Physical Chemistry
Physical Chemistry
3rd Edition
ISBN: 9780321812001
Author: ENGEL, Thomas/ Reid
Publisher: Pearson College Div
Question
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Chapter 4, Problem 4.8NP

(a)

Interpretation Introduction

Interpretation:

The value of ΔHRo and ΔURo should be calculated for the following reaction by assuming ideal gas behavior.

  OH(g)H(g) + O(g)

Concept Introduction:

The mathematical expression for the standard enthalpy change value at room temperature is:

  ΔH°R=nH°(products)pH°(reactants)

Where, n and p represents the coefficients of reactants and products in the balanced chemical equation.

The mathematical expression for the standard enthalpy is:

According Hess’s law,

  ΔHo=ΔH1o+ΔH2o+ΔH3o

The mathematical expression for standard internal energy change is:

  ΔHo=ΔUo+ΔPV

  ΔUo=ΔHoΔnRT

(b)

Interpretation Introduction

Interpretation:

The value of ΔHRo and ΔURo should be calculated for the following reaction by considering ideal gas behavior.

  H2O(g)2H(g) + O(g)

Concept Introduction:

The mathematical expression for the standard enthalpy change value at room temperature is:

  ΔH°R=nH°(products)pH°(reactants)

Where, n and p represents the coefficients of reactants and products in the balanced chemical equation.

The mathematical expression for the standard enthalpy is:

According Hess’s law,

  ΔHo=ΔH1o+ΔH2o+ΔH3o

The mathematical expression for standard internal energy change is:

  ΔHo=ΔUo+ΔPV

  ΔUo=ΔHoΔnRT

(c)

Interpretation Introduction

Interpretation:

The value of ΔHRo and ΔURo should be calculated for the following reaction by considering ideal gas behavior.

  H2O(g)H(g) + OH(g)

Concept Introduction:

The mathematical expression for the standard enthalpy change value at room temperature is:

  ΔH°R=nH°(products)pH°(reactants)

Where, n and p represents the coefficients of reactants and products in the balanced chemical equation.

The mathematical expression for the standard enthalpy is:

According Hess’s law,

  ΔHo=ΔH1o+ΔH2o+ΔH3o

The mathematical expression for standard internal energy change is:

  ΔHo=ΔUo+ΔPV

  ΔUo=ΔHoΔnRT

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