INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN
8th Edition
ISBN: 9780134580289
Author: CORWIN
Publisher: PEARSON
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Chapter 14, Problem 34E
Interpretation Introduction

(a)

Interpretation:

The mass/mass percent concentration of the basic solution 3.00 M NaOH with density, d=1.12 g/mL is to be calculated.

Concept introduction:

Molarity is defined as the number of moles of solute per unit volume in liters of solution.

The formula of molarity is given below.

Molarity=Number of moles (n)Volume in liters (V)

The density is defined as the mass per unit volume of the compound and is given by the formula given below.

Density=MassVolume

Expert Solution
Check Mark

Answer to Problem 34E

The mass/mass percent of 3.00 M NaOH solution is 10.71%.

Explanation of Solution

The molarity of  NaOH solution is given 3.00 M.

The density of  NaOH solution is given 1.12 g/mL.

The formula of density is shown below.

Density=MassVolume …(1)

The formula of molarity is shown below.

Molarity=Number of moles (n)Volume in liters (V) …(2)

The mass/mass percent is defined as the mass of solute divided by the total mass of the solution multiplied by 100.

The formula of mass/mass percent is given below.

Mass/masspercent=Mass of soluteMass of solution×100% …(3)

The 3.00 M solution means three moles of solute in one liter of solution.

Therefore, there are three moles of  NaOH in one liter of solution.

Mass of solution can be found using the formula of density. Mass is equal to the density multiplied by volume.

Substitue the volume of solution and density in equation (1) to find out the mass of solution.

Density=MassVolume1.12 g/mL=Μass1 L

Rearrange above equation to find out mass as shown below.

Μass=1.12 g/mL×1 L=1.12 g/mL×1000 mL(1 L=1000 mL)=1120 g

The mass of solute from its moles can be obtained by multiplying its number of moles by the molar mass of the solute.

The molar mass of  NaOH is 40.0 g/mol.

Mass of three moles of  NaOH is then 3 mol×40.0 g/mol=120 g.

Substitute the mass of solute and mass of solution in the equation (3) to find out mass/mass percent as shown below.

Mass/masspercent=120 g1120 g×100%=10.71%

The mass/mass percent concentration of 3.00 M NaOH solution is 10.71%.

Conclusion

The mass/mass percent of 3.00 M NaOH solution is calculated as 10.71%.

Interpretation Introduction

(b)

Interpretation:

The mass/mass percent concentration of the basic solution 0.500 M KOH with density, d=1.02 g/mL is to be calculated.

Concept introduction:

Molarity is defined as the number of moles of solute per unit volume in liters of solution.

The formula of molarity is given below.

Molarity=Number of moles (n)Volume in liters (V)

The density is defined as the mass per unit volume of the compound and is given by the formula given below.

Density=MassVolume

Expert Solution
Check Mark

Answer to Problem 34E

The mass/mass percent of 0.500 M KOH solution is 2.75%.

Explanation of Solution

The molarity of KOH solution is given 0.500 M.

The density of KOH solution is given 1.02 g/mL.

The formula of density is shown below.

Density=MassVolume …(1)

The formula of molarity is shown below.

Molarity=Number of moles (n)Volume in liters (V) …(2)

The mass/mass percent is defined as the mass of solute divided by the total mass of the solution multiplied by 100.

The formula of mass/mass percent is given below.

Mass/masspercent=Mass of soluteMass of solution×100% …(3)

The 0.500 M solution means half moles of solute in one liter of solution.

Therefore, there are half moles of KOH present in one liter of solution.

Mass of solution can be found using the formula of density. Mass is equal to the density multiplied by volume.

Substituent the volume of solution and density in equation (1) to find out the mass of the solution.

Density=MassVolume1.02 g/mL=Μass1 L

Rearrange above equation to find out mass as shown below.

Μass=1.02 g/mL×1 L=1.02 g/mL×1000 mL(1 L=1000 mL)=1020 g

The mass of solute from its moles can be obtained by multiplying its number of moles by the molar mass of the solute.

The molar mass of KOH is 56.11 g/mol.

Mass of 0.500 moles of KOH is then 0.500 mol×56.11 g/mol=28.06 g.

Substitute the mass of solute and mass of solution in the equation (3) to find out mass/mass percent as shown below.

Mass/masspercent=28.06 g1020 g×100%=2.75%

The mass/mass percent of 0.500 M KOH solution is 2.75%.

Conclusion

The mass/mass percent of 0.500 M KOH solution is calculated as 2.75%.

Interpretation Introduction

(c)

Interpretation:

The mass/mass percent concentration of the basic solution 6.00 M NH3 with density, d=0.954 g/mL is to be calculated.

Concept introduction:

Molarity is defined as the number of moles of solute per unit volume in liters of solution.

The formula of molarity is given below.

Molarity=Number of moles (n)Volume in liters (V)

The density is defined as the mass per unit volume of the compound and is given by the formula given below.

Density=MassVolume

Expert Solution
Check Mark

Answer to Problem 34E

The mass/mass percent of 6.00 M NH3 solution is 10.72%.

Explanation of Solution

The molarity of NH3 solution is given 6.00 M.

The density of NH3 solution is given 0.954 g/mL.

The formula of density is shown below.

Density=MassVolume …(1)

The formula of molarity is shown below.

Molarity=Number of moles (n)Volume in liters (V) …(2)

The mass/mass percent is defined as the mass of solute divided by the total mass of the solution multiplied by 100.

The formula of mass/mass percent is given below.

Mass/masspercent=Mass of soluteMass of solution×100% …(3)

The 6.00 M solution means six moles of solute in one liter of solution.

Therefore, there are six moles of NH3 in one liter of solution.

Mass of solution can be found using the formula of density. Mass is equal to the density multiplied by volume.

Substituent the volume of solution and density in equation (1) to find out the mass of the solution.

Density=MassVolume0.954 g/mL=Μass1 L

Rearrange above equation to find out mass as shown below.

Μass=0.954 g/mL×1 L=0.954 g/mL×1000 mL(1 L=1000 mL)=954 g

The mass of solute from its moles can be obtained by multiplying its number of moles by the molar mass of the solute.

The molar mass of NH3 is 17.04 g/mol.

Mass of three moles of NH3 is then 6 mol×17.04 g/mol=102.24 g.

Substitute the mass of solute and mass of solution in the equation (3) to find out mass/mass percent as shown below.

Mass/masspercent=102.24 g954 g×100%=10.72%

The mass/mass percent of 6.00 M NH3 solution is 10.72%.

Conclusion

The mass/mass percent of 6.00 M NH3 solution is calculated as 10.72%.

Interpretation Introduction

(d)

Interpretation:

The mass/mass percent concentration of the basic solution 1.00 M Na2CO3 with density, d=1.10 g/mL is to be calculated.

Concept introduction:

Molarity is defined as the number of moles of solute per unit volume in liters of solution.

The formula of molarity is given below.

Molarity=Number of moles (n)Volume in liters (V)

The density is defined as the mass per unit volume of the compound and is given by the formula given below.

Density=MassVolume

Expert Solution
Check Mark

Answer to Problem 34E

The mass/mass percent of 1.00 M Na2CO3 solution is 9.64%.

Explanation of Solution

The molarity of Na2CO3 solution is given 1.00 M.

The density of Na2CO3 solution is given 1.10 g/mL.

The formula of density is shown below.

Density=MassVolume …(1)

The formula of molarity is shown below.

Molarity=Number of moles (n)Volume in liters (V) …(2)

The mass/mass percent is defined as the mass of solute divided by the total mass of the solution multiplied by 100.

The formula of mass/mass percent is given below.

Mass/masspercent=Mass of soluteMass of solution×100% …(3)

The 1.00 M solution means one mole of solute in one liter of solution.

Therefore, there are one mole of NH3 in one liter of solution.

Mass of solution can be found using the formula of density. Mass is equal to density multiplied by volume.

Substituent the volume of solution and density in equation (1) to find out the mass of the solution.

Density=MassVolume1.10 g/mL=Μass1 L

Rearrange above equation to find out mass as shown below.

Μass=1.10 g/mL×1 L=1.10 g/mL×1000 mL(1 L=1000 mL)=1100 g

The mass of solute from its moles can be obtained by multiplying its number of moles by the molar mass of the solute.

The molar mass of Na2CO3 is 105.99 g/mol.

Mass of three moles of Na2CO3 is then 1 mol×105.99 g/mol=105.99 g.

Substitute the mass of solute and mass of solution in the equation (3) to find out mass/mass percent as shown below.

Mass/masspercent=105.99 g1100 g×100%=9.64%

The mass/mass percent of 1.00 M Na2CO3 solution is 9.64%.

Conclusion

The mass/mass percent of 1.00 M Na2CO3 solution is calculated as 9.64%.

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Chapter 14 Solutions

INTRODUCTORY CHEMISTRY-STD.GDE.+SOL.MAN

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