(A) It is required to separate 1 mole of ethanol from ethanol-water mixture by using distillation Column at standard conditions. After 1 hour, it is found that the volume was double and the pressure increased to 152 kpa. Find the Temperature after 1 hour by using the ideal gas law: PV = nRT Given : R = 0.082 L.atm/mole.K

EBK A SMALL SCALE APPROACH TO ORGANIC L
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Chapter79: Solubility
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(A) It is required to separate 1 mole of ethanol from ethanol-water mixture by
using distillation Column at standard conditions. After 1 hour, it is found that
the volume was double and the pressure increased to 152 kpa. Find the
Temperature after 1 hour by using the ideal gas law: PV = nRT
Given : R = 0.082 L.atm/mole.K
(B) Calculate the capacity of a Base added to a solution contains 10 mole of
ammonia (k, = 1.8x105) and 6 mole of ammonium chloride in 120 ml?
Note: Atomic weight: H = 1, 0 = 16, C = 12, Ba = 137, Cl= 35 , N=14
Transcribed Image Text:(A) It is required to separate 1 mole of ethanol from ethanol-water mixture by using distillation Column at standard conditions. After 1 hour, it is found that the volume was double and the pressure increased to 152 kpa. Find the Temperature after 1 hour by using the ideal gas law: PV = nRT Given : R = 0.082 L.atm/mole.K (B) Calculate the capacity of a Base added to a solution contains 10 mole of ammonia (k, = 1.8x105) and 6 mole of ammonium chloride in 120 ml? Note: Atomic weight: H = 1, 0 = 16, C = 12, Ba = 137, Cl= 35 , N=14
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