CHEMISTRY (CUSTOM F/CHE 111/112)
CHEMISTRY (CUSTOM F/CHE 111/112)
3rd Edition
ISBN: 9781264063802
Author: Burdge
Publisher: MCG
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Chapter 4, Problem 124AP

A 0.8870-g sample of a mixture of NaCl and KCl is dissolved in water, and the solution is then treated with an excess of AgNO 3 to yield 1.913 g of AgCl . Calculate the percent by mass of each compound in the mixture.

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Interpretation Introduction

Interpretation:

The percentage of NaCl and KCl in the given mixture is to be calculated.

Concept introduction:

Percentage of the given compound in a mixture is calculated by dividing the mass of the compound by the mass of the mixture and then multiplying it with 100.

The number of moles of the compound formed in the given reaction is calculated by dividing its mass by the molar mass.

Moles of compound =mass of compund molar mass of compound

Answer to Problem 124AP

Solution: NaCl is 44.11%, and KCl is 55.89%.

Explanation of Solution

Given information: The reaction of NaCl and KCl solution with AgNO3 leads to the formation of AgCl.

The mass of the mixture is 0.8870g.

The mass of AgCl formed in the reaction is 1.913g.

The balanced chemical equation for the given reaction is as follows:

NaCl(aq)+KCl(aq)+AgNO3(aq)AgCl(s)+NaNO3(aq)+KNO3(aq)

The number of moles of AgCl formed in the given reaction is calculated by dividing its mass by the molar mass.

MolesofAgCl=1.913g143.35g/mol=0.013345mol

The number of moles of AgCl formed in the given reaction is equal to the sum of the number of moles of NaCl and KCl present in the given reaction.

The number of moles of NaCl present in the given reaction is considered to be x. Hence, the number of moles of KCl in the given reaction is (0.013345molx).

The mass of the NaCl and KCl present in the given reaction is calculated by the formula,

Mass of compound=moles of compound×Molarmass of compound …… (1)

Substitute the values of number of moles and molar mass for NaCl in the equation (1),

MassofNaCl=xmol×58.44g/mol=58.44xg …… (2)

Substitute the values of number of moles and molar mass for KCl in the equation (1),

MassofKCl=(0.013345x)mol×74.55g/mol=74.55(0.013345x)g …... (3)

The number of moles of NaCl present in the given reaction is calculated by the formula,

MassofNaCl+MassofKCl=MassofAgCl

Substitute the values of mass of NaCl,KCl and AgCl in the above equation,

(58.44xg+74.55(0.013345x)g)=0.8870g(58.44x74.55x)=(0.88700.9948)x=(0.107816.11)=6.6914×103mol

Hence, the number of moles of KCl in the given reaction is calculated as,

MolesofKCl=0.013345mol6.6958×103mol=6.6492×103mol

Hence, the mass of NaCl in the given reaction is calculated by substituting the value of x in the equation (2),

MassofNaCl=58.44g/mol×6.6914×103mol=0.3913g

Similarly, the mass of KCl in the given reaction is calculated by substituting the value of (0.13345x) in the equation (3),

MassofKCl=74.55g/mol×6.6492×103mol=0.4957g

The percentage of the compound in the given mixture is calculated by the formula,

Percentageofcompound=MassofcompoundMassofmixture×100 …… (4)

Substitute the values of mass of NaCl and mass of mixture in the equation (4),

Percentageofcompound=0.3913g0.8870g×100=44.11%

Substitute the values of mass of KCl and mass of mixture in the equation (4),

Percentageofcompound=0.4957g0.8870g×100=55.89%

Conclusion

The percentage by mass of NaCl and KCl in a 0.8870 gm sample mixture of both compound is 44.11% and 55.89%, respectively.

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Chapter 4 Solutions

CHEMISTRY (CUSTOM F/CHE 111/112)

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