CHEMISTRY (CUSTOM F/CHE 111/112)
CHEMISTRY (CUSTOM F/CHE 111/112)
3rd Edition
ISBN: 9781264063802
Author: Burdge
Publisher: MCG
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Chapter 15, Problem 19QP

Write the equilibrium constant expressions for K c  and for  K p p, if applicable, for the following reactions:

(a) 2NO 2 ( g )+7H 2 ( g ) 2NH 3 ( g ) + 4 H 2 O ( l ) ( b ) 2ZnS ( s ) + 3 O 2 ( g ) 2ZnO ( s ) + 2SO 2 ( g ) ( c ) C ( s ) + C O 2 ( g ) 2CO ( g ) ( d ) C 6 H 5 C O O H ( a q ) C 6 H 5 COO ( a q ) + H + ( a q )

Expert Solution & Answer
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Interpretation Introduction

Interpretation:

The equilibrium constant expressions for Kc and Kp in each reaction are to be determined.

Concept introduction:

The chemical equilibrium is a state of a chemical reaction when the rate of forward reaction becomes equal to the rate of reverse reaction and the concentration of the products and reactants becomes constant known as equilibrium concentrations.

According to Dalton’s law, the total pressure of the mixture of nonreactive gases is equal to the partial pressure of individual gases. The pressure utilized by the individual gas is called the partial pressure of that gas.

Equilibrium constant is the ratio of the concentration of reactants and products present in the chemical reaction.

For a general reaction: aA+bBcC+dD

The general formula for writing equilibrium expression for the reaction is given as:

KC=[C]ceqm[D]deqm[A]aeqm[B]beqm

Here, KC is the equilibrium constant and C in KC stands for the concentration. [A], [B], [C], and [D] are the equilibrium concentration of reactants A and B and product C and D, respectively.

A and B are reactants, C is products, and x,y, and z are their respective stoichiometric coefficients.

For the general reaction: aA+bBcC+dD

The general formula for writing equilibrium expression for the reaction is given as:

Kp=PCcPDdPAaPBb

Here, p in Kp stands for the pressure. PA,PB,PC,andPD are the equilibrium partial pressure of reactants A and B and products C and D, respectively.

A and B are reactants, C and D are products, and a,b,c, and d are their respective stoichiometric coefficients.

Equilibrium constants of gas phase reaction are written in terms of partial pressures because concentration of gases is directly proportional to partial pressures.

The relationship between KP and KC is given as:

KP=KC(RT)ΔnKc=KP(RT)Δn

Answer to Problem 19QP

Solution:

(a)

Kc=[NH3]2[NO2]2[H2]7

Kp=[PNH3]2[PNO2]2[PH2]7

(b)

Kc=[SO2]2[O2]3

Kp=[PSO2]2[PO2]3

(c)

Kc=[CO]2[CO2]

Kp=[PCO]2[PCO2]

(d)

Kc=[C6H5COO][H+][C6H5COOH]

The Kp expression for the reaction cannot be written as the equilibrium expression does not contain any gases.

Explanation of Solution

a) 2NO2(g)+7H2(g)2NH3(g)+4H2O(l)

The constant expression for the reaction that is applicable only for chemical reactants and products that are in the same section iscalled homogeneous equilibrium. Only gaseous or aqueous species are in equilibrium expression.

In the given reaction, only NO2,H2, and NH3 will appear in the equilibrium expression.

KC=[C]ceqm[D]deqm[A]aeqm[B]beqm

Kc=[NH3]2[NO2]2[H2]7

Here, Kc is the equilibrium constant, [NH3] is the concentration of ammonia, [NO2] is the concentration of NO2, and [H2] is the concentration of H2.

An equilibrium expression contains only gases. The concentration of gases is expressed as partial pressure. The Kp expression for the reaction is as follows:

Kp=PCcPDdPAaPBb

Kp=[PNH3]2[PNO2]2[PH2]7

Here, Kp is the equilibrium constant pressure, [PNH3] is the partial pressure of ammonia, [PNO2] is the partial pressure of NO2, and [PH2] is the partial pressure of H2.

b) 2ZnS(s)+3O2(g)2ZnO(s)+2SO2(g)

The equilibrium expression for the reaction is as follows:

KC=[C]ceqm[D]deqm[A]aeqm[B]beqm

Kc=[SO2]2[O2]3

Here, Kc is the equilibrium constant, [SO2] is the concentration of SO2, and [O2] is the concentration of O2.

The Kp expression for the reaction is as follows:

Kp=PCcPDdPAaPBb

Kp=[PSO2]2[PO2]3

Here, Kp is the equilibrium constant pressure, [PSO2] is the partial pressure of SO2, and [PO2] is the partial pressure of O2.

c) C(s)+CO2(g)2CO(g)

The equilibrium expression for the reaction is applicable for only CO and CO2.

The equilibrium expression for the reaction is as follows:

KC=[C]ceqm[D]deqm[A]aeqm[B]beqm

Kc=[CO]2[CO2]

Here, Kc is the equilibrium constant, [CO] is the concentration of CO, and [CO2] is the concentration of CO2.

The Kp expression for the reaction is as follows:

Kp=PCcPDdPAaPBb

Kp=[PCO]2[PCO2]

Here, Kp is the equilibrium constant pressure, [PCO] is the partial pressure of CO, and [PCO2] is the partial pressure of CO2.

d) C6H5COOH(aq)C6H5COO(aq)+H+(aq)

The equilibrium expression for the reaction is applicable for both reactants and products because both are in homogeneous equilibrium.

KC=[C]ceqm[D]deqm[A]aeqm[B]beqm

Kc=[C6H5COO][H+][C6H5COOH]

Here, Kc is the equilibrium constant, [C6H5COO],[H+] is the concentration of products, and [C6H5COOH] is the concentration of reactant.

The Kp expression for the reaction cannot be written as the equilibrium expression does not contain any gases.

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Chapter 15 Solutions

CHEMISTRY (CUSTOM F/CHE 111/112)

Ch. 15.3 - Prob. 1PPCCh. 15.3 - Prob. 1CPCh. 15.3 - Prob. 2CPCh. 15.3 - Given the following information: HF ( a q ) ⇄ H +...Ch. 15.3 - Prob. 4CPCh. 15.4 - Practice ProblemATTEMPT The following reactions...Ch. 15.4 - Practice Problem BUILD The equation represents a...Ch. 15.4 - Practice ProblemCONCEPTUALIZE Consider a chemical...Ch. 15.4 - Use the following information to answer questions...Ch. 15.4 - Prob. 2CPCh. 15.4 - 15.4.3 If for the reaction at a certain...Ch. 15.4 - If K c = 3 for the reaction X + 2Y ⇄ Z at a...Ch. 15.5 - Practice ProblemATTEMPT Write K? expressions for (...Ch. 15.5 - Prob. 1PPBCh. 15.5 - Prob. 1PPCCh. 15.5 - Prob. 1CPCh. 15.5 - Prob. 2CPCh. 15.5 - Prob. 3CPCh. 15.5 - Prob. 4CPCh. 15.5 - Prob. 5CPCh. 15.5 - Prob. 6CPCh. 15.6 - Practice Problem ATTEMPT For the reaction: ....Ch. 15.6 - Practice ProblemBUILD K p = 2.79 × 10 − 5 for the...Ch. 15.6 - Practice Problem CONCEPTUALIZE Consider the...Ch. 15.7 - Prob. 1PPACh. 15.7 - Prob. 1PPBCh. 15.7 - Prob. 1PPCCh. 15.8 - Practice ProblemATTEMPT Calculate the equilibrium...Ch. 15.8 - Practice ProblemBUILD Determine the initial...Ch. 15.8 - Practice Problem CONCEPTUALIZE Consider the...Ch. 15.9 - Prob. 1PPACh. 15.9 - Prob. 1PPBCh. 15.9 - Prob. 1PPCCh. 15.10 - Practice ProblemATTEMPT Aqueous hydrocyanic acid...Ch. 15.10 - Practice Problem BUILD Consider a weak acid, HA,...Ch. 15.10 - Practice ProblemCONCEPTUALIZE Each of the...Ch. 15.11 - Practice Problem ATTEMPT Determine the equilibrium...Ch. 15.11 - Prob. 1PPBCh. 15.11 - Prob. 1PPCCh. 15.12 - Practice ProblemATTEMPT For each change indicated,...Ch. 15.12 - Prob. 1PPBCh. 15.12 - Practice ProblemCONCEPTUALIZE Consider the...Ch. 15.13 - Practice Problem ATTEMPT For each reaction,...Ch. 15.13 - Practice Problem BUILD For the following...Ch. 15.13 - Practice Problem CONCEPTUALIZE Consider the...Ch. 15.14 - Practice Problem ATTEMPT The reaction of carbon...Ch. 15.14 - Practice Problem BUILD Consider the hypothetical...Ch. 15.14 - Practice Problem CONCEPTUALIZE The decomposition...Ch. 15 - The K a for hydrocyanic acid ( HCN ) is 4 .9 × 10...Ch. 15 - 15.2 Determine the concentrations of in a...Ch. 15 - 15.3 Determine the for a weak acid if a 0.10-M...Ch. 15 - Prob. 4KSPCh. 15 - Define equilibrium. 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How does it differ from...Ch. 15 - Write reaction quotients for the following...Ch. 15 - Write the equation for the reaction that...Ch. 15 - Consider the reaction: 2NO ( g ) + 2H 2 ( g ) ⇄ N...Ch. 15 - The equilibrium constant for the reaction: 2SO 2 (...Ch. 15 - Consider the following equilibrium process at...Ch. 15 - The equilibrium constant for the reaction: 2 H 2 (...Ch. 15 - The first diagram represents a system at...Ch. 15 - Prob. 14QPCh. 15 - Define homogeneous equilibrium and heterogeneous...Ch. 15 - What do the symbols K c and K p represent?Ch. 15 - Write the expressions for the equilibrium...Ch. 15 - Write equilibrium constant expressions for K c ,...Ch. 15 - Write the equilibrium constant expressions for K c...Ch. 15 - 15.20 Write the equation relating to , and define...Ch. 15 - 15.21 The equilibrium constant () for the...Ch. 15 - What is K p at 1273°C for the reaction 2CO ( g ) +...Ch. 15 - 15.23 The equilibrium constant for the...Ch. 15 - 15.24 Consider the reaction: If the equilibrium...Ch. 15 - 15.25 A reaction vessel contains at equilibrium...Ch. 15 - 15.26 The equilibrium constant Kc for the...Ch. 15 - At equilibrium, the pressure of the reacting...Ch. 15 - The equilibrium constant K p for the reaction: PCl...Ch. 15 - Ammonium carbamate ( NH 4 CO 2 NH 2 ) decomposes...Ch. 15 - The following equilibrium constants were...Ch. 15 - 15.31 At a certain temperature, the following...Ch. 15 - 15.32 Pure phosgene gas , was placed in a 1.50-L...Ch. 15 - Consider the equilibrium: 2 NOBr( g ) ⇄ 2 NO( g...Ch. 15 - The following equilibrium constants have been...Ch. 15 - 15.35 The following equilibrium constants have...Ch. 15 - 15.36 The equilibrium constant for the reaction at...Ch. 15 - The following diagrams represent the equilibrium...Ch. 15 - 15.38 Outline the steps for calculating the...Ch. 15 - 15.39 The equilibrium constant K? for the...Ch. 15 - 15.40 For the synthesis of ammonia: the...Ch. 15 - For the reaction: H 2 ( g ) + CO 2 ( g ) ⇄ H 2 O (...Ch. 15 - At 1000 K, a sample of pure NO, gas decomposes:...Ch. 15 - The equilibrium constant K c for the reaction H 2...Ch. 15 - The dissociation of molecular iodine into iodine...Ch. 15 - The equilibrium constant Kc for the decomposition...Ch. 15 - 15.46 Consider the following equilibrium process...Ch. 15 - 15.47 Consider the heterogeneous equilibrium...Ch. 15 - The equilibrium constant K c for the reaction: H 2...Ch. 15 - The aqueous reaction: L-glutamate + pyruvate ⇄...Ch. 15 - 15.50 Explain Le Châtelier’s principle. 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