Chemistry
Chemistry
4th Edition
ISBN: 9780393919370
Author: Thomas R. Gilbert
Publisher: NORTON
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Chapter 3, Problem 3.17QP

(a)

Interpretation Introduction

Interpretation: The number of moles of each gas in the sample is to be calculated.

Concept introduction: A mole of a substance is the quantity of a substance which contains the same number of particles as the number of carbon atoms in exactly 12 grams for the carbon-12 isotopes. A mole of particles contains Avogadro’s number (6.022×1023) of particles.

To determine: The number of moles of the given gas in the sample.

(a)

Expert Solution
Check Mark

Answer to Problem 3.17QP

Solution

The number of moles of Ne(g) is 7.3×1010mol_ .

Explanation of Solution

Given

The number of atoms of Ne(g) is 4.4×1014 atoms.

Also, 1mol=6.022×1023atoms .

The number of moles is calculated by using the formula,

Numberofmoles=NNA

Where,

  • N is the number of atoms.
  • NA is the Avogadro’s number of atoms.

Substitute the value of N and NA in the above formula to calculate the number of moles.

NumberofmolesofNe(g)=4.4×1014atoms6.022×1023atoms/mol=7.3×1010mol_

Hence, the number of moles of Ne(g) is 7.3×1010mol_ .

(b)

Interpretation Introduction

To determine: The number of moles of the given gas in the sample.

(b)

Expert Solution
Check Mark

Answer to Problem 3.17QP

Solution

The number of moles of CH4(g) is 7.0×1011mol_ .

Explanation of Solution

Given

The number of molecules of CH4(g) is 4.2×1013 molecules.

Also, 1mol=6.022×1023molecules .

The number of moles is calculated by using the formula,

Numberofmoles=NNA

Where,

  • N is the number of atoms.
  • NA is the Avogadro’s number of atoms.

Substitute the value of N and NA in the above formula to calculate the number of moles.

NumberofmolesofCH4(g)=4.2×1013molecules6.022×1023molecules/mol=7.0×1011mol_

Hence, the number of moles of CH4(g) is 7.0×1011mol_ .

(c)

Interpretation Introduction

To determine: The number of moles of the given gas in the sample.

(c)

Expert Solution
Check Mark

Answer to Problem 3.17QP

Solution

The number of moles of O3(g) is 4.2×1012mol_ .

Explanation of Solution

Given

The number of molecules of O3(g) is 2.5×1012 molecules

Also, 1mol=6.022×1023molecules .

The number of moles is calculated by using the formula,

Numberofmoles=NNA

Where,

  • N is the number of atoms.
  • NA is the Avogadro’s number of atoms.

Substitute the value of N and NA in the above formula to calculate the number of moles.

NumberofmolesofO3(g)=2.5×1012molecules6.022×1023molecules/mol=4.2×1012mol_

Hence, the number of moles of O3(g) is 4.2×1012mol_ .

(d)

Interpretation Introduction

To determine: The number of moles of the given gas in the sample.

(d)

Expert Solution
Check Mark

Answer to Problem 3.17QP

Solution

The number of moles of NO2(g) is 8.1×1015mol_ .

Explanation of Solution

Given

The number of molecules of NO2(g) is 4.9×109 molecules

Also, 1mol=6.022×1023molecules

The number of moles is calculated by using the formula,

Numberofmoles=NNA

Where,

  • N is the number of atoms.
  • NA is the Avogadro’s number of atoms.

Substitute the value of N and NA in the above formula to calculate the number of moles.

NumberofmolesofNO2(g)=4.9×109molecules6.022×1023molecules/mol=8.1×1015mol_

Hence, the number of moles of NO2(g) is 8.1×1015mol_ .

Conclusion

  1. a. The number of moles of Ne(g) is 7.3×1010mol_ .
  2. b. The number of moles of CH4(g) is 7.0×1011mol_ .
  3. c. The number of moles of O3(g) is 4.2×1012mol_ .
  4. d. The number of moles of NO2(g) is 8.1×1015mol_

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Chapter 3 Solutions

Chemistry

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