0.0455 kg of biphenyl (C12H10) is dissolve in benzene (CH6) to create a solution with a total volume of 350.0 mL. (Assume the change in volume is negligible) a) What intermolecular forces are shared between biphenyl and benzene? b) If the boiling point of pure benzene is 80.1 °C, then what would be the boiling point of this solution in °C? (Kb for benzene is 2.53 °C/m and the density of benzene is 0.877 g/ mL) c) If the vapor pressure of pure benzene is 24.4 kPa at 40.0 °C, then what will the vapor pressure of the solution be in kPa? (Consider biphenyl to be nonvolatile and the density of benzene is 0.877 g/mL)
0.0455 kg of biphenyl (C12H10) is dissolve in benzene (CH6) to create a solution with a total volume of 350.0 mL. (Assume the change in volume is negligible) a) What intermolecular forces are shared between biphenyl and benzene? b) If the boiling point of pure benzene is 80.1 °C, then what would be the boiling point of this solution in °C? (Kb for benzene is 2.53 °C/m and the density of benzene is 0.877 g/ mL) c) If the vapor pressure of pure benzene is 24.4 kPa at 40.0 °C, then what will the vapor pressure of the solution be in kPa? (Consider biphenyl to be nonvolatile and the density of benzene is 0.877 g/mL)
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
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Question
![0.0455 kg of biphenyl (C12H10) is
dissolve in benzene (C6H6) to
create a solution with a total
volume of 350.0 mL. (Assume the
change in volume is negligible)
a) What intermolecular forces are
shared between biphenyl and
benzene?
b) If the boiling point of pure
benzene is 80.1 °C, then what
would be the boiling point of
this solution in °C? (Kb for
benzene is 2.53 °C/m and the
density of benzene is 0.877 g/
mL)
>
c) If the vapor pressure of pure
benzene is 24.4 kPa at 40.0 °C,
then what will the vapor
pressure of the solution be in
kPa? (Consider biphenyl to be
nonvolatile and the density of
benzene is 0.877 g/mL)
d) What would be the osmotic
pressure (in atm) of this
solution at 40.0 °C? Assume
the density of the solution is
the same as benzene, 0.877 g/
mL.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F519d4492-8e4c-4b4b-b1f5-a1d5c4f0934c%2F87bd3039-ae3f-4a3f-b3aa-a8d7ee7509ef%2Fx9gw26e_processed.jpeg&w=3840&q=75)
Transcribed Image Text:0.0455 kg of biphenyl (C12H10) is
dissolve in benzene (C6H6) to
create a solution with a total
volume of 350.0 mL. (Assume the
change in volume is negligible)
a) What intermolecular forces are
shared between biphenyl and
benzene?
b) If the boiling point of pure
benzene is 80.1 °C, then what
would be the boiling point of
this solution in °C? (Kb for
benzene is 2.53 °C/m and the
density of benzene is 0.877 g/
mL)
>
c) If the vapor pressure of pure
benzene is 24.4 kPa at 40.0 °C,
then what will the vapor
pressure of the solution be in
kPa? (Consider biphenyl to be
nonvolatile and the density of
benzene is 0.877 g/mL)
d) What would be the osmotic
pressure (in atm) of this
solution at 40.0 °C? Assume
the density of the solution is
the same as benzene, 0.877 g/
mL.
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