The rate of vaporization increases/decreases with increasing temperature. Explain this phenomenon. The rate of vaporization increases/decreases with increasing surface area. Explain this phenomenon. The rate of vaporization increases with decreasing/increasing intermolecular forces. Explain this phenomenon.

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TABLE 11.7 Heats of Vaporization of Several Liquids at Their Boiling Points and at 25 °C
Chemical
Formula
Normal Boling
Point ("C)
A Hynp (kJ/mol) at
Boiling Point
A anp (kJ/mol)
at 25 °C
Liquid
Water
H,0
100
40.7
44.0
Rubbing alcohol
(isopropyl alcohol)
C,H0
82.3
39.9
45.4
Acetone
C,H,0
56.1
29.1
31.0
Diethyl ether
34.6
26.5
27.1
Copyright © 2008 Pearson Prentice Hall, Inc.
The rate of vaporization increases/decreases with increasing temperature. Explain this
phenomenon.
The rate of vaporization increases/decreases with increasing surface area. Explain this
phenomenon.
The rate of vaporization increases with decreasing/increasing intermolecular forces.
Explain this phenomenon.
Transcribed Image Text:TABLE 11.7 Heats of Vaporization of Several Liquids at Their Boiling Points and at 25 °C Chemical Formula Normal Boling Point ("C) A Hynp (kJ/mol) at Boiling Point A anp (kJ/mol) at 25 °C Liquid Water H,0 100 40.7 44.0 Rubbing alcohol (isopropyl alcohol) C,H0 82.3 39.9 45.4 Acetone C,H,0 56.1 29.1 31.0 Diethyl ether 34.6 26.5 27.1 Copyright © 2008 Pearson Prentice Hall, Inc. The rate of vaporization increases/decreases with increasing temperature. Explain this phenomenon. The rate of vaporization increases/decreases with increasing surface area. Explain this phenomenon. The rate of vaporization increases with decreasing/increasing intermolecular forces. Explain this phenomenon.
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