Chemistry
Chemistry
4th Edition
ISBN: 9780078021527
Author: Julia Burdge
Publisher: McGraw-Hill Education
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Chapter 19, Problem 15QP

Predict whether the following reactions would occur spontaneously in aqueous solution at  25°C . Assume that the initial concentrations of dissolved species are all 1.0 M.

(a) Ca( s )+Cd 2+ ( a q ) Ca 2 + ( a q ) + C d ( s ) ( b ) 2 B r ( a q ) + Sn 2 + ( a q ) Br 2 ( l ) + Sn ( s ) ( c ) 2 A g ( s ) + N i 2 + ( a q ) 2 Ag + ( a q ) + Ni ( s ) ( d ) C u + ( a q ) + F e 2 + ( a q ) Cu 2 + ( a q ) + Fe 2+ ( a q )

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Interpretation Introduction

Interpretation:

Whether the given reaction would occur spontaneously in an aqueous solution or not is to be determined.

Concept introduction:

Electrolysis is the process in which the reaction takes place at electrodes. The electrode that is positivelyharged is called anode. The electrode that is negativelycharged is called cathode. During electrolysis, reduction takes place at the cathode and oxidation takes place at the anode.

Oxidation is the addition of an electronegative element or the removal of an electropositive element, in a chemical reaction.

Reduction is the addition of an electropositive element or the removal of an electronegative element, in a chemical reaction.

A galvanic cell is made up of two halfcells, cathodic and anodic. This cell converts chemical energy into electrical energy.

An atom with a high value of standard reduction potential is a good oxidizing agent. An atom with a low value of standard reduction potential is a good reducing agent.

According to the standard reduction potential values, the electrode that has less negative reduction potential will act as a cathode and will undergo reduction. However, if the reduction potential of the electrode is more negative, that electrode will act as an anode and will undergo oxidation.

The standard cell potential can be calculated by the expression as: Ecello= ECathodeo EAnodeo

If the Ecello value of the reaction is positive, the reaction is spontaneous.

If the Ecello value of the reaction is negative, the reaction is not spontaneous.

Answer to Problem 15QP

Solution:

(a)

The reaction is spontaneous.

(b)

The reaction is not spontaneous.

(c)

The reaction is not spontaneous.

(d)

The reaction is spontaneous.

Explanation of Solution

a) Ca(s)+Cd2+(aq)Ca2+(aq)+Cd(s)

For a spontaneous reaction, the Ecell value of the reaction should be positive.

Ca(s)+Cd2+(aq)Ca2+(aq)+Cd(s)

Consider that the galvanic cell is made up of Cd half-cell and Ca half-cell.

The cell diagram is as follows:

Ca(s)|Ca2+anode(1 M)|| salt bridgeCd2+(1M)|Cucathode(s)

The two half cells and their standard reduction potentials are as follows:

Cd2++2eCd(s)    ECd2+/Cd=0.40

Ca2++ 2eCa(s)     ECa2+/Ca=2.87

The standard cell potential is calculated by using the expression given below.

EcelloEcathodeoEanodeo

Substitute the values of Ecathodeo and Eanodeo,

Ecello=0.40 V(2.87 V)=2.47 V

The standard cell potential is 2.47 V.

As the Ecello value of the reaction is positive, the reaction is spontaneous.

b) 2Br(aq)+Sn2+(aq)Br2(l)+Sn(s)

For a spontaneous reaction, the Ecell value of the reaction should be positive.

2Br(aq)+Sn2+(aq)Br2(l)+Sn(s)

Consider that the galvanic cell is made up of Br half-cells and Sn half-cells.

The cell diagram is as follows:

Br(1 M)|Br2anode(l)|| salt bridgeSn2+(1 M)|Sncathode(s)

The two half cells and their standard reduction potentials are as follows:

Br2(l)+2e2Br(aq)    EBr2/Br=+1.07

Sn2+(aq)+ 2eSn(s)    ESn2+/Sn=0.14

The standard cell potential is calculated by using theexpression given below:

EcelloEcathodeoEanodeo

Substitute the values of Ecathodeo and Eanodeo,

Ecello=0.14 V1.07 V=1.21 V

The standard cell potential is 1.21 V.

As the Ecello value of the reaction is negative, the reaction is not spontaneous.

c) 2Ag(s)+Ni2+(aq)2Ag+(aq)+Ni(s)

For a spontaneous reaction, the Ecell value of the reaction should be positive.

2Ag(s)+Ni2+(aq)2Ag+(aq)+Ni(s).

Consider that the galvanic cell is made up of Ag half-cells and Ni half-cells.

The cell diagram is as follows:

Ag(s)|Ag+anode(1 M)|| salt bridgeNi2+(1 M)|Nicathode(s)

The two half cells and their standard reduction potentials are as follows:

Ni2+(aq)+2eNi(s)    ENi2+/Ni=0.25

Ag+(aq)+ eAg(s)    EAg+/Ag=+0.80

The standard cell potential is calculated by using the expression given below.

EcelloEcathodeoEanodeo

Substitute the values of Ecathodeo and Eanodeo,

Ecello=0.25 V0.80 V=1.05 V

The standard cell potential is 1.05 V.

As the Ecello value of the reaction is negative, the reaction is not spontaneous.

d) Cu+(aq)+Fe3+(aq)Cu2+(aq)+Fe2+(aq)

For a spontaneous reaction, the Ecell value of the reaction should be positive.

Cu+(aq)+Fe3+(aq)Cu2+(aq)+Fe2+(aq)

Consider that the galvanic cell is made up of Cu half-cell and Fe half-cell.

The cell diagram is as follows:

Cu+(aq)|Cu2+anode(aq)|| salt bridgeFe3+(aq)|Fe2+cathode(aq)

The two half cells and their standard reduction potentials are as follows:

Fe3+(aq)+eFe+(aq)    EFe3+/Fe2+=0.77

Cu2+(aq)+ eCu+(aq)    ECu2+/Cu+=+0.15

The standard cell potential is calculated by using the expression given below.

EcelloEcathodeoEanodeo

Substitute the values of Ecathodeo and Eanodeo,

Ecello=0.77 V0.15 V=0.62 V

The standard cell potential is 0.62 V.

As the Ecello value of the reaction is positive, the reaction is spontaneous.

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Chapter 19 Solutions

Chemistry

Ch. 19.3 - Practice ProblemCONCEPTUALIZE A piece of nickel...Ch. 19.3 - Calculate E cell o at 25°C for a galvanic cell...Ch. 19.3 - 19.3.2 Calculate at for a galvanic cell made of a...Ch. 19.3 - 19.3.3 What redox reaction, if any. will occur at ...Ch. 19.3 - What redox reaction, if any. will occur at 25°C...Ch. 19.4 - Practice Problem ATTEMPT Calculate for the...Ch. 19.4 - Practice ProblemBUILD The hydrazinium ion, N 2 H 5...Ch. 19.4 - Practice Problem CONCEPTUALIZE Which of the...Ch. 19.4 - Calculate K at 25°C for the following reaction: Fe...Ch. 19.4 - 19.4.2 Calculate for the following reaction: Ch. 19.5 - Practice ProblemATTEMPT Calculate the equilibrium...Ch. 19.5 - Practice Problem BUILD Like equilibrium constants....Ch. 19.5 - Practice ProblemCONCEPTUALIZE Which of the...Ch. 19.5 - Calculate E at 25°C for a galvanic cell based on...Ch. 19.5 - 19.5.2 Calculate the cell potential at of a...Ch. 19.5 - 19.5.3 Calculate for a galvanic cell based on the...Ch. 19.5 - 19.5.4 Which of these would cause an increase in...Ch. 19.5 - 19.5.5 Determine the initial value of under the...Ch. 19.5 - Which of the following would cause a decrease in...Ch. 19.6 - Practice ProblemATTEMPT Will the following...Ch. 19.6 - Prob. 1PPBCh. 19.6 - Prob. 1PPCCh. 19.7 - Prob. 1PPACh. 19.7 - Prob. 1PPBCh. 19.7 - Practice Problem CONCEPTUALIZE When the circuit in...Ch. 19.7 - 19.7.1 In the electrolysis of molten , a current...Ch. 19.7 - 19.7.2 How long will a current of 0.995 A need to...Ch. 19.7 - The diagram shows an electrolytic cell being...Ch. 19.8 - Practice Problem ATTEMPT A constant current of...Ch. 19.8 - Practice Problem BUILD A constant current is...Ch. 19.8 - Practice ProblemCONCEPTUALIZE The diagram on the...Ch. 19 - How much copper metal can be produced by...Ch. 19 - What mass of cadmium will be produced by...Ch. 19 - Of the following aqueous solutions, identify the...Ch. 19 - 19.4 When a current of 5.22 A is applied over 3.50...Ch. 19 - Balance the following redox equations by the...Ch. 19 - Balance the following redox equations by the...Ch. 19 - Define the following terms: anode, cathode, cell...Ch. 19 - 19.4 Describe the basic features of a galvanic...Ch. 19 - 19.5 What is the function of a salt bridge? What...Ch. 19 - What is a cell diagram? Write the cell diagram for...Ch. 19 - What is the difference between the half-reactions...Ch. 19 - Discuss the spontaneity of an electrochemical...Ch. 19 - After operating a Daniell cell (see Figure 19.1)...Ch. 19 - 19.10 Calculate the standard emf of a cell that...Ch. 19 - Calculate the standard emf of a cell that uses...Ch. 19 - Predict whether Fe 3+ can oxidize I - to I 2 under...Ch. 19 - 19.13 Which of the following reagents can oxidize ...Ch. 19 - 19.14 Consider the following...Ch. 19 - Predict whether the following reactions would...Ch. 19 - 19.16 Which species in each pair is a better...Ch. 19 - Which species in each pair is a better reducing...Ch. 19 - 19.18 Use the information in Table 2.1, and...Ch. 19 - Write the equations relating Δ G ° and K to the...Ch. 19 - Prob. 20QPCh. 19 - What is the equilibrium constant for the following...Ch. 19 - 19.22 The equilibrium constant for the...Ch. 19 - Use the standard reduction potentials to find the...Ch. 19 - Calculate △ G ° and K c for the following...Ch. 19 - Under standard-state conditions, what spontaneous...Ch. 19 - Given that E ° = 0.52 V for the reduction Cu + ( a...Ch. 19 - Write the Nernst equation, and explain all the...Ch. 19 - Write the Nernst equation for the following...Ch. 19 - What is the potential of a cell made up of Zn/Zn...Ch. 19 - 19.30 Calculate for the following cell...Ch. 19 - 19.31 Calculate the standard potential of the cell...Ch. 19 - 19.32 What is the emf of a cell consisting of a ...Ch. 19 - 19.33 Referring to the arrangement in Figure 19.1,...Ch. 19 - Calculate the emf of the following concentration...Ch. 19 - 19.35 What is a battery? 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The tarnish can...Ch. 19 - Prob. 62QPCh. 19 - For each of the following redox reactions, (i)...Ch. 19 - The oxidation of 25.0 mL of a solution containing...Ch. 19 - Prob. 65APCh. 19 - Prob. 66APCh. 19 - 19.67 The concentration of a hydrogen peroxide...Ch. 19 - Equations 18.10 and 19.3 to calculate the emf...Ch. 19 - Based on the following standard reduction...Ch. 19 - Complete the following table. 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