Find the boiling point and freezing point of a solution resulting from the addition of 500 g of ethylene glycol (C2H8O2) in a car radiator containing 4 kg water. Hint: To solve for the boiling point elevation (Atb and freezing point depression (Atf) (where A is supposedly rectangle shape, Atb = Kb.m.i (i is optional); Atf = Kf,m.i. Calculate first the molality of the solution. Kb = .512 degrees Celsius/m (constant) Kf = -1.86 degrees Celsius/m (constant)
Find the boiling point and freezing point of a solution resulting from the addition of 500 g of ethylene glycol (C2H8O2) in a car radiator containing 4 kg water. Hint: To solve for the boiling point elevation (Atb and freezing point depression (Atf) (where A is supposedly rectangle shape, Atb = Kb.m.i (i is optional); Atf = Kf,m.i. Calculate first the molality of the solution. Kb = .512 degrees Celsius/m (constant) Kf = -1.86 degrees Celsius/m (constant)
Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter13: The Chemistry Of Solutes And Solutions
Section13.7: Colligative Properties Of Solutions
Problem 13.11PSP
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Find the boiling point and freezing point of a solution resulting from the addition of 500 g of ethylene glycol (C2H8O2) in a car radiator containing 4 kg water.
Hint: To solve for the boiling point elevation (Atb and freezing point depression (Atf) (where A is supposedly rectangle shape, Atb = Kb.m.i (i is optional); Atf = Kf,m.i. Calculate first the molality of the solution.
Kb = .512 degrees Celsius/m (constant)
Kf = -1.86 degrees Celsius/m (constant)
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