General Chemistry
General Chemistry
11th Edition
ISBN: 9781305859142
Author: Ebbing, Darrell D., Gammon, Steven D.
Publisher: Cengage Learning,
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Chapter 18, Problem 18.104QP

(a)

Interpretation Introduction

Interpretation:

For the formation of H2O(g), the value of ΔHof,ΔSof,ΔGof have to be calculated and also the result obtained by the student has to be checked.

Concept introduction:

Standard free energy change:

Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.

ΔGo=ΔHo-TΔSowhere,ΔGo-standardfreeenergy changeΔHo-standardenthalpychangeΔSo-standardentropy changeand T-temperature.

(a)

Expert Solution
Check Mark

Answer to Problem 18.104QP

The value of standard enthalpy change of formation (ΔHof) of H2O(g) is -241.8kJ/mol.

Explanation of Solution

To calculate: The value of ΔHof

The value of standard enthalpy change of formation (ΔHof) of H2O(g) is -241.8kJ/mol.

(b)

Interpretation Introduction

Interpretation:

For the formation of H2O(g), the value of ΔHof,ΔSof,ΔGof have to be calculated and also the result obtained by the student has to be checked.

Concept introduction:

Standard free energy change:

Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.

ΔGo=ΔHo-TΔSowhere,ΔGo-standardfreeenergy changeΔHo-standardenthalpychangeΔSo-standardentropy changeand T-temperature.

(b)

Expert Solution
Check Mark

Answer to Problem 18.104QP

The value of standard entropy of formation of H2O(g) is 188.7J/molK.

Explanation of Solution

To calculate: The value of standard entropy of formation of H2O(g)

The value of standard entropy of formation of H2O(g) is 188.7J/molK.

(c)

Interpretation Introduction

Interpretation:

For the formation of H2O(g), the value of ΔHof,ΔSof,ΔGof have to be calculated and also the result obtained by the student has to be checked.

Concept introduction:

Standard free energy change:

Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.

ΔGo=ΔHo-TΔSowhere,ΔGo-standardfreeenergy changeΔHo-standardenthalpychangeΔSo-standardentropy changeand T-temperature.

(c)

Expert Solution
Check Mark

Answer to Problem 18.104QP

The calculated value of ΔGof for H2O(g) is the same as the value given in Appendix C.

Explanation of Solution

To compare: The calculated value of ΔGof for H2O(g) with the value given in Appendix C

Given reaction and information

H2(g)+1/2O2(g) H2O(g)ΔHof:00-241.8kJSo:130.61/2×205188.7J/KTemperature is 25 oC.

Calculate the change in enthalpy and entropy

ΔHo=ΔHfo[H2Og]=-241.8kJ.ΔSo=[(188.7)-(130.6)-(1/2×205)]J/K=-0.0444kJ/K

Calculate the value of ΔGfo

ΔGo=ΔHo-TΔSo=-241kJ-(298.15K)(-0.0444kJ/K)=(-241+13.2378)kJ=-228.5621kJ/mol=-228.6kJ/mol.

The calculated value of ΔGof for H2O(g) is the same as the value given in Appendix C

(d)

Interpretation Introduction

Interpretation:

For the formation of H2O(g), the value of ΔHof,ΔSof,ΔGof have to be calculated and also the result obtained by the student has to be checked.

Concept introduction:

Standard free energy change:

Standard free energy change is measured by subtracting the product of temperature and standard entropy change from the standard enthalpy change of a system.

ΔGo=ΔHo-TΔSowhere,ΔGo-standardfreeenergy changeΔHo-standardenthalpychangeΔSo-standardentropy changeand T-temperature.

(d)

Expert Solution
Check Mark

Answer to Problem 18.104QP

The result obtained by the student is not correct because the value of ΔSo is not equal to So for H2O(g).

Explanation of Solution

To check: The result obtained by the student

The correct equation is given by

ΔGfo=ΔHfo-TΔSo

The equation used by the student is given below

ΔGfo=ΔHfo-TSo

The result obtained by the student is not correct because the value of ΔSo is not equal to So for H2O(g).

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Chapter 18 Solutions

General Chemistry

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How is G related to H...Ch. 18 - What is meant by the standard free-energy change G...Ch. 18 - Prob. 18.9QPCh. 18 - Prob. 18.10QPCh. 18 - Prob. 18.11QPCh. 18 - Prob. 18.12QPCh. 18 - Prob. 18.13QPCh. 18 - Prob. 18.14QPCh. 18 - Prob. 18.15QPCh. 18 - Prob. 18.16QPCh. 18 - Prob. 18.17QPCh. 18 - You run a reaction that has a negative entropy...Ch. 18 - Prob. 18.19QPCh. 18 - Given the following information at 25C, calculate...Ch. 18 - Prob. 18.21QPCh. 18 - Prob. 18.22QPCh. 18 - For each of the following statements, indicate...Ch. 18 - Which of the following are spontaneous processes?...Ch. 18 - Prob. 18.25QPCh. 18 - Predict the sign of the entropy change for each of...Ch. 18 - Hypothetical elements A(g) and B(g) are introduced...Ch. 18 - Prob. 18.28QPCh. 18 - Prob. 18.29QPCh. 18 - Describe how you would expect the spontaneity (G)...Ch. 18 - Chloroform, CHCl3, is a solvent and has been used...Ch. 18 - Diethyl ether (known simply as ether), (C2H5)2O,...Ch. 18 - The enthalpy change when liquid methanol. 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Fe2O3, to...Ch. 18 - Prob. 18.102QPCh. 18 - Prob. 18.103QPCh. 18 - Prob. 18.104QPCh. 18 - Prob. 18.105QPCh. 18 - Cobalt(II) chloride hexahydrate, CoCl26H2O, is a...Ch. 18 - Prob. 18.107QPCh. 18 - Hydrogen gas and iodine vapor react to produce...Ch. 18 - Silver carbonate, Ag2CO3, is a light yellow...Ch. 18 - Prob. 18.110QPCh. 18 - Adenosine triphosphate, ATP, is used as a...Ch. 18 - Prob. 18.112QPCh. 18 - Prob. 18.113QPCh. 18 - Prob. 18.114QPCh. 18 - Sodium acetate crystallizes from a supersaturated...Ch. 18 - According to a source, lithium peroxide (Li2O2)...Ch. 18 - Tetrachloromethane (carbon tetrachloride), CCl4,...Ch. 18 - Prob. 18.118QPCh. 18 - Prob. 18.119QPCh. 18 - Prob. 18.120QPCh. 18 - Prob. 18.121QPCh. 18 - Coal is used as a fuel in some electric-generating...Ch. 18 - Hydrogen bromide dissociates into its gaseous...Ch. 18 - Hydrogen gas and iodine gas react to form hydrogen...Ch. 18 - Prob. 18.125QPCh. 18 - Prob. 18.126QPCh. 18 - Ka for acetic acid at 25.0C is 1754 105. 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