Chemistry: Atoms First
Chemistry: Atoms First
3rd Edition
ISBN: 9781259923142
Author: Burdge
Publisher: MCG
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Chapter 10, Problem 10.131QP
Interpretation Introduction

Interpretation:

The standard enthalpies of formation of C2H2andC6H6 and change in enthalpy of formation of C6H6fromC2H2 have to be calculated.

Concept Introduction:

The change in enthalpy that is associated with the formation of one mole of a substance from its related elements being in standard state is called standard enthalpy of formation ( ΔHf° ).  The standard enthalpy of formation is used to determine the standard enthalpies of compound and element.

The standard enthalpy of reaction is the enthalpy of reaction that takes place under standard conditions.

 The equation for determining the standard enthalpies of compound and element can be given by,

ΔH°reaction=nΔH°f(products)-mΔH°f(reactants)

Expert Solution & Answer
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Answer to Problem 10.131QP

Standard enthalpy of formation of C2H2=226.6kJmol-1

Standard enthalpy of formation of C6H6=49.0kJmol-1

Change in enthalpy of formation of C6H6fromC2H2 = -630.8kJmol-1

Explanation of Solution

The chemical equations can be given,

C6H6(l)+152O2(g)6CO2(g)+3H2O(l)ΔH°=-3267.4kJmol-1C2H2(g)+52O2(g)2CO2(g)+H2O(l)ΔH°=-1299.4kJmol-1

Using the values of standard enthalpies of formation,

Standard enthalpy of formation of CO2 = -393.5kJmol-1

Standard enthalpy of formation of Water = -285.8kJmol-1

The equations can be given as,

C(Graphite)+O2CO2(g)ΔH°=-393.5kJmol-1H2(g)+12O2(g)H2O(l)ΔH°=-285.8kJmol-1

The equations are summed up to get the standard enthalpy of formation of C2H2

C(Graphite)+O2CO2(g)ΔH°=-393.5kJmol-1H2(g)+12O2(g)H2O(l)ΔH°=-285.8kJmol-1 C2H2(g)+52O2(g)2CO2(g)+H2O(l)ΔH°=-1299.4kJmol-1

2C(Graphite)+H2(g)C2H2(g)ΔH°=+226.6kJmol-1

Therefore, standard enthalpy of formation of C2H2 = 226.6kJmol-1

Similarly, the equations are summed up to get the standard enthalpy of formation of C6H6

C6H6(l)+152O2(g)6CO2(g)+3H2O(l)ΔH°=-3267.4kJmol-1

C(Graphite)+O2CO2(g)ΔH°=-393.5kJmol-1H2(g)+12O2(g)H2O(l)ΔH°=-285.8kJmol-1

6C(graphite)+3H2(g)C6H6(l)ΔH°=+49.0kJmol-1

To calculate the change in enthalpy of formation of C6H6fromC2H2

The equation can be given as,

3C2H2(g)C6H6(g)

ΔHreaction=(1)(49.0kJmol-1)-(3)(226.6kJmol-1)ΔHreaction=-630.8kJmol-1

Change in enthalpy of formation of C6H6fromC2H2 = -630.8kJmol-1

Conclusion

The change in enthalpy of formation of C6H6fromC2H2 was calculated using the values of Standard enthalpy of formation of products and reactants.  The standard enthalpy of formation of C6H6fromC2H2 was found to be -630.8kJmol-1 .

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Chapter 10 Solutions

Chemistry: Atoms First

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