General Chemistry
General Chemistry
4th Edition
ISBN: 9781891389603
Author: Donald A. McQuarrie, Peter A. Rock, Ethan B. Gallogly
Publisher: University Science Books
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Chapter 2, Problem 2.28P

(a)

Interpretation Introduction

Interpretation:

Molecular mass of CaWO4 has to be calculated to five significant figures.

Concept Introduction:

In a molecule, the sum of atomic mass of all the atoms is known as molecular mass.  Atomic mass of an atom is the average of all the isotope of the particular element.  Molecular mass can be used to calculate the mass percentage of the atom present in the molecule.

(a)

Expert Solution
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Explanation of Solution

Given ore is CaWO4.  Atomic mass of Ca is 40.078g/mol.  Atomic mass of W is 183.84g/mol.  Atomic mass of oxygen is 15.9994g/mol.  Molecular mass of CaWO4 is calculated as shown below.

MolecularmassofCaWO4=atomicmassofCa+atomicmassofW+4(atomicmassofO)=40.078g/mol +183.84g/mol + 4(15.9994g/mol)=40.078g/mol +183.84g/mol + 63.9976g/mol=287.92g/mol

Therefore, molecular mass of CaWO4 is 287.92g/mol.

(b)

Interpretation Introduction

Interpretation:

Molecular mass of Fe3O4 has to be calculated to five significant figures.

Concept Introduction:

Refer part (a).

(b)

Expert Solution
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Explanation of Solution

Given ore is Fe3O4.  Atomic mass of Fe is 55.845g/mol.  Atomic mass of oxygen is 15.9994g/mol.  Molecular mass of Fe3O4 is calculated as shown below.

    MolecularmassofFe3O4=3(atomicmassofFe)+4(atomicmassofO)=3(55.845g/mol) + 4(15.9994g/mol)=167.535g/mol + 63.9976g/mol=231.53g/mol

Therefore, molecular mass of Fe3O4 is 231.53 g/mol.

(c)

Interpretation Introduction

Interpretation:

Molecular mass of Na3AlF6 has to be calculated to five significant figures.

Concept Introduction:

Refer part (a).

(c)

Expert Solution
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Explanation of Solution

Given ore is Na3AlF6.  Atomic mass of Na is 22.989770g/mol.  Atomic mass of Al is 26.981538g/mol.  Atomic mass of fluorine is 18.9984032g/mol.  Molecular mass of Na3AlF6 is calculated as shown below.

MolecularmassofNa3AlF6=3(atomicmassofNa)+atomicmassofAl+6(atomicmassofF)=3(22.989770g/mol) + 26.98538g/mol + 6(18.9984032g/mol)=68.96931g/mol + 26.98538g/mol + 113.9904192g/mol=209.95g/mol

Therefore, molecular mass of Na3AlF6 is 209.95 g/mol.

(d)

Interpretation Introduction

Interpretation:

Molecular mass of Be3Al2Si6O18 has to be calculated to five significant figures.

Concept Introduction:

Refer part (a).

(d)

Expert Solution
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Explanation of Solution

Given ore is Be3Al2Si6O18.  Atomic mass of Be is 9.012182g/mol.  Atomic mass of Al is 26.981538g/mol.  Atomic mass of silicon is 28.0855g/mol.  Atomic mass of oxygen is 15.9994g/mol.  Molecular mass of Be3Al2Si6O18 is calculated as shown below.

MolecularmassofBe3Al2Si6O18=3(atomicmassofBe)+2(atomicmassofAl)+6(atomicmassofSi)+18(atomicmassofO)=3(9.012182g/mol) + 2(26.98538g/mol) + 6(28.0855g/mol) + 18(15.9994g/mol)=27.036546g/mol + 53.97076g/mol + 168.513g/mol+ 287.9892 g/mol=537.51g/mol

Therefore, molecular mass of Be3Al2Si6O18 is 537.51 g/mol.

(e)

Interpretation Introduction

Interpretation:

Molecular mass of Zn2SiO4 has to be calculated to five significant figures.

Concept Introduction:

Refer part (a).

(e)

Expert Solution
Check Mark

Explanation of Solution

Given ore is Zn2SiO4.  Atomic mass of Zn is 65.409g/mol.  Atomic mass of silicon is 28.0855g/mol.  Atomic mass of oxygen is 15.9994g/mol.  Molecular mass of Zn2SiO4 is calculated as shown below.

  MolecularmassofZn2SiO4=2(atomicmassofZn)+1(atomicmassofSi)+4(atomicmassofO)=2(65.409g/mol) + 1(28.0855g/mol) + 4(15.9994g/mol)=130.818g/mol + 28.0855g/mol + 63.9976g/mol=222.90g/mol

Therefore, molecular mass of Zn2SiO4 is 222.90 g/mol.

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Chapter 2 Solutions

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