Draw and label completely the liquid-vapor phase diagram of the acetone chloroform system given the following data. a) Only one liquid phase exists b) There is an azeotrope at 64.0 mole% chloroform with taze = 64.4 oC. c) Pure acetone and chloroform boil at 56.1 and 61.2 oC respectively.
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Draw and label completely the liquid-vapor phase diagram of the acetone chloroform system given the following data.
a) Only one liquid phase exists
b) There is an azeotrope at 64.0 mole% chloroform with taze = 64.4 oC.
c) Pure acetone and chloroform boil at 56.1 and 61.2 oC respectively.
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- Please answer this NEATLY, COMPLETELY, and CORRECTLY for an UPVOTE. A liquid mixture containing 30 mole% isopropanol and 70 mole% water is heated in a closed container to a final temperature of 83°C at atmospheric pressure. What is the composition of each of the phases at the final equilibrium temperature? At this condition, what fraction of the original liquid is vaporized? REFERENCE: T-xy Diagram for Isopropanol-Water Mixture at 1 atmIron(II) chloride (melting point 677 °C) and potassium chloride (melting point 776 °C) form the compounds KFeCl3 and K2FeCl4 at elevated temperatures. KFeCl3 melts congruently at 399 °C and K2FeCl4 melts incongruently at 380 °C. Eutectics are formed with compositions x = 0.38 (melting point 351 °C) and x = 0.54 (melting point 393 °C), where x is the mole fraction of FeCl2. The KCl solubility curve intersects the A curve at x = 0.34. Sketch the phase diagram. State the phases that are in equilibrium when a mixture of composition x = 0.36 is cooled from 400 °C to 300 °C.There are two separate phases, one with a composition of 12% phenol and the other with a composition of 60% phenol, from a 210 gram phenol-water mixture with 35% phenol at 60oC. Calculate the masses of these phases.
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- 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. (i) Determine the overall mole fraction of aniline in the mixture. (ii) Use the lever rule to determine the relative amounts of the two phases.There are two separate phases, one of which is 12% phenol and the other is 60% phenol, from a 210 gram phenol-water mixture at a temperature of 60°C with a composition of 35% phenol. Calculate the masses of these phases.At 39.9 ◦C, a mixture of ethanol (x1 = 0.9060, p1 = 130.4 Torr) and isooctane ( p2 = 43.9 Torr) forms a vapor phase with molar fraction y1 = 0.6667 at a total pressure of 185.9 Torr. (a) Calculate the activity and activity coefficient of each component. (b) Calculate the total vapor pressure that the mixture would have if it were ideal.
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