Chemistry for Today: General, Organic, and Biochemistry
Chemistry for Today: General, Organic, and Biochemistry
9th Edition
ISBN: 9781305960060
Author: Spencer L. Seager, Michael R. Slabaugh, Maren S. Hansen
Publisher: Cengage Learning
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Chapter 9, Problem 9.99E
Interpretation Introduction

(a)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is given by the formula,

Molarity=NumberofmillimolesVolume(mL)

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 33.33mL.

Explanation of Solution

The volume and molarity of HCl is 20.00mL and 0.200M respectively.

The number of millimoles of HCl is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(1)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL) …(2)

Substitute the volume and molarity in equation (2).

Numberofmillimoles=0.200M×20.00mLNumberofmillimoles=4mmol

Thus, the number of millimoles of HCl is 4mmol.

The neutralization reaction is given below.

HCl(aq)+NaOH(aq)NaCl(aq)+H2O(l)

From the above equation, the molar ratio of HCl and NaOH is 1:1. Hence, the number of moles of NaOH is 4mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and millimoles of NaOH in equation (1).

0.120M=4mmolVolume(mL)Volume(mL)=4mmol0.120M=33.33mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 33.33mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 33.33mL.

Interpretation Introduction

(b)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is given by the formula,

Molarity=NumberofmillimolesVolume(mL)

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 66.67mL.

Explanation of Solution

The volume and molarity of H2SO4 is 20.00mL and 0.200M respectively.

The number of millimoles of H2SO4 is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(1)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL) …(2)

Substitute the volume and molarity in equation (2).

Numberofmillimoles=0.200M×20.00mLNumberofmillimoles=4mmol

Thus, the number of millimoles of H2SO4 is 4mmol.

The neutralization reaction is given below.

H2SO4(aq)+2NaOH(aq)Na2SO4(aq)+2H2O(l)

From the above equation, the molar ratio of H2SO4 and NaOH is 1:2. Hence, the number of millimoles of NaOH required to neutralize 4mmol of H2SO4 is calculated as follows:

1moleofH2SO4=2×moleofNaOH4mmolofH2SO4=2×4mmolofNaOH=8mmolofNaOH

Hence, the number of millimoles of NaOH is 8mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and millimoles of NaOH in equation (1).

0.120M=8mmolVolume(mL)Volume(mL)=8mmol0.120M=66.67mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 66.67mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 66.67mL.

Interpretation Introduction

(c)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is given by the formula,

Molarity=NumberofmillimolesVolume(mL)

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 41.67mL.

Explanation of Solution

The volume and molarity of HCl is 20.00mL and 0.250M respectively.

The number of millimoles of HCl is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(1)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL) …(2)

Substitute the volume and molarity in equation (2).

Numberofmillimoles=0.250M×20.00mLNumberofmillimoles=5mmol

Thus, the number of millimoles of HCl is 5mmol.

The neutralization reaction is given below.

HCl(aq)+NaOH(aq)NaCl(aq)+H2O(l)

From the above equation, the molar ratio of HCl and NaOH is 1:1. Hence, the number of millimoles of NaOH is 5mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and moles of NaOH in equation (1).

0.120M=5mmolVolume(mL)Volume(mL)=5mmol0.120M=41.67mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 41.67mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 41.67mL.

Interpretation Introduction

(d)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is calculated by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 340.1mL.

Explanation of Solution

The number of moles a substance is given as,

n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance

The number of moles of HCl is calculated by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L …(2)

The above formula can be written as follows:

Numberofmoles=Molarity×Volume(mL)×1L1000mL …(3)

Equate equation (1) and (3).

mM=Molarity×Volume(mL)×1L1000mL …(4)

The molar mass of H3PO4 is 98gmol1. The given mass and volume of H3PO4 is 10.00g and 150.mL respectively.

Substitute the molar mass and given mass of H3PO4 in equation (4).

10g98gmol1=Molarity×150mL×1L1000mLMolarity=10g×1000mL98gmol1×150mL×1L=0.6802M

Thus, the molarity of H3PO4 is 0.6802M. The given volume of H3PO4 is 20.00mL.

The number of millimoles of H3PO4 is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(5)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL)

Substitute the volume and molarity in above formula.

Numberofmillimoles=0.6802M×20.00mLNumberofmillimoles=13.604mmol

Thus, the number of millimoles of H3PO4 is 13.604mmol.

The neutralization reaction is given below.

H3PO4(aq)+3NaOH(aq)Na3PO4(aq)+3H2O(l)

From the above equation, the molar ratio of H3PO4 and NaOH is 1:3. Hence, the number of millimoles of NaOH required to neutralize 13.604mmol of H3PO4 is calculated as follows:

1moleofH3PO4=3×moleofNaOH13.604mmolofH3PO4=3×13.604mmolofNaOH=40.812mmoleofNaOH

Hence, the number of millimoles of NaOH is 40.812mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and moles of NaOH in equation (5).

0.120M=40.812mmolVolume(mL)Volume(mL)=40.812mmol0.120M=340.1mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 340.1mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 340.1mL.

Interpretation Introduction

(e)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is given by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 125mL.

Explanation of Solution

The moles and volume of H2MoO4 is 0.150mol and 400.mL respectively.

The molarity of H2MoO4 is calculated by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L

Substitute the volume and moles in above formula.

Molarity=0.150mol400mL×1000mL1L=0.375M

Thus, the molarity of H2MoO4 is 0.375M.

The number of millimoles of H2MoO4 is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(1)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL)

Substitute the volume and molarity in above formula.

Numberofmillimoles=0.375M×20.00mLNumberofmillimoles=7.5mmol

Thus, the number of millimoles of H2MoO4 is 7.5mmol.

The neutralization reaction is given below.

H2MoO4(aq)+2NaOH(aq)Na2MoO4(aq)+2H2O(l)

From the above equation, the molar ratio of H2MoO4 and NaOH is 1:2. Hence, the number of millimoles of NaOH required to neutralize 7.5mmol of H2MoO4 is calculated as follows:

1moleofH2MoO4=2×moleofNaOH7.5mmolofH2MoO4=2×7.5mmolofNaOH=15mmoleofNaOH

Hence, the number of millimoles of NaOH is 15mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and moles of NaOH in equation (1).

0.120M=15mmolVolume(mL)Volume(mL)=15mmol0.120M=125mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 125mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 125mL.

Interpretation Introduction

(f)

Interpretation:

The number of milliliters of NaOH solution that will be needed for given acid sample is to be determined.

Concept introduction:

Molarity is the ratio of the number of moles of solute to the volume of the solution in liters.

The molarity is given by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L

Expert Solution
Check Mark

Answer to Problem 9.99E

The number of milliliters of NaOH solution that will be needed for given acid sample is 119.3mL.

Explanation of Solution

The moles and volume of H2MoO4 is 0.215mol and 600.mL respectively.

The molarity of H2MoO4 is calculated by the formula,

Molarity=NumberofmolesVolume(mL)×1000mL1L

Substitute the volume and moles in above formula.

Molarity=0.215mol600mL×1000mL1L=0.358M

Thus, the molarity of H2MoO4 is 0.358M.

The number of millimoles of H2MoO4 is calculated by the formula,

Molarity=NumberofmillimolesVolume(mL) …(1)

The above formula can be written as follows:

Numberofmillimoles=Molarity×Volume(mL)

Substitute the volume and molarity in above formula.

Numberofmillimoles=0.358M×20.00mLNumberofmillimoles=7.16mmol

Thus, the number of millimoles of H2MoO4 is 7.16mmol.

The neutralization reaction is given below.

H2MoO4(aq)+2NaOH(aq)Na2MoO4(aq)+2H2O(l)

From the above equation, the molar ratio of H2MoO4 and NaOH is 1:2. Hence, the number of millimoles of NaOH required to neutralize 7.5mmol of H2MoO4 is calculated as follows:

1moleofH2MoO4=2×moleofNaOH7.16mmolofH2MoO4=2×7.16mmolofNaOH=14.32mmoleofNaOH

Hence, the number of millimoles of NaOH is 14.32mmol.

The given molarity of NaOH is 0.120M.

Substitute the molarity and moles of NaOH in equation (1).

0.120M=14.32mmolVolume(mL)Volume(mL)=14.32mmol0.120M=119.3mL

Hence, the number of milliliters of NaOH solution that will be needed for given acid sample is 119.3mL.

Conclusion

The number of milliliters of NaOH solution that will be needed for given acid sample is 119.3mL.

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Chapter 9 Solutions

Chemistry for Today: General, Organic, and Biochemistry

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