Chemistry: Principles and Practice
Chemistry: Principles and Practice
3rd Edition
ISBN: 9780534420123
Author: Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher: Cengage Learning
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Chapter 5, Problem 5.100QE

(a)

Interpretation Introduction

Interpretation:

Balanced chemical reaction for the decomposition of ammonium nitrate should be written.

(a)

Expert Solution
Check Mark

Explanation of Solution

In decomposition reaction, a single reactant undergoes reaction to form two or more products. Nitrogen gas, oxygen gas, and water vapor are the products obtained during the decomposition of ammonium nitrate.

Balanced chemical reaction for the decomposition of ammonium nitrate is given as:

  2 NH4NO3(s) 2 N2(g) + O2(g) + 4 H2O(g)

(b)

Interpretation Introduction

Interpretation:

Number of moles of gas are produced if 1.000 kg NH4NO3 is reacted should be calculated.

(b)

Expert Solution
Check Mark

Answer to Problem 5.100QE

43.72 mol of gas are produced if 1.000 kg NH4NO3 is reacted.

Explanation of Solution

Balanced chemical reaction for the decomposition of ammonium nitrate is given as:

  2 NH4NO3(s) 2 N2(g) + O2(g) + 4 H2O(g)

Number of moles in 1 kilogram of ammonium nitrate is determined as follows,

  n = MassMolar mass= 103 g80.04 g/mol= 12.49 mol

Two moles ammonium nitrate reacts to give two moles of nitrogen gas, one mole of oxygen gas and four moles of water vapor. Hence, seven moles of gas is formed.

Number of moles of nitrogen, oxygen and water vapor formed on the decomposition of 1.000 kg NH4NO3 is determined as follows,

  nN212.49 mol NH4NO3×2 mol N22 mol NH4NO3= 12.49 mol N2nO212.49 mol NH4NO3×1 mol O22 mol NH4NO3= 6.245 mol O2nH2O12.49 mol NH4NO3×4 mol H2O2 mol NH4NO3= 12.98 mol H2O

Number of moles of gas are produced if 1.000 kg NH4NO3 is reacted is calculated as follows,

  ngas = nN2+ nO2+ nH2O= 12.49 mol+6.245 mol +12.98 mol= 43.72 mol

Therefore, 43.72 mol of gas are produced if 1.000 kg NH4NO3 is reacted.

(c)

Interpretation Introduction

Interpretation:

Energy are released per pound of ammonium nitrate should be calculated.

Concept introduction:

Enthalpy(H): It is the total amount of heat in a particular system.

The value of standard enthalpy change ΔHο of the given reaction is calculated by the formula,

  ΔHrxn=npΔHfο(products)nrΔHfο(reactants)

Where,

ΔHfο is the standard enthalpies of formation.

n is the number of moles.

(c)

Expert Solution
Check Mark

Answer to Problem 5.100QE

Energy are released per pound of ammonium nitrate is 669kJ.

Explanation of Solution

Balanced chemical reaction for the decomposition of ammonium nitrate is given as:

  2 NH4NO3(s) 2 N2(g) + O2(g) + 4 H2O(g)

ΔHfo for ammonium nitrate is 87.37 kcal/mol.

Convert the unit of ΔHfo as follows,

  1 kcal = 4.184 kJΔHfo=87.37 kcal/mol 87.37 kcal/mol×4.184 kJ/mol1 kcal/mol=365.56 kJ/mol

Number of moles in 1 pound of ammonium nitrate is determined as follows,

  n = MassMolar mass= 543.6 g80.04 g/mol= 5.667 mol

Standard enthalpy of formation values is given below,

  ΔHfoof O2(g)=0kJ/molΔHfoof H2O(g)=241.82kJ/molΔHfoof N2(g)=0kJ/molΔHfoof NH4NO3(s)=365.56 kJ/mol

Change in enthalpy can be calculated by the equation:

  ΔHrxn=npΔHfο(products)nrΔHfο(reactants)

Substitute the values as follows,

  ΔHrxno=[(2 mol×0kJ/mol)+(1 mol×0kJ/mol)+(4 mol×241.82kJ/mol)] [(2 mol×365.56 kJ/mol)]=236.16kJ

ΔH° for the combustion of two moles of ammonium nitrate is 236.16kJ. Hence, ΔH° during the combustion of 5.667 mol ammonium nitrate is determined as follows,

  ΔH° = 5.667 mol×236.16kJ2 mol=669kJ

Therefore, the energy are released per pound of ammonium nitrate is 669kJ.

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Chapter 5 Solutions

Chemistry: Principles and Practice

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