The vapor pressures of several solutions of water-propanol (CH 3 CH 2 CH 2 OH) were determined at various compositions, with the following data collected at 45°C: χ H 2 O Vapor pressure(torr) 0 74.0 0.15 77.3 0.37 80.2 0.54 81.6 0.69 80.6 0.83 78.2 1.00 71.9 a. Are solutions of water and propanol ideal? Explain. b. Predict the sign of ∆ H soln for water-propanol solutions. c. Are the interactive forces between propanol and water molecules weaker than, stronger than, or equal to the interactive forces between the pure substances? Explain. d. Which of the solutions in the data would have the lowest normal boiling point?
The vapor pressures of several solutions of water-propanol (CH 3 CH 2 CH 2 OH) were determined at various compositions, with the following data collected at 45°C: χ H 2 O Vapor pressure(torr) 0 74.0 0.15 77.3 0.37 80.2 0.54 81.6 0.69 80.6 0.83 78.2 1.00 71.9 a. Are solutions of water and propanol ideal? Explain. b. Predict the sign of ∆ H soln for water-propanol solutions. c. Are the interactive forces between propanol and water molecules weaker than, stronger than, or equal to the interactive forces between the pure substances? Explain. d. Which of the solutions in the data would have the lowest normal boiling point?
Solution Summary: The author explains that Raoult's law for ideal solution states that the mole tion of the solvent is directly proportional to the vapor pressure of a solution.
The vapor pressures of several solutions of water-propanol (CH3CH2CH2OH) were determined at various compositions, with the following data collected at 45°C:
χ
H
2
O
Vapor pressure(torr)
0
74.0
0.15
77.3
0.37
80.2
0.54
81.6
0.69
80.6
0.83
78.2
1.00
71.9
a. Are solutions of water and propanol ideal? Explain.
b. Predict the sign of ∆Hsoln for water-propanol solutions.
c. Are the interactive forces between propanol and water molecules weaker than, stronger than, or equal to the interactive forces between the pure substances? Explain.
d. Which of the solutions in the data would have the lowest normal boiling point?
Consider the following gas chromatographs of Compound A, Compound B, and a mixture of Compounds A and B.
Inject
A
B
mixture
Area= 9
Area = 5
Area = 3
Area
Inject
.
མི།
Inject
J2
What is the percentage of Compound B in the the mixture?
Rank these according to stability.
CH3
H3C
CH3
1
CH3
H3C
1 most stable, 3 least stable
O 1 most stable, 2 least stable
2 most stable, 1 least stable
O2 most stable, 3 least stable
O3 most stable, 2 least stable
O3 most stable, 1 least stable
CH3
2
CH3
CH3
H₂C
CH3
3
CH3
CH
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