Introduction to Chemistry
Introduction to Chemistry
4th Edition
ISBN: 9780073523002
Author: Rich Bauer, James Birk Professor Dr., Pamela S. Marks
Publisher: McGraw-Hill Education
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Chapter 4, Problem 88QP

(a)

Interpretation Introduction

Interpretation:

The percent composition of nitrogen in NaNO3 is to be determined.

(a)

Expert Solution
Check Mark

Explanation of Solution

The percent composition of any substance is calculated by dividing the mass of the substance in a sample by the total mass of the sample. This ratio is multiplied by 100 % .

To determine the percent composition, let the sample size be 1 mole . Now, determine the mass of each element contained in 1 mole of the compound, NaNO3 , as follows:

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

m=1 mole×22.99 g/mole=22.99 g

The mass of N from the periodic table is 14.01 g/mole . For 1 mole , the mass is:

m=1 mole×14.01 g/mole=14.01 g

The mass of O from the periodic table is 16.00 g/mole . For 3 mole , the mass is:

m=3 mole×16.00 g/mole=48.00 g

Therefore, the total mass of 1 mole NaNO3 is:

total mass=22.99 g+14.01 g+48.00 g=85.00 g

Now, the percent composition of N is as follows:

% N=14.01 g85.00 g×100 %=16.48 %

(b)

Interpretation Introduction

Interpretation:

The percentage of nitrogen in NH4Cl is to analyzed.

(b)

Expert Solution
Check Mark

Explanation of Solution

To determine the percent composition, let the sample size be 1 mole . Now, determine the mass of each element contained in 1 mole of the compound, NH4Cl , as follows:

The mass of N from the periodic table is 14.01 g/mole . For 1 mole , the mass is:

m=1 mole×14.01 g/mole=14.01 g

The mass of H from the periodic table is 1.008 g/mole . For 4 mole , the mass is:

m=4 mole×1.008 g/mole=4.032 g

The mass of Cl from the periodic table is 35.45 g/mole . For 1 mole , the mass is:

m=1 mole×35.45 g/mole=35.45 g

Therefore, the total mass of 1 mole NH4Cl is:

total mass=14.01 g+4.032 g+35.45 g=53.49 g

Now, the percent composition of N is as follows:

% N=14.01 g53.49 g×100 %=26.19 %

(c)

Interpretation Introduction

Interpretation:

The percentage of nitrogen in N2H4 is to analyzed.

(c)

Expert Solution
Check Mark

Explanation of Solution

To determine the percent composition, let the sample size be 1 mole . Now, determine the mass of each element contained in 1 mole of the compound N2H4 as follows:

The mass of N from the periodic table is 14.01 g/mole . For 2 mole , the mass is:

m=2 mole×14.01 g/mole=28.02 g

The mass of H from the periodic table is 1.008 g/mole . For 4 mole , the mass is:

m=4 mole×1.008 g/mole=4.032 g

Therefore, the total mass of 1 mole N2H4 is:

total mass=28.02 g+4.032 g=32.05 g

Now, the percent composition of N is as follows:

% N=28.02 g32.05 g×100 %=87.43 %

(d)

Interpretation Introduction

Interpretation:

The percentage of nitrogen in N2O is to analyzed.

(d)

Expert Solution
Check Mark

Explanation of Solution

To determine the percent composition, let the sample size be 1 mole . Now, determine the mass of each element contained in 1 mole of the compound, N2O , as follows:

The mass of N from the periodic table is 14.01 g/mole . For 2 mole , the mass is:

m=2 mole×14.01 g/mole=28.02 g

The mass of O from the periodic table is 16.00 g/mole . For 1 mole , the mass is:

m=1 mole×16.00 g/mole=16.00 g

Therefore, the total mass of 1 mole N2O is:

total mass=28.02 g+16.00 g=44.02 g

Now, the percent composition of N is as follows:

% N=28.02 g44.02 g×100 %=63.65 %

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Chapter 4 Solutions

Introduction to Chemistry

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