfumes. The structures of some of these compounds present in essential oils are presented below.
H₂C
H₂C
H₂C
CH3
CH₂
CH₂
Compound A
MM: 136.228 g/mol
H₂C
CH₂
Compound B
MM: 168.270 g/mol
1. Arrange the given compounds in terms of increasing boiling points.
HC
HC
H₂C
CH3
CH3
OH
Compound C
MM: 150.212 g/mol
Expert Solution

Step 1
The boiling point of the compounds depends on the intermolecular forces.
The boiling point increases with the increasing the strength of the intermolecular forces.
The strength of the intermolecular forces: Van der Waals forces < dipole-dipole interactions < hydrogen bonding.
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