An aqueous solution of Caclz weighs 7.8 kg. The solution has 8.3 moles of CaClz present in it. The Density of the solution is 1.35 g/ml. (Atomic mass of Ca=40 and that of Cl=35.5) Find the a) Volume of the solution in Litre b) Mass of solvent in Kg c) Molarity of the solution d) Molality of the solution e) Mass% of CaC, f) Mole fraction of Cacl2 g) If the solution is diluted to double its volume, what will be the Molarity of the solution? Volume of Solution (in Litre) Mass of Solvent (in Kg) Molarity of solution Molality of solution Mass percent of CaCl2 Mole fraction of Cacl2 Molarity after dilution

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An aqueous solution of CaClz weighs 7.8 kg. The solution has 8.3 moles of CaCl, present in it. The Density of the solution is 1.35 g/ml. (Atomic mass of Ca=40 and that of Cl=35.5)
Find the
a) Volume of the solution in Litre
b) Mass of solvent in Kg
C) Molarity of the solution
d) Molality of the solution
e) Mass% of CaC2
f) Mole fraction of Cacl2
g) If the solution is diluted to double its volume, what will be the Molarity of the solution?
Volume of Solution (in Litre)
Mass of Solvent (in Kg)
Molarity of solution
Molality of solution
Mass percent of CaClz
Mole fraction of Cacl,
Molarity after dilution
Transcribed Image Text:An aqueous solution of CaClz weighs 7.8 kg. The solution has 8.3 moles of CaCl, present in it. The Density of the solution is 1.35 g/ml. (Atomic mass of Ca=40 and that of Cl=35.5) Find the a) Volume of the solution in Litre b) Mass of solvent in Kg C) Molarity of the solution d) Molality of the solution e) Mass% of CaC2 f) Mole fraction of Cacl2 g) If the solution is diluted to double its volume, what will be the Molarity of the solution? Volume of Solution (in Litre) Mass of Solvent (in Kg) Molarity of solution Molality of solution Mass percent of CaClz Mole fraction of Cacl, Molarity after dilution
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