(a)
Interpretation:
Prove that the relative volatilities of species A and B is equal to the vapor ratio of vapor pressure at the system temperature.
Concept introduction:
The Raoult’s law can be written as,
Where, x and y represent mole fractions of component in liquid and vapor, P is total pressure and P* is the vapor pressure.
(b)
Interpretation:
Determine the relative volatility of styrene to ethylbenzene and relative volatility of benzene to ethylbenzene. Which pair is difficult to separate by distillation.
Concept introduction:
The Raoult’s law can be written as,
Where, x and y represent mole fractions of component in liquid and vapor, P is total pressure and P* is the vapor pressure.
(c)
Interpretation:
Prove the given expression is valid.
Concept introduction:
The Raoult’s law can be written as,
Where, x and y represent mole fractions of component in liquid and vapor, P is total pressure and P* is the vapor pressure.
(d)
Interpretation:
Estimate the mole fraction of benzene in the vapor phase in equilibrium with liquids having given benzene mole fractions. Calculate the total system pressure.
Concept introduction:
The Raoult’s law can be written as,
Where, x and y represent mole fractions of component in liquid and vapor, P is total pressure and P* is the vapor pressure.
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EBK ELEMENTARY PRINCIPLES OF CHEMICAL P
- 2. A polynomial fit to measurements of the molar volume of a binary mixture of A and B is: y = -6.6864x² + 60.067x + 22.764 where y = V (cm³ mol·1), x = xXA, and xẠ is the mole fraction of A. What are the partial molar volumes of A and B at xA = 0.5? 3. The partial molar volumes of propanone (acetone) and trichloromethane (chloroform) in a mixture in which the mole fraction of CHCI3 is 0.4693 are 74.166 cm³ mol-i and 80.235 cm³ mol-1, respectively. What is the volume of a solution of mass 1.000 kg?arrow_forwardIn the gas phase reaction 2 A(g) + B(g) 3 C (g) + 2 D (g), it was found that when 1.00 mol A, 2.00 mol B and 1.00 mol D were mixed and allowed to come to equilibrium at 25°C, the resulting mixture contained 0.9 mol C at a total pressure of 1.00 bar. Calculate the mole fractions of each species , Kx is , Kp is and A GO isarrow_forwardIn the gas phase reaction 2 A(g) + B(g) ⇋ 3 C (g) + 2 D (g), it was found that when 1.00 mol A, 2.00 mol B and 1.00 mol D were mixed and allowed to come to equilibrium at 25oC, the resulting mixture contained 0.9 mol C at a total pressure of 1.00 bar. Calculate the mole fractions of each species , Kx is , Kp is and isarrow_forward
- Aniline, C6H5NH2, and hexane, C6H14 , form partially miscible liquid - liquid mixtures at temperatures below 69. 1 °C. When 42.8 g of aniline and 75 .2 g of hexane are mixed together at a temperature of 67.5 °C, two separate liquid phases are formed, with mole fractions of aniline of 0.308 and 0.618.(a) Determine the overall mole fraction of aniline in the mixture. (b) Use the lever rule to determine the relative amounts of the two phases.arrow_forwardThe table below shows temperature/composition data collected for a mixture of methylbenzene (M) and octane (O) at 1 atm. Recall that x stands for the mole fraction in the liquid and y stands for the mole fraction in the vapor in equilibrium. The boiling points for methylbenzene (M) and octane (O) are 110.60C and 125.60C, respectively. Construct the phase diagram with Temperature vs. xM. What is the composition of the vapor in equilibrium with the liquid of composition (a) xM = 0.250 and (b) xO = 0.250. T (0C) 110.9 112.0 114.0 115.8 117.3 119.0 121.1 123.0 xM 0.908 0.795 0.615 0.527 0.408 0.300 0.203 0.097 yM 0.923 0.836 0.698 0.624 0.527 0.410 0.297 0.164arrow_forwardWhat is AG for the decomposition of CaCO3 at 298 K and a partial pressure of CO2 of 4.00x10-4 bar? CaCO3(s) → CaO(s) + CO2(g) AGrxn (298 K, Pco2 = 0.400 mbar) = ??? CO2(g) Compound AG°; (kJ mol·1) CACO3(s) СаО(s) -1129 -604 -394arrow_forward
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- Introductory Chemistry: A FoundationChemistryISBN:9781337399425Author:Steven S. Zumdahl, Donald J. DeCostePublisher:Cengage Learning