Principles of General Chemistry
Principles of General Chemistry
3rd Edition
ISBN: 9780073402697
Author: SILBERBERG, Martin S.
Publisher: McGraw-Hill College
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Chapter 2, Problem 2.13P

(a)

Interpretation Introduction

Interpretation:Mass of fluorine in 2.76g fluorite mineral is to be calculated.

Concept introduction:Total mass of a compound (AB) is calculated by addition of the mass of its constituent element (A) and (B) .

The formula to calculate the mass of compound (AB) is as follows:

  MassofcompoundAB=MassofelementA+MassofelementB

(a)

Expert Solution
Check Mark

Answer to Problem 2.13P

The mass of fluorine in the sample is 1.34g .

Explanation of Solution

Given information:

Total mass of fluorite sample 2.76g , mass of calcium in the sample is 1.42g .

The formula to calculate the mass of fluorine in fluorite sample is as follows:

  Totalmassoffluorite sample=Massofcalcium+Massoffluorine

Rearrange the above formula.

  Massoffluorine=TotalmassoffluoritesampleMassofcalcium

Total mass of fluorite sample is 2.76g .

Mass of calcium in fluorite sample is 1.42g .

Substitute the values in above formula.

  Massoffluorine=Totalmassoffluorite sampleMassofcalcium=2.76g1.42g=1.34g

(b)

Interpretation Introduction

Interpretation: Mass fractions of calcium and fluorine are to be calculated in fluorite sample.

Concept introduction: To calculate the mass fraction of an element in a compound, divide the total mass of that element in that compound by total mass of that compound.

The formula to calculate the mass fraction of an element is as follows:

  Massfractionofanelement=TotalmassofthatelementinthatcompoundTotalmassofthatcompound

(b)

Expert Solution
Check Mark

Answer to Problem 2.13P

The mass fraction of calcium in fluorite sample is 0.5145 and the mass fraction of fluorine in fluorite sample is 0.4855 .

Explanation of Solution

Given information:

Total mass of fluorite sample 2.76g , mass of calcium in the sample is 1.42g .

The formula to calculate the mass of fluorine in fluorite sample is as follows:

  Totalmassoffluorite sample=Massofcalcium+Massoffluorine

Rearrange the above formula.

  Massoffluorine=TotalmassoffluoritesampleMassofcalcium

Total mass of fluorite sample is 2.76g .

Mass of calcium in fluorite sample is 1.42g .

Substitute the values in the above formula.

  Massoffluorine=Totalmassoffluorite sampleMassofcalcium=2.76g1.42g=1.34g

The formula to calculation the mass fraction of calcium in fluorite sample is done as follows:

  Massfractionofcalciuminfluoritesample=TotalmassofcalciuminfluoritesampleTotalmassoffluoritesample

Total mass of fluorite sample is 2.76g .

Mass of calcium in fluorite sample is 1.42g .

Substitute the values in the above formula.

  Massfractionofcalciuminfluoritesample=TotalmassofcalciuminfluoritesampleTotalmassoffluoritesample=1.42g2.76g=0.5145

Formula to calculate themass fraction of fluorine in fluorite sample is as follows:

  Massfractionoffluorineinfluoritesample=TotalmassoffluorineinfluoritesampleTotalmassoffluoritesample

Total mass of fluorite sample is 2.76g .

Mass of fluorine in fluorite sample is 1.34g .

Substitute the values in the above formula.

  Massfractionoffluorineinfluoritesample=TotalmassoffluorineinfluoritesampleTotalmassoffluoritesample=1.34g2.76g=0.4855

(c)

Interpretation Introduction

Interpretation:Mass percent of calcium and fluorine are to be calculated in fluorite sample.

Concept introduction: To calculate the mass fraction of an element in a compound, divide the total mass of that element in that compound by total mass of that compound.

The formula to calculate the mass fraction of an element is as follows:

  Massfractionof element=TotalmassofthatelementinthatcompoundTotalmassofthatcompound

Formula to calculate the mass percent of an element is as follows:

  Masspercentofanelement=(Massfractionofthatelementincompound)(100)%

(c)

Expert Solution
Check Mark

Answer to Problem 2.13P

The mass percent of calcium is 51.45% and the mass percent of fluorine is 48.55% .

Explanation of Solution

Given information:

Total mass of fluorite sample 2.76g , mass of calcium in the sample is 1.42g .

The formula to calculate the mass of fluorine in fluorite sample is as follows:

  Totalmassoffluorite sample=Massofcalcium+Massoffluorine

Rearrange the above formula.

  Massoffluorine=TotalmassoffluoritesampleMassofcalcium

Total mass of fluorite sample is 2.76g .

Mass of calcium in fluorite sample is 1.42g .

Substitute the values in the above formula.

  Massoffluorine=Totalmassoffluorite sampleMassofcalcium=2.76g1.42g=1.34g

The formula to calculate the mass fraction of calcium in fluorite sample is as follows:

  Massfractionofcalcium=TotalmassofcalciuminfluoritesampleTotalmassoffluoritesample

Total mass of fluorite sample is 2.76g .

Mass of calcium in fluorite sample is 1.42g .

Substitute the values in the above formula.

  Massfractionofcalcium=TotalmassofcalciuminfluoritesampleTotalmassoffluoritesample=1.42g2.76g=0.5145

Formula to calculate the mass fraction of fluorine in fluorite sample is as follows:

  Massfractionoffluorine=TotalmassoffluorineinfluoritesampleTotalmassoffluoritesample

Total mass of fluorite sample is 2.76g .

Mass of fluorine in fluorite sample is 1.34g .

Substitute the values in the above formula.

  Massfractionoffluorine=( Totalmassoffluorinein fluoritesample )Totalmassoffluoritesample=1.34g2.76g=0.4855

Formula to calculate the mass percent of calcium from mass fraction of calcium is as follows:

  Masspercentofcalciumin fluoritesample=(Massfractionofcalcium)(100)%

Mass fraction of calcium in sample is 0.5145.

Substitute the values in the above formula.

  Masspercentofcalciuminthefluoritesample=(Massfractionofcalcium)(100)%=(0.5145)(100)%=51.45%

Formula to calculate the mass percent of fluorine from mass fraction of fluorine is as follows:

  Masspercentoffluorineinthefluoritesample=(Massfractionoffluorine)(100)%

Mass fraction of fluorine in sample is 0.4855.

Substitute the values in the above formula.

  Masspercentoffluorineinthefluoritesample=(Massfractionoffluorine)(100)%=(0.4855)(100)%=48.55%

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Chapter 2 Solutions

Principles of General Chemistry

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