Introductory Chemistry: An Active Learning Approach
Introductory Chemistry: An Active Learning Approach
6th Edition
ISBN: 9781305079250
Author: Mark S. Cracolice, Ed Peters
Publisher: Cengage Learning
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Chapter 7, Problem 24E

Questions 23 to 26: Find the number of moles for each mass of substance given.

a) 53.8 g beryllium

b) 781 g C 3 H 4 Cl 4

c) 0.756 g calcium hydroxide

d) 9.94 g cobalt ( III ) bromide

e) 8.80 g ammonium dichromate (dichromate ion, Cr 2 O 7 2 )

f) 28.3 g magnesium perchlorate

Expert Solution
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Interpretation Introduction

(a)

Interpretation:

The number of moles of beryllium in 53.8g beryllium is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of beryllium in 53.8g beryllium is 5.97mol.

Explanation of Solution

Mass of beryllium is 53.8g.

The molar mass of the beryllium atom is 9.0g/mol.

The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of beryllium in the equation (1).

n=53.8g9.0g/mol=5.97mol

Therefore, the number of moles of beryllium in 53.8g beryllium is 5.97mol.

Conclusion

The number of moles of beryllium in 53.8g beryllium is 5.97mol.

Expert Solution
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Interpretation Introduction

(b)

Interpretation:

The number of moles of C3H3Cl4 in 781g of C3H3Cl4 is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of C3H3Cl4 in 781g of C3H3Cl4 is 4.31mol.

Explanation of Solution

Mass of C3H3Cl4 is 781g.

The molar mass of the carbon atom is 12g/mol.

The molar mass of the hydrogen atom is 1g/mol.

The molar mass of the chlorine atom is 35.5g/mol.

The molar mass of compound is the sum of molar mass of individual elements present in it.

Therefore, the molar mass of C3H3Cl4 is

=3C+3H+4Cl=3×12g/mol+3×1g/mol+4×35.5g/mol=181g/mol

Hence, the molar mass of C3H3Cl4 is 181g/mol.The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of C3H3Cl4 in the equation (1).

n=781g181g/mol=4.31mol

Therefore, the number of moles of C3H3Cl4 in 781g of C3H3Cl4 is 4.31mol.

Conclusion

The number of moles of C3H3Cl4 in 781g of C3H3Cl4 is 4.31mol.

Expert Solution
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Interpretation Introduction

(c)

Interpretation:

The number of moles of Ca(OH)2 in 0.756g of Ca(OH)2 is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of Ca(OH)2 in 0.756g of Ca(OH)2 is 0.0102mol.

Explanation of Solution

Mass of Ca(OH)2 is 0.756g.

The molar mass of the calcium is 40g/mol.

The molar mass of the oxygen atom is 16.00g/mol.

The molar mass of the hydrogen atom is 1g/mol.

The molar mass of compound is the sum of molar mass of individual elements present in it.

Therefore, the molar mass of Ca(OH)2=40g/mol+2×16.00g/mol+2×1g/mol=40g/mol+32.00g/mol+2g/mol=74g/mol

Hence, the molar mass of Ca(OH)2 is 74g/mol.

The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of Ca(OH)2 in the equation (1).

n=0.756g74g/mol=0.0102mol

Therefore, the number of moles of Ca(OH)2 in 0.756g of Ca(OH)2 is 0.0102mol.

Conclusion

The number of moles of Ca(OH)2 in 0.756g of Ca(OH)2 is 0.0102mol.

Expert Solution
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Interpretation Introduction

(d)

Interpretation:

The number of moles of cobalt(III)bromide in 9.94g cobalt(III)bromide is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of cobalt(III)bromide in 9.94g cobalt(III)bromide is 0.033mol.

Explanation of Solution

Mass of cobalt(III)bromide is 9.94g.

The chemical formula of cobalt(III)bromide is CoBr3.

The molar mass of the cobalt is 58.93g/mol.

The molar mass of the bromine atom is 79.90g/mol.

The molar mass of compound is the sum of molar mass of individual elements present in it.

Therefore, the molar mass of cobalt(III)bromide

=Co+3Br=58.93g/mol+3×79.90g/mol=298.63g/mol

Hence, the molar mass of cobalt(III)bromide is 298.63g/mol.

The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of cobalt(III)bromide in the equation (1).

n=9.94g298.63g/mol=0.033mol

Therefore, the number of moles of cobalt(III)bromide in 9.94g cobalt(III)bromide is 0.033mol.

Conclusion

The number of moles of cobalt(III)bromide in 9.94g cobalt(III)bromide is 0.033mol.

Expert Solution
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Interpretation Introduction

(e)

Interpretation:

The number of moles of ammonium dichromate in 8.80g ammonium dichromate is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of ammonium dichromate in 8.80g ammonium dichromate is 0.034mol.

Explanation of Solution

Mass of ammonium dichromate is 8.80g.

The chemical formula of ammonium dichromate is (NH4)2Cr2O7.

The molar mass of the nitrogen atom is 14g/mol.

The molar mass of the hydrogen atom is 1g/mol.

The molar mass of the chromium atom is 51.99g/mol.

The molar mass of the oxygen atom is 16.00g/mol.

The molar mass of compound is the sum of molar mass of individual elements present in it.

Therefore, the molar mass of is=2N+8H+2Cr+7O=2×14g/mol+8×1g/mol+2×51.99g/mol+7×16g/mol=28g/mol+8g/mol+103.98g/mol+112g/mol=251.98g/mol

Hence, the molar mass of (NH4)2Cr2O7 is 251.98g/mol.

The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of ammonium dichromate in the equation (1).

n=8.80g251.98g/mol=0.034mol

Therefore, the number of moles of ammonium dichromate in 8.80g ammonium dichromate is 0.034mol.

Conclusion

The number of moles of ammonium dichromate in 8.80g ammonium dichromate is 0.034mol.

Expert Solution
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Interpretation Introduction

(f)

Interpretation:

The number of moles of magnesium perchlorate in 28.3g magnesium perchlorate is to be calculated.

Concept introduction:

A mole of a substance is defined as the same number of particles of the substance as that present in 12g of 12C. The number of particles present in one mole of a substance is 6.02×1023 particles. The number of moles of a substance is given as,n=mM

Answer to Problem 24E

The number of moles of magnesium perchlorate in 28.3g magnesium perchlorate is 0.126mol.

Explanation of Solution

The mass of magnesium perchlorate is 28.3g.

The chemical formula of magnesium perchlorate is Mg(ClO4)2.

The molar mass of the magnesium atom is 24.30g/mol.

The molar mass of the oxygen atom is 16g/mol.

The molar mass of the chlorine atom is 35.5g/mol.

The molar mass of compound is the sum of molar mass of individual elements present in it.

Therefore, the molar mass of Mg(ClO4)2

=Mg+2Cl+8O=24.30g/mol+2×35.5g/mol+8×16g/mol=24.30g/mol+71g/mol+128g/mol=223.3g/mol

Hence, the molar mass of Mg(ClO4)2 is 223.3g/mol.

The number of moles of a substance is given as,n=mM …(1)

Where,

m represents the mass of the substance.

M represents the molar mass of the substance.

Substitute the value of mass and molar mass of Mg(ClO4)2 in the equation (1).

n=28.3g223.3g/mol=0.126mol

Therefore, the number of moles of magnesium perchlorate in 28.3g magnesium perchlorate is 0.126mol.

Conclusion

The number of moles of magnesium perchlorate in 28.3g magnesium perchlorate is 0.126mol.

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Chapter 7 Solutions

Introductory Chemistry: An Active Learning Approach

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