Introduction To Chemistry
Introduction To Chemistry
5th Edition
ISBN: 9781259911149
Author: BAUER, Richard C., Birk, James P., Marks, Pamela
Publisher: Mcgraw-hill Education,
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Chapter 4, Problem 27QP

(a)

Interpretation Introduction

Interpretation:

The molar mass of the compound given is to be calculated.

(a)

Expert Solution
Check Mark

Explanation of Solution

The given compound is Hg2Cl2 . Molar mass can be determined by adding the masses of the component’s elements which are present in a chemical formula. Molar mass of Hg2Cl2 is calculated as follows:

The mass of Hg from the periodic table is 200.6 g/mole . For 2 mole , the mass is:

massHg=2 mole×200.6 g/mole=401.2 g

The mass of Chlorine from the periodic table is 35.45 g/mole . For 2 mole , the mass is:

massCl=2 mole×35.45 g/mole=70.90 g

Therefore, the mass for 1 mole Hg2Cl2 is:

massHg2Cl2=401.2 g+70.90 g=472.1 g

Hence, the molar mass of Hg2Cl2 is 472.1 g/mole .

(b)

Interpretation Introduction

Interpretation:

The molar mass of the substance is to be calculated.

(b)

Expert Solution
Check Mark

Explanation of Solution

The given compound is CaSO4.2H2O . Molar mass can be determined by adding the masses of the component’s elements which are present in a chemical formula. Molar mass of CaSO4.2H2O is calculated as follows:

The mass of calcium from the periodic table is 40.08 g/mole . For 1 mole , the mass is:

massCa=1 mole×40.08 g/mole=40.08 g

The mass of sulfur from the periodic table is 32.06 g/mole . For 1 mole , the mass is:

massS=1 mole×32.06 g/mole=32.06 g

The mass of oxygen from the periodic table is 16.00 g/mole . For 4 mole , the mass is:

massO=4 mole×16.00 g/mole=64.00 g

The mass of 1 mole H2O is 18.016 g/mole . For 2 mole , the mass is:

=2 mole×18.016 g/mole=36.032 g

Therefore, the mass for 1 mole CaSO4.2H2O is:

massCaSO4.2H2O=40.08 g+32.06 g+64.00 g+36.032 g=172.17 g

Hence, the molar mass of CaSO4.2H2O is 172.17 g/mol .

(c)

Interpretation Introduction

Interpretation:

The molar mass of the substance is to be calculated.

(c)

Expert Solution
Check Mark

Explanation of Solution

The given compound is Cl2O5 . Molar mass can be determined by adding the masses of the component’s elements which are present in a chemical formula. Molar mass of Cl2O5 is calculated as follows:

The mass of Cl from the periodic table is 35.45 g/mole . For 2 mole , the mass is:

massCl=2 mole×35.45 g/mole=70.90 g

The mass of O from the periodic table is 16.00 g/mole . For 5 mole , the mass is:

massO=5 mole×16.00 g/mole=80.00 g

Therefore, the mass for 1 mole Cl2O5 is:

massCl2O5=70.90 g+80.00 g=150.90 g

Hence, the molar mass of Cl2O5 is 150.90 g/mole .

(d)

Interpretation Introduction

Interpretation:

The molar mass of the substance is to be determined.

(d)

Expert Solution
Check Mark

Explanation of Solution

The given compound is NaHSO4 . Molar mass can be determined by adding the masses of the component’s elements which are present in a chemical formula. Molar mass of NaHSO4 is calculated as follows:

The mass of Na from the periodic table is 22.99 g/mole . For 1 mole , the mass is:

massNa=1 mole×22.99 g/mole=22.99 g

The mass of H from the periodic table is 1.008 g/mole . For 1 mole , the mass is:

massH=1 mole×1.008 g/mole=1.008 g

The mass of sulfur from the periodic table is 32.06 g/mole . For 1 mole , the mass is:

=1 mole×32.06 g/mole=32.06 g

The mass of oxygen from the periodic table is 16.00 g/mole . For 4 mole , the mass is:

massO=4 mole×16.00 g/mole=64.00 g

Therefore, the mass for 1 mole NaHSO4 is:

massNaHSO4=22.99 g+1.008 g+32.06 g+64.00 g=120.06 g

Hence, the molar mass of NaHSO4 is 120.06 g/mol .

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Chapter 4 Solutions

Introduction To Chemistry

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