EBK EXPERIMENTAL ORGANIC CHEMISTRY: A M
EBK EXPERIMENTAL ORGANIC CHEMISTRY: A M
6th Edition
ISBN: 9781305687875
Author: Gilbert
Publisher: CENGAGE LEARNING - CONSIGNMENT
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Chapter 4.4, Problem 13E
Interpretation Introduction

Interpretation:Partial pressures of methanol and ethanol and total pressure of mixture should be determined.

Concept introduction:Raoult’s law describes relationship between composition of liquid mixture and vapor pressure. This law holds good only for ideal solutions. Mathematical expression of Raoult’s law is as follows:

PX=PX°NX …… (1)

Where,

    PX is partial pressure of component X .
  • PX° is partial pressure of pure component X .
  • NX is mole fraction of component X .

Dalton’s law of partial pressures states that total pressure is defined as sum of partial pressure of all volatile components. Mathematical expression for Dalton’s law is as follows:

  Ptotal=PX+PY+PZ+... …… (2)

Where,

  • Ptotal is total partial pressure of system.
  • PX is partial pressure of component X .
  • PY is partial pressure of component Y .
  • PZ is partial pressure of component Z .

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At 20.0 °C, the vapor pressure of cyclohexane, a nonpolar hydrocarbon, is 66.9 torr and that of toluene, a hydrocarbon related to benzene, is 21.1 torr. Calculate the expected vapor pressure of a mixture of cyclohexane and toluene that consists of 136  grams of each liquid.
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At 20.0 °C, the vapor pressure of cyclohexane, a nonpolar hydrocarbon, is 66.9 torr and that of toluene, a hydrocarbon related to benzene, is 21.1 torr. Calculate the expected vapor pressure of a mixture of cyclohexane and toluene that consists of 124 grams of each liquid. Ptotal= torr
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Solutions: Crash Course Chemistry #27; Author: Crash Course;https://www.youtube.com/watch?v=9h2f1Bjr0p4;License: Standard YouTube License, CC-BY