CHEM.PRINC.W/OWL2+REBATE+2 SUPPL.>IP<
CHEM.PRINC.W/OWL2+REBATE+2 SUPPL.>IP<
8th Edition
ISBN: 9781337496162
Author: ZUMDAHL
Publisher: CENGAGE L
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Chapter 3, Problem 34E
Interpretation Introduction

Interpretation: The given table is to be completed.

Concept introduction: The amount corresponding to any substance or compound can be conveniently evaluated through mole concept. This theory associates the substance’s moles (amount) and its respective molar mass. Mathematically, this relationship is depicted by the formula, Moles=Givenmass/Molarmass . The Avogadro’s number interconverts substance’s moles to its molecules from where its respective atoms can be interpreted.

Expert Solution & Answer
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Answer to Problem 34E

The completetable is as follows.

    Mass of SampleMoles of SampleMolecules in SampleTotal Atoms in Sample
    4.24gC6H6 0.0543mol C 6 H 6 3.27× 10 22 molecules C 6 H 6 3.92× 10 23 total atoms in C 6 H 6 sample
    4.035gH2O0.224molH2O1.35×1023 molecules H2O4.05×1023 total atoms in H2O sample
    1.98gCO20.045molCO22.71×1022 molecules CO28.13×1022 total atoms in CO2 sample
    0.297gCH3OH9.264×103molCH3OH5.58×1021 molecules CH3OH3.35×1022 total atoms in CH3OH sample

Explanation of Solution

The given mass of benzene (C6H6) is 4.24g .

The number of moles of C6H6 can be calculated as follows.

  Moles=GivenmassMolarmass  (1)

The molar mass of C6H6 is 78.11g/mol .

Substitute the values in equation (1).

  MolesofC6H6=4.24g78.11g/mol=0.0543mol

The number of molecules can be calculated as follows:

  Numberofmolecules=Moles×Avogadro'snumber (2)

The value of Avogadro’s number is 6.023×1023mol1 .

Substitute the values in equation (2).

  Numberofmolecules=Moles×6.023×1023mol1(3)

Substitute the respective values in equation (3).

  NumberofC6H6molecules=0.0543mol×6.023×1023mol1=3.27×1022

The number of atoms can be calculated as follows.

  Totalatoms=Atomspermolecule×Totalmolecules (4)

The total number of atoms in C6H6 is 12 .

Substitute the respective values in equation (4).

  TotalatomsinC6H6=12×3.27×1022=3.92×1023

The given moles of water (H2O) are 0.224mol .

The molar mass of water is 18.015g/mol .

The mass of water can be calculated using equation (1) as follows.

  0.224mol=MassofH2O18.015g/molMassofH2O=0.224mol×18.015g/molMassofH2O=4.035g

The number of molecules of H2O can be calculated using equation (3) as follows.

  NumberofH2Omolecules=0.224mol×6.023×1023mol1=1.35×1023

The number of atoms in H2O molecule are 3 .

The total number of atoms in H2O can be calculated using equation (4) as follows.

  TotalatomsinH2O=3×1.35×1023=4.05×1023

The given number of molecules of CO2 are 2.71×1022 .

The number of moles of CO2 can be calculated using equation (3) as follows.

  2.71×1022=MolesofCO2×6.023×1023mol1MolesofCO2=2.71×10226.023×1023mol1MolesofCO2=0.045mol

The molar mass of CO2 is 44.01g/mol .

The mass of CO2 can be calculated using equation (1) as follows.

  0.045mol=MassofCO244.01g/molMassofCO2=0.045mol×44.01g/molMassofCO2=1.98g

The number of atoms in CO2 molecules are 3 .

The total atoms in CO2 can be calculated using equation (4) as follows.

  TotalatomsinCO2=3×2.71×1022=8.13×1022

The given total number of atoms in CH3OH is 3.35×1022 atoms.

The number of atoms in CH3OH molecule are 6 .

The total number of molecules in CH3OH can be calculated using equation (4) as follows.

  3.35×1022atoms=6atoms×TotalmoleculesinCH3OHTotalmoleculesinCH3OH=3.35×1022atoms6atomsTotalmoleculesinCH3OH=5.58×1021

The number of moles of CH3OH can be calculated using equation (3) as follows.

  5.58×1021=MolesofCH3OH×6.023×1023mol1MolesofCH3OH=5.58×10216.023×1023mol1MolesofCH3OH=9.264×103mol

The molar mass of CH3OH is 32.04g/mol .

The mass of CH3OH can be calculated using equation (1) as follows.

  9.264×103mol=MassofCH3OH32.04g/molMassofCH3OH=9.264×103mol×32.04g/molMassofCH3OH=0.297g

Therefore, the complete table is as follows.

    Mass of SampleMoles of SampleMolecules in SampleTotal Atoms in Sample
    4.24gC6H60.0543molC6H63.27×1022 molecules C6H63.92×1023 total atoms in C6H6 sample
    4.035gH2O0.224molH2O1.35×1023 molecules H2O4.05×1023 total atoms in H2O sample
    1.98gCO20.045molCO22.71×1022 molecules CO28.13×1022 total atoms in CO2 sample
    0.297gCH3OH9.264×103molCH3OH5.58×1021 molecules CH3OH3.35×1022 total atoms in CH3OH sample
Conclusion

The complete table for the given amount of substances is given above.

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Chapter 3 Solutions

CHEM.PRINC.W/OWL2+REBATE+2 SUPPL.>IP<

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