Deck 18: Electrochemistry
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Deck 18: Electrochemistry
1
Identify the location of reduction in an electrochemical cell.
A)the anode
B)the cathode
C)the electrode
D)the salt bridge
E)the socket
A)the anode
B)the cathode
C)the electrode
D)the salt bridge
E)the socket
the cathode
2
What element is being oxidized in the following (unbalanced)redox reaction? H2O2(l)+ ClO2(aq)→ ClO2⁻(aq)+ O2(g)
A)H
B)O
C)Cl
D)N
E)C
A)H
B)O
C)Cl
D)N
E)C
O
3
Balance the following redox reaction if it occurs in basic solution. What are the coefficients in front of Br2 and OH⁻ in the balanced reaction? Br2(l)→ BrO3⁻(aq)+ Br⁻(aq)
A) Br2 = 1, OH⁻ = 2
B) Br2 = 2, OH⁻ = 5
C) Br2 = 3, OH⁻ = 3
D) Br2 = 3, OH⁻ = 6
E) Br2 = 1, OH⁻ = 6
A) Br2 = 1, OH⁻ = 2
B) Br2 = 2, OH⁻ = 5
C) Br2 = 3, OH⁻ = 3
D) Br2 = 3, OH⁻ = 6
E) Br2 = 1, OH⁻ = 6
Br2 = 3, OH⁻ = 6
4
What element is being reduced in the following (unbalanced)redox reaction? H2O2(l)+ ClO2(aq)→ ClO2⁻(aq)+ O2(g)
A)H
B)O
C)Cl
D)N
E)C
A)H
B)O
C)Cl
D)N
E)C
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5
What element is being reduced in the following (unbalanced)redox reaction? Cr(OH)4⁻(aq)+ ClO⁻(aq)→ CrO42-(aq)+ Cl⁻(aq)
A)Cr
B)O
C)H
D)Cl
A)Cr
B)O
C)H
D)Cl
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6
What element is being oxidized in the following (unbalanced)redox reaction? Cr(OH)4⁻(aq)+ ClO⁻(aq)→ CrO42-(aq)+ Cl⁻(aq)
A)Cr
B)O
C)H
D)Cl
A)Cr
B)O
C)H
D)Cl
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7
Balance the following redox reaction if it occurs in basic solution. What are the coefficients in front of Cr(OH)4⁻ and ClO⁻ in the balanced reaction? Cr(OH)4⁻(aq)+ ClO⁻(aq)→ CrO42-(aq)+ Cl⁻(aq)
A)Cr(OH)4⁻ = 2, ClO⁻ = 3
B)Cr(OH)4⁻ = 1, ClO⁻ = 1
C)Cr(OH)4⁻ = 1, ClO⁻ = 2
D)Cr(OH)4⁻ = 2, ClO⁻ = 6
E)Cr(OH)4⁻ = 6, ClO⁻ = 5
A)Cr(OH)4⁻ = 2, ClO⁻ = 3
B)Cr(OH)4⁻ = 1, ClO⁻ = 1
C)Cr(OH)4⁻ = 1, ClO⁻ = 2
D)Cr(OH)4⁻ = 2, ClO⁻ = 6
E)Cr(OH)4⁻ = 6, ClO⁻ = 5
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8
Balance the following redox reaction if it occurs in acidic solution. What are the coefficients in front of H2C2O4 and H2O in the balanced reaction? MnO4⁻ (aq)+ H2C2O4(aq)→ Mn2+(aq)+ CO2(g)
A)H2C2O4 = 5, H2O = 8
B)H2C2O4 = 1, H2O = 1
C)H2C2O4 = 5, H2O = 1
D)H2C2O4 = 1, H2O = 4
E)H2C2O4 = 3, H2O = 2
A)H2C2O4 = 5, H2O = 8
B)H2C2O4 = 1, H2O = 1
C)H2C2O4 = 5, H2O = 1
D)H2C2O4 = 1, H2O = 4
E)H2C2O4 = 3, H2O = 2
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9
Balance the following redox reaction if it occurs in acidic solution. What are the coefficients in front of H⁺ and Fe3+ in the balanced reaction? Fe2+(aq)+ MnO4⁻(aq)→ Fe3+(aq)+ Mn2+(aq)
A)H⁺ = 2, Fe3+ = 3
B)H⁺ = 8, Fe3+ = 5
C)H⁺ = 3, Fe3+ = 2
D)H⁺ = 5, Fe3+ = 1
E)H⁺ = 8, Fe3+ = 1
A)H⁺ = 2, Fe3+ = 3
B)H⁺ = 8, Fe3+ = 5
C)H⁺ = 3, Fe3+ = 2
D)H⁺ = 5, Fe3+ = 1
E)H⁺ = 8, Fe3+ = 1
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10
Balance the following redox reaction if it occurs in acidic solution. What are the coefficients in front of Cd and Ag+ in the balanced reaction? Cd(s)+ Ag+(aq)→ Ag(s)+ Cd2+(aq)
A)Cd = 1, Ag⁺ = 2
B)Cd = 1, Ag⁺ = 1
C)Cd = 2, Ag⁺ = 1
D)Cd = 2, Ag⁺ = 2
E)Cd = 3, Ag⁺ = 1
A)Cd = 1, Ag⁺ = 2
B)Cd = 1, Ag⁺ = 1
C)Cd = 2, Ag⁺ = 1
D)Cd = 2, Ag⁺ = 2
E)Cd = 3, Ag⁺ = 1
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11
What element is being oxidized in the following (unbalanced)redox reaction? Zn2+(aq)+ NH4+(aq)→ Zn(s)+ NO3⁻(aq)
A)Zn
B)N
C)H
D)O
A)Zn
B)N
C)H
D)O
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12
Balance the following redox reaction if it occurs in basic solution. What are the coefficients in front of ClO2 and H2O in the balanced reaction? H2O2(l)+ ClO2(aq)→ ClO2⁻(aq)+ O2(g)
A)ClO2 = 1, H2O = 1
B)ClO2 = 1, H2O = 2
C)ClO2 = 4, H2O = 3
D)ClO2 = 4, H2O = 2
E)ClO2 = 2, H2O = 2
A)ClO2 = 1, H2O = 1
B)ClO2 = 1, H2O = 2
C)ClO2 = 4, H2O = 3
D)ClO2 = 4, H2O = 2
E)ClO2 = 2, H2O = 2
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13
Which of the following statements is TRUE?
A)A reduction process corresponds to an increase in oxidation state as a result of loss of electrons.
B)An oxidation process involves the loss of electrons resulting in an increase in oxidation state.
C)An oxidation process corresponds to a decrease in oxidation state as a result of a gain of electrons.
D)During a reduction process electrons are lost, while during an oxidation they are gained.
E)During a reduction process an oxidation state increases, while in an oxidation process an oxidation state decreases.
A)A reduction process corresponds to an increase in oxidation state as a result of loss of electrons.
B)An oxidation process involves the loss of electrons resulting in an increase in oxidation state.
C)An oxidation process corresponds to a decrease in oxidation state as a result of a gain of electrons.
D)During a reduction process electrons are lost, while during an oxidation they are gained.
E)During a reduction process an oxidation state increases, while in an oxidation process an oxidation state decreases.
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14
Determine the redox reaction represented by the following cell notation: Mg(s)∣ Mg2+(aq)
Cu2+(aq)∣ Cu(s)
A)Cu(s)+ Mg2+(aq)→ Mg(s)+ Cu2+(aq)
B)Mg(s)+ Cu2+(aq)→ Cu(s)+ Mg2+(aq)
C)2Mg(s)+ Cu2+(aq)→ Cu(s)+ 2Mg2+(aq)
D)2Cu(s)+ Mg2+(aq)→ Mg(s)+ 2Cu2+(aq)
E)3Mg(s)+ 2Cu2+(aq)→ 2Cu(s)+ 3Mg2+(aq)
Cu2+(aq)∣ Cu(s)A)Cu(s)+ Mg2+(aq)→ Mg(s)+ Cu2+(aq)
B)Mg(s)+ Cu2+(aq)→ Cu(s)+ Mg2+(aq)
C)2Mg(s)+ Cu2+(aq)→ Cu(s)+ 2Mg2+(aq)
D)2Cu(s)+ Mg2+(aq)→ Mg(s)+ 2Cu2+(aq)
E)3Mg(s)+ 2Cu2+(aq)→ 2Cu(s)+ 3Mg2+(aq)
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15
Define a salt bridge.
A)A pathway, composed of salt water, that ions pass through.
B)A pathway in which no ions flow.
C)A pathway between the cathode and anode in which ions are reduced.
D)A pathway between the cathode and anode in which ions are oxidized.
E)A pathway through which counterions can flow between the half-cells without the solutions in the half-cell totally mixing.
A)A pathway, composed of salt water, that ions pass through.
B)A pathway in which no ions flow.
C)A pathway between the cathode and anode in which ions are reduced.
D)A pathway between the cathode and anode in which ions are oxidized.
E)A pathway through which counterions can flow between the half-cells without the solutions in the half-cell totally mixing.
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16
Balance the following redox reaction if it occurs in acidic solution. What are the coefficients in front of Zn and H+ in the balanced reaction? Zn2+(aq)+ NH4+(aq)→ Zn(s)+ NO3⁻(aq)
A)Zn = 1, H⁺ = 8
B)Zn = 1, H⁺ = 4
C)Zn = 4, H⁺ = 10
D)Zn = 2, H⁺ = 4
E)Zn = 3, H⁺ = 5
A)Zn = 1, H⁺ = 8
B)Zn = 1, H⁺ = 4
C)Zn = 4, H⁺ = 10
D)Zn = 2, H⁺ = 4
E)Zn = 3, H⁺ = 5
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17
Balance the following redox reaction if it occurs in basic solution. What are the coefficients in front of Al and F2 in the balanced reaction? Al(s)+ F2(g)→ Al3+(aq)+ F-(aq)
A)Al = 2, F2 = 3
B)Al = 2, F2 = 6
C)Al = 1, F2 = 1
D)Al = 2, F2 = 1
E)Al = 3, F2 = 2
A)Al = 2, F2 = 3
B)Al = 2, F2 = 6
C)Al = 1, F2 = 1
D)Al = 2, F2 = 1
E)Al = 3, F2 = 2
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18
What element is being reduced in the following (unbalanced)redox reaction? MnO4⁻ (aq)+ H2C2O4(aq)→ Mn2+(aq)+ CO2(g)
A)C
B)O
C)Mn
D)H
A)C
B)O
C)Mn
D)H
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19
Identify the location of oxidation in an electrochemical cell.
A)the anode
B)the cathode
C)the electrode
D)the salt bridge
E)the socket
A)the anode
B)the cathode
C)the electrode
D)the salt bridge
E)the socket
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20
What element is being oxidized in the following (unbalanced)redox reaction? MnO4⁻ (aq)+ H2C2O4(aq)→ Mn2+(aq)+ CO2(g)
A)C
B)O
C)Mn
D)H
A)C
B)O
C)Mn
D)H
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21
Which of the following is the weakest oxidizing agent?
A)Sn2+(aq)
B)Cr3+(aq)
C)Sn4+(aq)
D)Cr(s)
E)Sn(s)
A)Sn2+(aq)
B)Cr3+(aq)
C)Sn4+(aq)
D)Cr(s)
E)Sn(s)
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22
What is the reducing agent in the redox reaction represented by the following cell notation? Sn(s)∣ Sn2+(aq)
Ag+(aq)∣ Ag(s)
A)Sn(s)
B)Ag+(aq)
C)Sn2+(aq)
D)Ag(s)
E)Pt(s)
Ag+(aq)∣ Ag(s)A)Sn(s)
B)Ag+(aq)
C)Sn2+(aq)
D)Ag(s)
E)Pt(s)
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23
Which of the following is the strongest oxidizing agent?
A)Br2(l)
B)Au3+(aq)
C)Ag(s)
D)Br⁻(aq)
E)Au(s)
A)Br2(l)
B)Au3+(aq)
C)Ag(s)
D)Br⁻(aq)
E)Au(s)
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24
What is undergoing oxidation in the redox reaction represented by the following cell notation? Fe(s)∣ Fe3+(aq)
Cl2(g)∣ Cl⁻(aq)∣ Pt(s)
A)Fe(s)
B)Fe3+(aq)
C)Cl2(g)
D)Cl⁻(aq)
E)Pt(s)
Cl2(g)∣ Cl⁻(aq)∣ Pt(s)A)Fe(s)
B)Fe3+(aq)
C)Cl2(g)
D)Cl⁻(aq)
E)Pt(s)
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25
Which of the following is the weakest reducing agent?
A)Br2(l)
B)Au3+(aq)
C)Ag(s)
D)Br⁻(aq)
E)Au(s)
A)Br2(l)
B)Au3+(aq)
C)Ag(s)
D)Br⁻(aq)
E)Au(s)
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26
What is undergoing oxidation in the redox reaction represented by the following cell notation? Pb(s)∣ Pb2+(aq)
H+(aq)∣ H2(g)∣ Pt(s)
A)H2(g)
B)H+(aq)
C)Pb2+(aq)
D)Pb(s)
E)Pt(s)
H+(aq)∣ H2(g)∣ Pt(s)A)H2(g)
B)H+(aq)
C)Pb2+(aq)
D)Pb(s)
E)Pt(s)
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27
Which of the following is the strongest reducing agent?
A)Sn2+(aq)
B)Cr3+(aq)
C)Sn4+(aq)
D)Cr(s)
E)Sn(s)
A)Sn2+(aq)
B)Cr3+(aq)
C)Sn4+(aq)
D)Cr(s)
E)Sn(s)
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28
Which of the following is the weakest reducing agent?
A)Al(s)
B)Zn(s)
C)Mg(s)
D)Al3+(aq)
E)Mg2+(aq)
A)Al(s)
B)Zn(s)
C)Mg(s)
D)Al3+(aq)
E)Mg2+(aq)
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29
Which of the following is the strongest reducing agent?
A)Al(s)
B)Zn(s)
C)Mg(s)
D)Al3+(aq)
E)Mg2+(aq)
A)Al(s)
B)Zn(s)
C)Mg(s)
D)Al3+(aq)
E)Mg2+(aq)
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30
What is the reducing agent in the redox reaction represented by the following cell notation? Ni(s)∣ Ni2+(aq)
Ag+(aq)∣ Ag(s)
A)Ni(s)
B)Ni2+(aq)
C)Ag+(aq)
D)Ag(s)
E)Pt(s)
Ag+(aq)∣ Ag(s)A)Ni(s)
B)Ni2+(aq)
C)Ag+(aq)
D)Ag(s)
E)Pt(s)
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31
What is the oxidizing agent in the redox reaction represented by the following cell notation? Ni(s)∣ Ni2+(aq)
Ag+(aq)∣ Ag(s)
A)Ni(s)
B)Ni2+(aq)
C)Ag+(aq)
D)Ag(s)
E)Pt(s)
Ag+(aq)∣ Ag(s)A)Ni(s)
B)Ni2+(aq)
C)Ag+(aq)
D)Ag(s)
E)Pt(s)
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32
Which of the following is the strongest reducing agent?
A)Na(s)
B)Li+(aq)
C)Ca(s)
D)Ca2+(aq)
E)Li(s)
A)Na(s)
B)Li+(aq)
C)Ca(s)
D)Ca2+(aq)
E)Li(s)
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33
Determine the cell notation for the redox reaction given below: Sn(s)+ 2Ag⁺(aq)→ Sn2+(aq)+ 2Ag(s)
A)Ag+(aq)∣ Ag(s)
Sn(s)∣ Sn2+(aq)
B)Ag(s)∣ Ag+(aq)
Sn2+(aq)∣ Sn(s)
C)Sn(s)∣ Sn2+(aq)
Ag+(aq)∣ Ag(s)
D)Sn2+(aq)∣ Sn(s)
Ag(s)∣ Ag+(aq)
E)Sn(s)∣ Ag(s)
Sn2+(aq)∣ Ag+(aq)
A)Ag+(aq)∣ Ag(s)
Sn(s)∣ Sn2+(aq)B)Ag(s)∣ Ag+(aq)
Sn2+(aq)∣ Sn(s)C)Sn(s)∣ Sn2+(aq)
Ag+(aq)∣ Ag(s)D)Sn2+(aq)∣ Sn(s)
Ag(s)∣ Ag+(aq)E)Sn(s)∣ Ag(s)
Sn2+(aq)∣ Ag+(aq) Unlock Deck
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34
Determine the cell notation for the redox reaction given below: Pb(s)+ 2H⁺(aq)→ Pb2+(aq)+ H2(g)
A)H+(aq)∣ H2(g)∣ Pt(s)
Pb(s)∣ Pb2+(aq)
B)H2(g)∣ H+(aq)∣ Pt(s)
Pb2+(aq)∣ Pb(s)
C)Pb2+(aq)∣ Pb(s)
H2(g)∣ H+(aq)∣ Pt(s)
D)Pb(s)∣ Pb2+(aq)
H+(aq)∣ H2(g)∣ Pt(s)
E)Pb(s)∣ H2(g)
Pb2+(aq)∣ H+(aq)∣ Pt(s)
A)H+(aq)∣ H2(g)∣ Pt(s)
Pb(s)∣ Pb2+(aq)B)H2(g)∣ H+(aq)∣ Pt(s)
Pb2+(aq)∣ Pb(s)C)Pb2+(aq)∣ Pb(s)
H2(g)∣ H+(aq)∣ Pt(s)D)Pb(s)∣ Pb2+(aq)
H+(aq)∣ H2(g)∣ Pt(s)E)Pb(s)∣ H2(g)
Pb2+(aq)∣ H+(aq)∣ Pt(s) Unlock Deck
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35
What is undergoing reduction in the redox reaction represented by the following cell notation? Pb(s)∣ Pb2+(aq)
H+(aq)∣ H2(g)∣ Pt(s)
A)H2(g)
B)H+(aq)
C)Pb2+(aq)
D)Pb(s)
E)Pt(s)
H+(aq)∣ H2(g)∣ Pt(s)A)H2(g)
B)H+(aq)
C)Pb2+(aq)
D)Pb(s)
E)Pt(s)
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36
Which of the following is TRUE about standard electrode potentials?
A)E°cell is negative for spontaneous reactions.
B)Electrons will flow from a more positive electrode to a more negative electrode.
C)The electrode potential of the standard hydrogen electrode is exactly zero.
D)E°cell is the sum in voltage between the anode and the cathode.
E)The electrode in any half-cell with a greater tendency to undergo reduction is negatively charged relative to the standard hydrogen electrode and therefore has E° < 0.
A)E°cell is negative for spontaneous reactions.
B)Electrons will flow from a more positive electrode to a more negative electrode.
C)The electrode potential of the standard hydrogen electrode is exactly zero.
D)E°cell is the sum in voltage between the anode and the cathode.
E)The electrode in any half-cell with a greater tendency to undergo reduction is negatively charged relative to the standard hydrogen electrode and therefore has E° < 0.
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37
What is undergoing reduction in the redox reaction represented by the following cell notation? Fe(s)∣ Fe3+(aq)
Cl2(g)∣ Cl⁻(aq)∣ Pt(s)
A)Fe(s)
B)Fe3+(aq)
C)Cl2(g)
D)Cl⁻(aq)
E)Pt(s)
Cl2(g)∣ Cl⁻(aq)∣ Pt(s)A)Fe(s)
B)Fe3+(aq)
C)Cl2(g)
D)Cl⁻(aq)
E)Pt(s)
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38
What is the oxidizing agent in the redox reaction represented by the following cell notation? Sn(s)∣ Sn2+(aq)
Ag+(aq)∣ Ag(s)
A)Sn(s)
B)Ag+(aq)
C)Sn2+(aq)
D)Ag(s)
E)Pt(s)
Ag+(aq)∣ Ag(s)A)Sn(s)
B)Ag+(aq)
C)Sn2+(aq)
D)Ag(s)
E)Pt(s)
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39
Determine the cell notation for the redox reaction given below: 3Cl2(g)+ 2Fe(s)→ 6Cl⁻(aq)+ 2Fe3+(aq)
A)Cl2(g)∣ Cl⁻(aq)∣ Pt(s)
Fe(s)∣ Fe3+(aq)
B)Cl⁻(aq)∣ Cl2(g)∣ Pt(s)
Fe3+(aq) ∣ Fe(s)
C)Fe3+(aq)∣ Fe(s)
Cl⁻(aq)∣ Cl2(g)∣ Pt(s)
D)Fe(s)∣ Cl2(g)
Fe3+(aq)∣ Cl⁻(aq)∣ Pt(s)
E)Fe(s)∣ Fe3+(aq)
Cl2(g)∣ Cl⁻(aq)∣ Pt(s)
A)Cl2(g)∣ Cl⁻(aq)∣ Pt(s)
Fe(s)∣ Fe3+(aq)B)Cl⁻(aq)∣ Cl2(g)∣ Pt(s)
Fe3+(aq) ∣ Fe(s)C)Fe3+(aq)∣ Fe(s)
Cl⁻(aq)∣ Cl2(g)∣ Pt(s)D)Fe(s)∣ Cl2(g)
Fe3+(aq)∣ Cl⁻(aq)∣ Pt(s)E)Fe(s)∣ Fe3+(aq)
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40
Which of the following is the strongest oxidizing agent?
A)MnO2(s)
B)Cl⁻(aq)
C)Cu⁺(aq)
D)SO42-(aq)
E)MnO4⁻(aq)
A)MnO2(s)
B)Cl⁻(aq)
C)Cu⁺(aq)
D)SO42-(aq)
E)MnO4⁻(aq)
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41
How many electrons are transferred in the following reaction? (The reaction is unbalanced.) Fe2+(aq)+ K(s)→ Fe(s)+ K+(aq)
A)1
B)2
C)3
D)4
E)6
A)1
B)2
C)3
D)4
E)6
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42
Determine which of the following pairs of reactants will result in a spontaneous reaction at 25 °C.
A)I-(aq)+ Zn2+(aq); if Eo(I2/I-)= + 0.54V and Eo(Zn2+/Zn)= -0.76V
B)Ca(s)+ Mg2+(aq); if Eo(Ca2+/Ca)= -2.76V and Eo(Mg2+/Mg)= -2.37V
C)H2(g)+ Cd2+(aq); if Eo(Cd2+/Cd)= -0.40V
D)Ag(s)+ Sn2+(aq); if Eo(Ag+/Ag)= + 0.80V and Eo(Sn2+/Sn)= -0.14V
E)Ag+(aq)+ Mn2+(aq); if Eo(Ag+/Ag)= + 0.80V and Eo(MnO4-/Mn2+)= +1.51V
A)I-(aq)+ Zn2+(aq); if Eo(I2/I-)= + 0.54V and Eo(Zn2+/Zn)= -0.76V
B)Ca(s)+ Mg2+(aq); if Eo(Ca2+/Ca)= -2.76V and Eo(Mg2+/Mg)= -2.37V
C)H2(g)+ Cd2+(aq); if Eo(Cd2+/Cd)= -0.40V
D)Ag(s)+ Sn2+(aq); if Eo(Ag+/Ag)= + 0.80V and Eo(Sn2+/Sn)= -0.14V
E)Ag+(aq)+ Mn2+(aq); if Eo(Ag+/Ag)= + 0.80V and Eo(MnO4-/Mn2+)= +1.51V
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43
Which of the following metals will dissolve in nitric acid but not hydrochloric acid?
A)Cd; Eo(Cd2+/Cd)= -0.40V
B)Cr; Eo(Cr3+/Cr)= -0.73V
C)Mn; Eo(Mn2+/Mn)= -1.18V
D)Ag; Eo(Ag+/Ag)= +0.80V
E)Al; Eo(Al3+/Al)= -1.66V
A)Cd; Eo(Cd2+/Cd)= -0.40V
B)Cr; Eo(Cr3+/Cr)= -0.73V
C)Mn; Eo(Mn2+/Mn)= -1.18V
D)Ag; Eo(Ag+/Ag)= +0.80V
E)Al; Eo(Al3+/Al)= -1.66V
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44
Which of the following reactions would have the smallest value of K at 298 K?
A)A + B → C; E°cell = +1.22 V
B)A + 2 B → C; E°cell = +0.98 V
C)A + B → 2 C; E°cell = -0.030 V
D)A + B → 3 C; E°cell = +0.15 V
E)A + B → C; E°cell = -0.015 V
A)A + B → C; E°cell = +1.22 V
B)A + 2 B → C; E°cell = +0.98 V
C)A + B → 2 C; E°cell = -0.030 V
D)A + B → 3 C; E°cell = +0.15 V
E)A + B → C; E°cell = -0.015 V
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45
If the standard reduction potential of Zn is -0.76 V, which of the following statements about a cell whose half-cells are Zn2+/Zn and SHE is correct?
A)SHE will be the cell's cathode, Zn(s)will be the cell's anode, and the measured cell potential will be 0.76 V.
B)SHE will be the cell's anode, Zn(s)will be the cell's cathode, and the measured cell potential will be 0.76 V.
C)SHE will be the cell's cathode, Zn(s)will be the cell's anode, and the measured cell potential will be -0.76 V.
D)SHE will be the cell's cathode, Zn2+(aq)will be the cell's anode, and the measured cell potential will be 0.76 V.
E)H+(aq)will be the cell's cathode, Zn2+(aq)will be the cell's anode, and the measured cell potential will be 0.76 V.
A)SHE will be the cell's cathode, Zn(s)will be the cell's anode, and the measured cell potential will be 0.76 V.
B)SHE will be the cell's anode, Zn(s)will be the cell's cathode, and the measured cell potential will be 0.76 V.
C)SHE will be the cell's cathode, Zn(s)will be the cell's anode, and the measured cell potential will be -0.76 V.
D)SHE will be the cell's cathode, Zn2+(aq)will be the cell's anode, and the measured cell potential will be 0.76 V.
E)H+(aq)will be the cell's cathode, Zn2+(aq)will be the cell's anode, and the measured cell potential will be 0.76 V.
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46
Identify the characteristics of a spontaneous reaction.
A)ΔrG° > 0
B)ΔE°cell < 0
C)K < 0
D)ΔE°cell > 0
E)K = 0
A)ΔrG° > 0
B)ΔE°cell < 0
C)K < 0
D)ΔE°cell > 0
E)K = 0
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47
Use the standard half-cell potentials listed below to calculate the standard cell potential for the following reaction occurring in an electrochemical cell at 25 °C. (The equation is balanced.) Mg(s)+ Cu2+(aq)→ Cu(s)+ Mg2+(aq)
Mg2+(aq)+ 2 e⁻ → Mg(s) E° = -2.38 V
Cu2+(aq)+ 2 e⁻ → Cu(s) E° = +0.34 V
A)+2.04 V
B)-2.04 V
C)+2.72 V
D)-1.36 V
E)+1.36 V
Mg2+(aq)+ 2 e⁻ → Mg(s) E° = -2.38 V
Cu2+(aq)+ 2 e⁻ → Cu(s) E° = +0.34 V
A)+2.04 V
B)-2.04 V
C)+2.72 V
D)-1.36 V
E)+1.36 V
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48
Which of the following metals will dissolve in HCl?
A)Au; Eo(Au3+/Au)= -1.50V
B)Ag; Eo(Ag+/Ag)= +0.80V
C)Cu; Eo(Cu2+/Cu)= +0.34V
D)Al; Eo(Al3+/Al)= -1.66V
E)Pt; Eo(Pt2+/Pt)= +1.19V
A)Au; Eo(Au3+/Au)= -1.50V
B)Ag; Eo(Ag+/Ag)= +0.80V
C)Cu; Eo(Cu2+/Cu)= +0.34V
D)Al; Eo(Al3+/Al)= -1.66V
E)Pt; Eo(Pt2+/Pt)= +1.19V
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49
Use the standard half-cell potentials listed below to calculate the standard cell potential for the following reaction occurring in an electrochemical cell at 25 °C. (The equation is balanced.) 3Cl2(g)+ 2Fe(s)→ 6Cl⁻(aq)+ 2Fe3+(aq)
Cl2(g)+ 2 e⁻ → 2Cl⁻(aq)E° = +1.36 V
Fe3+(aq)+ 3 e⁻ → Fe(s)E° = -0.04 V
A)+4.16 V
B)-1.40 V
C)-1.32 V
D)+1.32 V
E)+1.40 V
Cl2(g)+ 2 e⁻ → 2Cl⁻(aq)E° = +1.36 V
Fe3+(aq)+ 3 e⁻ → Fe(s)E° = -0.04 V
A)+4.16 V
B)-1.40 V
C)-1.32 V
D)+1.32 V
E)+1.40 V
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50
How many electrons are transferred in the following reaction? (The reaction is unbalanced.) Mg(s)+ Al3+(aq)→ Al(s)+ Mg2+(aq)
A)6
B)2
C)3
D)1
E)4
A)6
B)2
C)3
D)1
E)4
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51
Which of the following statements is true for the cell diagram below? Zn(s)∣ Zn2+(aq)
Cu2+(aq)∣ Cu(s)
A)Zn is oxidized, Cu is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
B)Zn2+is oxidized, Cu is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
C)Zn is oxidized, Cu2+ is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
D)Zn is oxidized, Cu2+ is reduced; the single vertical lines represent salt bridges while the two vertical lines represent a phase boundary.
E)Zn is reduced, Cu2+ is oxidized; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
Cu2+(aq)∣ Cu(s)A)Zn is oxidized, Cu is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
B)Zn2+is oxidized, Cu is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
C)Zn is oxidized, Cu2+ is reduced; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
D)Zn is oxidized, Cu2+ is reduced; the single vertical lines represent salt bridges while the two vertical lines represent a phase boundary.
E)Zn is reduced, Cu2+ is oxidized; the single vertical lines represent phase boundaries while the two vertical lines represent a salt bridge.
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52
Which of the following metals will dissolve in nitric acid but not hydrochloric acid?
A)Fe; Eo(Fe2+/Fe)= -0.45V
B)Pb; Eo(Pb2+/Pb)= -0.13V
C)Cu; Eo(Cu2+/Cu)= +0.34V
D)Sn; Eo(Sn2+/Sn)= -0.14V
E)Ni; Eo(Ni2+/Ni)= -0.23V
A)Fe; Eo(Fe2+/Fe)= -0.45V
B)Pb; Eo(Pb2+/Pb)= -0.13V
C)Cu; Eo(Cu2+/Cu)= +0.34V
D)Sn; Eo(Sn2+/Sn)= -0.14V
E)Ni; Eo(Ni2+/Ni)= -0.23V
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53
How many electrons are transferred in the following reaction? (The reaction is unbalanced.) I2(s)+ Fe(s)→ Fe3+(aq)+ I⁻(aq)
A)1
B)2
C)6
D)3
E)4
A)1
B)2
C)6
D)3
E)4
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54
Determine which of the following pairs of reactants will result in a spontaneous reaction at 25 °C.
A)Sn4+(aq)+ Mg(s); if Eo(Sn4+/Sn2+)= +0.15V and Eo(Mg2+/Mg)= -2.37V
B)Cr3+(aq)+ Ni(s); if Eo(Cr3+/Cr)= -0.73V and Eo(Ni2+/Ni)= -0.23V
C)Zn(s)+ Na+(aq); if Eo(Zn2+/Zn)= -0.76V and Eo(Na+/Na)= -2.71V
D)Fe(s)+ Ba2+(aq); if Eo(Fe3+/Fe)= -0.04V and Eo(Ba2+/Ba)= -2.90V
E)Ni2+(aq)+ NO(g); if Eo(Ni2+/Ni)= -0.23V and Eo(NO3-/NO)= +0.96V
A)Sn4+(aq)+ Mg(s); if Eo(Sn4+/Sn2+)= +0.15V and Eo(Mg2+/Mg)= -2.37V
B)Cr3+(aq)+ Ni(s); if Eo(Cr3+/Cr)= -0.73V and Eo(Ni2+/Ni)= -0.23V
C)Zn(s)+ Na+(aq); if Eo(Zn2+/Zn)= -0.76V and Eo(Na+/Na)= -2.71V
D)Fe(s)+ Ba2+(aq); if Eo(Fe3+/Fe)= -0.04V and Eo(Ba2+/Ba)= -2.90V
E)Ni2+(aq)+ NO(g); if Eo(Ni2+/Ni)= -0.23V and Eo(NO3-/NO)= +0.96V
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55
Use the standard half-cell potentials listed below to calculate the standard cell potential for the following reaction occurring in an electrochemical cell at 25 °C. (The equation is balanced.) 2K(s)+ I2(s)→ 2K⁺(aq)+ 2I⁻(aq)
K+(aq)+ e⁻ → K (s) E° = -2.93 V
I2(s)+ 2 e⁻ → 2 I⁻(aq) E° = +0.54 V
A)+6.40 V
B)+1.85 V
C)-5.32 V
D)+3.47 V
E)+5.32 V
K+(aq)+ e⁻ → K (s) E° = -2.93 V
I2(s)+ 2 e⁻ → 2 I⁻(aq) E° = +0.54 V
A)+6.40 V
B)+1.85 V
C)-5.32 V
D)+3.47 V
E)+5.32 V
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56
Determine which of the following pairs of reactants will result in a spontaneous reaction at 25 °C.
A)Pb2+(aq)+ Cu(s); if Eo(Pb2+/Pb)= -0.13V and Eo(Cu2+/Cu)= +0.16V
B)Ag+(aq)+ Br⁻(aq); if Eo(Ag+/Ag)= 0.80V and Eo(Br2/Br-)= +1.09V
C)Li+(aq)+ Al(s); if Eo(Li+/Li)= -3.04V and Eo(Al3+/Al)= -1.66V
D)Fe3+(aq)+ Ni(s); if Eo(Fe3+/Fe)= -0.04V and Eo(Ni2+/Ni)= -0.23V
E)Cd2+(aq)+ I-(aq); if Eo(Cd2+/Cd)= -0.40V and Eo(I2/I-)= + 0.54V
A)Pb2+(aq)+ Cu(s); if Eo(Pb2+/Pb)= -0.13V and Eo(Cu2+/Cu)= +0.16V
B)Ag+(aq)+ Br⁻(aq); if Eo(Ag+/Ag)= 0.80V and Eo(Br2/Br-)= +1.09V
C)Li+(aq)+ Al(s); if Eo(Li+/Li)= -3.04V and Eo(Al3+/Al)= -1.66V
D)Fe3+(aq)+ Ni(s); if Eo(Fe3+/Fe)= -0.04V and Eo(Ni2+/Ni)= -0.23V
E)Cd2+(aq)+ I-(aq); if Eo(Cd2+/Cd)= -0.40V and Eo(I2/I-)= + 0.54V
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57
Which of the following is the weakest oxidizing agent?
A)H2O2(aq)
B)Fe3+(aq)
C)ClO2(g)
D)I2(s)
E)Fe(s)
A)H2O2(aq)
B)Fe3+(aq)
C)ClO2(g)
D)I2(s)
E)Fe(s)
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58
Which of the following is the strongest oxidizing agent?
A)H2O2(aq)
B)Fe3+(aq)
C)ClO2(g)
D)I2(s)
E)Fe(s)
A)H2O2(aq)
B)Fe3+(aq)
C)ClO2(g)
D)I2(s)
E)Fe(s)
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59
Use the standard half-cell potentials listed below to calculate the standard cell potential for the following reaction occurring in an electrochemical cell at 2 5°C. (The equation is balanced.) Pb(s)+ Br2(l)→ Pb2+(aq)+ 2 Br⁻(aq)
Pb2+(aq)+ 2 e⁻ → Pb(s) E° = -0.13 V
Br2(l)+ 2 e⁻ → 2 Br⁻(aq)E° = +1.07 V
A)+1.20 V
B)+0.94 V
C)-0.94 V
D)-1.20 V
E)-0.60 V
Pb2+(aq)+ 2 e⁻ → Pb(s) E° = -0.13 V
Br2(l)+ 2 e⁻ → 2 Br⁻(aq)E° = +1.07 V
A)+1.20 V
B)+0.94 V
C)-0.94 V
D)-1.20 V
E)-0.60 V
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60
Use the standard half-cell potentials listed below to calculate the standard cell potential for the following reaction occurring in an electrochemical cell at 25 °C. (The equation is balanced.) Sn(s)+ 2Ag⁺(aq)→ Sn2+(aq)+ 2Ag(s)
Sn2+(aq)+ 2 e⁻ → Sn(s) E° = -0.14 V
Ag⁺(aq)+ e⁻ → Ag(s) E° = +0.80 V
A)+1.74 V
B)+0.94 V
C)+1.08 V
D)-1.08 V
E)-1.74 V
Sn2+(aq)+ 2 e⁻ → Sn(s) E° = -0.14 V
Ag⁺(aq)+ e⁻ → Ag(s) E° = +0.80 V
A)+1.74 V
B)+0.94 V
C)+1.08 V
D)-1.08 V
E)-1.74 V
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61
Use the provided reduction potentials to calculate ΔrG° for the following balanced redox reaction: Pb2+(aq)+ Cu(s)→ Pb(s)+ Cu2+(aq)
E°(Pb2+/Pb)= -0.13 V and E°(Cu2+/Cu)= +0.34 V
A)-41 kJ mol-1
B)-0.47 kJ mol-1
C)+46 kJ mol-1
D)+91 kJ mol-1
E)-21 kJ mol-1
E°(Pb2+/Pb)= -0.13 V and E°(Cu2+/Cu)= +0.34 V
A)-41 kJ mol-1
B)-0.47 kJ mol-1
C)+46 kJ mol-1
D)+91 kJ mol-1
E)-21 kJ mol-1
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62
Identify the battery type that has a high overcharge tolerance.
A)NiCad battery
B)lithium-ion battery
C)nickel-metal hydride battery
D)lead-acid storage battery
E)zinc-manganese battery
A)NiCad battery
B)lithium-ion battery
C)nickel-metal hydride battery
D)lead-acid storage battery
E)zinc-manganese battery
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63
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °C:
Sn(s)∣ Sn2+(aq, 0.022 mol L-1)
Ag+(aq, 2.7 mol L-1)∣ Ag(s)
E°(Sn2+/Sn)= -0.14 V and E°(Ag+/Ag)= +0.80 V
A)+1.01 V
B)-0.83 V
C)+1.31 V
D)+0.01 V
E)-0.66 V
Sn(s)∣ Sn2+(aq, 0.022 mol L-1)
Ag+(aq, 2.7 mol L-1)∣ Ag(s)E°(Sn2+/Sn)= -0.14 V and E°(Ag+/Ag)= +0.80 V
A)+1.01 V
B)-0.83 V
C)+1.31 V
D)+0.01 V
E)-0.66 V
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64
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °C:
Mg(s)∣ Mg2+(aq, 2.74 mol L-1)
Cu2+(aq, 0.0033 mol L-1)∣ Cu(s)
E°(Mg2+/Mg)= -2.37 V and E°(Cu2+/Cu)= +0.34 V
A)-2.80 V
B)+2.62 V
C)+2.71 V
D)+2.12 V
E)-1.94 V
Mg(s)∣ Mg2+(aq, 2.74 mol L-1)
Cu2+(aq, 0.0033 mol L-1)∣ Cu(s)E°(Mg2+/Mg)= -2.37 V and E°(Cu2+/Cu)= +0.34 V
A)-2.80 V
B)+2.62 V
C)+2.71 V
D)+2.12 V
E)-1.94 V
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65
What is the reaction at the cathode in a breathalyzer?
A)Ethanol is oxidized to acetic acid.
B)Acetic acid is reduced to ethanol.
C)Oxygen is reduced.
D)Hydrogen is oxidized.
E)Ethanol is oxidized to acetaldehyde.
A)Ethanol is oxidized to acetic acid.
B)Acetic acid is reduced to ethanol.
C)Oxygen is reduced.
D)Hydrogen is oxidized.
E)Ethanol is oxidized to acetaldehyde.
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66
Use the provided reduction potentials to calculate the equilibrium constant (K)for the following balanced redox reaction at 25 °C: 2Al(s)+ 3Mg2+(aq)→ 2Al3+(aq)+ 3Mg(s)
E°(Al3+/Al)= -1.66 V and E°(Mg2+/Mg)= -2.37 V
A)1.1 × 1072
B)8.9 × 10-70
C)9.7 × 10-73
D)1.0 × 1024
E)4.6 × 1031
E°(Al3+/Al)= -1.66 V and E°(Mg2+/Mg)= -2.37 V
A)1.1 × 1072
B)8.9 × 10-70
C)9.7 × 10-73
D)1.0 × 1024
E)4.6 × 1031
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67
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °C:
Sn(s)∣ Sn2+(aq, 1.8 mol L-1)
Ag+(aq, 0.055 mol L-1)∣ Ag(s)
E°(Sn2+/Sn)= -0.14 V and E°(Ag+/Ag)= +0.80 V
A)-0.94 V
B)-0.85 V
C)+1.02 V
D)+0.98 V
E)+0.86 V
Sn(s)∣ Sn2+(aq, 1.8 mol L-1)
Ag+(aq, 0.055 mol L-1)∣ Ag(s)E°(Sn2+/Sn)= -0.14 V and E°(Ag+/Ag)= +0.80 V
A)-0.94 V
B)-0.85 V
C)+1.02 V
D)+0.98 V
E)+0.86 V
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68
Describe how water can be made to be a good conductor of electrical current.
A)use pure water
B)heat the water
C)add salt
D)chill the water
E)vaporize the water
A)use pure water
B)heat the water
C)add salt
D)chill the water
E)vaporize the water
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69
Identify the battery that is in most automobiles.
A)dry-cell battery
B)lithium-ion battery
C)lead-acid storage battery
D)NiCad battery
E)fuel cell
A)dry-cell battery
B)lithium-ion battery
C)lead-acid storage battery
D)NiCad battery
E)fuel cell
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70
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °C:
Al(s)∣ Al3+(aq, 0.115 mol L-1)
Al3+(aq, 3.89 mol L-1)∣ Al(s)
E°(Al3+/Al)= -1.66 V
A)+1.66 V
B)+0.060 V
C)0.00 V
D)+0.090 V
E)+0.030 V
Al(s)∣ Al3+(aq, 0.115 mol L-1)
Al3+(aq, 3.89 mol L-1)∣ Al(s)E°(Al3+/Al)= -1.66 V
A)+1.66 V
B)+0.060 V
C)0.00 V
D)+0.090 V
E)+0.030 V
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71
Identify the battery that is used as a common flashlight battery.
A)dry-cell battery
B)lithium-ion battery
C)lead-acid storage battery
D)NiCad battery
E)fuel cell
A)dry-cell battery
B)lithium-ion battery
C)lead-acid storage battery
D)NiCad battery
E)fuel cell
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72
Use the provided reduction potentials to calculate ΔrG° for the following balanced redox reaction: 3I2(s)+ 2Fe(s)→ 2Fe3+(aq)+ 6I⁻(aq)
E°(I2/I-)= + 0.54 V and E°(Fe3+/Fe)= -0.036 V
A)-1.1 × 102 kJ mol-1
B)+4.9 × 101 kJ mol-1
C)-9.7 × 101 kJ mol-1
D)+2.3 × 102 kJ mol-1
E)-3.3 × 102 kJ mol-1
E°(I2/I-)= + 0.54 V and E°(Fe3+/Fe)= -0.036 V
A)-1.1 × 102 kJ mol-1
B)+4.9 × 101 kJ mol-1
C)-9.7 × 101 kJ mol-1
D)+2.3 × 102 kJ mol-1
E)-3.3 × 102 kJ mol-1
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73
Use the tabulated half-cell potentials to calculate the equilibrium constant (K)for the following balanced redox reaction at 25 °C: 3I2(s)+ 2Fe(s)→ 2Fe3+(aq)+ 6I⁻(aq)
E°(I2/I-)= + 0.54 V and E°(Fe3+/Fe)= -0.036 V
A)3.5 × 10-59
B)1.1 × 1017
C)2.4 × 1058
D)8.9 × 10-18
E)1.7 × 1029
E°(I2/I-)= + 0.54 V and E°(Fe3+/Fe)= -0.036 V
A)3.5 × 10-59
B)1.1 × 1017
C)2.4 × 1058
D)8.9 × 10-18
E)1.7 × 1029
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74
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °:
Fe(s)∣ Fe3+(aq, 0.0011 mol L-1)
Fe3+(aq, 2.33 mol L-1)∣ Fe(s)
E°(Fe3+/Fe)= -0.036 V
A)+0.066 V
B)-0.036 V
C)0.00 V
D)-0.099 V
E)+0.20 V
Fe(s)∣ Fe3+(aq, 0.0011 mol L-1)
Fe3+(aq, 2.33 mol L-1)∣ Fe(s)E°(Fe3+/Fe)= -0.036 V
A)+0.066 V
B)-0.036 V
C)0.00 V
D)-0.099 V
E)+0.20 V
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75
Identify the components of a fuel cell.
A)nickel-metal hydride
B)lithium-ion
C)hydrogen-oxygen
D)nickel-cadmium
E)zinc-manganese
A)nickel-metal hydride
B)lithium-ion
C)hydrogen-oxygen
D)nickel-cadmium
E)zinc-manganese
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76
Which of the following reactions would be the most spontaneous at 298 K?
A)A + 2 B → C; E°cell = +0.98 V
B)A + B → 2 C; E°cell = -0.030 V
C)A + B → 3 C; E°cell = +0.15 V
D)A + B → C; E°cell = +1.22 V
E)A + B → C; E°cell = -1.22 V
A)A + 2 B → C; E°cell = +0.98 V
B)A + B → 2 C; E°cell = -0.030 V
C)A + B → 3 C; E°cell = +0.15 V
D)A + B → C; E°cell = +1.22 V
E)A + B → C; E°cell = -1.22 V
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77
Calculate the cell potential for the following reaction that takes place in an electrochemical cell at 25 °: Cu(s)∣ Cu2+(aq, 0.0032 mol L-1)
Cu2+(aq, 4.48 mol L-1)∣ Cu(s)
E°(Cu2+/Cu)= +0.34 V
A)0.00 V
B)+0.093 V
C)+0.34 V
D)+0.186 V
E)+0.052 V
Cu2+(aq, 4.48 mol L-1)∣ Cu(s)E°(Cu2+/Cu)= +0.34 V
A)0.00 V
B)+0.093 V
C)+0.34 V
D)+0.186 V
E)+0.052 V
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78
What is the reaction at the anode in a breathalyzer?
A)Ethanol is oxidized to acetic acid.
B)Acetic acid is reduced to ethanol.
C)Oxygen is reduced.
D)Hydrogen is oxidized.
E)Ethanol is oxidized to acetaldehyde.
A)Ethanol is oxidized to acetic acid.
B)Acetic acid is reduced to ethanol.
C)Oxygen is reduced.
D)Hydrogen is oxidized.
E)Ethanol is oxidized to acetaldehyde.
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79
Use the provided reduction potentials to calculate ΔrG° for the following redox reaction: 2Al(s)+ 3Mg2+(aq)→ 2Al3+(aq)+ 3Mg(s)
E°(Al3+/Al)= -1.66 V and E°(Mg2+/Mg)= -2.37 V
A)+4.1 × 102 kJ mol-1
B)+1.4 × 102 kJ mol-1
C)-2.3 × 102 kJ mol-1
D)-7.8 × 102 kJ mol-1
E)+6.8 × 102 kJ mol-1
E°(Al3+/Al)= -1.66 V and E°(Mg2+/Mg)= -2.37 V
A)+4.1 × 102 kJ mol-1
B)+1.4 × 102 kJ mol-1
C)-2.3 × 102 kJ mol-1
D)-7.8 × 102 kJ mol-1
E)+6.8 × 102 kJ mol-1
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80
Use the tabulated half-cell potentials to calculate the equilibrium constant (K)for the following balanced redox reaction at 25 °C: Pb2+(aq)+ Cu(s)→ Pb(s)+ Cu2+(aq)
E°(Pb2+/Pb)= -0.13 V and E°(Cu2+/Cu)= +0.34 V
A)7.9 × 10-8
B)8.9 × 107
C)7.9 × 1015
D)1.3 × 10-16
E)1.1 × 10-8
E°(Pb2+/Pb)= -0.13 V and E°(Cu2+/Cu)= +0.34 V
A)7.9 × 10-8
B)8.9 × 107
C)7.9 × 1015
D)1.3 × 10-16
E)1.1 × 10-8
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