11. The standard oxidation potential, E, of Cu(s) is –0.339 V. The oxidation product is the copper(II) Ox> ion. Write the equation for the standard reduction potential. What is the value of the standard reduction potential, Ejed ? a. Cu*"(aq) Cu(s) + 2e -0.339 V Ered Cu(s) = +0.339 V Ered b. Cu*"(aq) + 2e Cư"(aq) = -0.339 V c. Cu(s) + 2e red Cu*"(aq) E = +0.339 V d. Cu(s) + 2e° (red Cu(s) + 2e Cư"(aq) End = +0.339 V е.

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11. The standard oxidation potential, \( E^{\circ}_{\text{ox}} \), of Cu(s) is \(-0.339\) V. The oxidation product is the copper(II) ion. Write the equation for the standard reduction potential. What is the value of the standard reduction potential, \( E^{\circ}_{\text{red}} \)?

a. \( \text{Cu}^{2+}(\text{aq}) \rightarrow \text{Cu(s)} + 2e^- \) \hspace{2cm} \( E^{\circ}_{\text{red}} = -0.339 \, \text{V} \)

b. \( \text{Cu}^{2+}(\text{aq}) + 2e^- \rightarrow \text{Cu(s)} \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \)

c. \( \text{Cu(s)} + 2e^- \rightarrow \text{Cu}^{2+}(\text{aq}) \) \hspace{2cm} \( E^{\circ}_{\text{red}} = -0.339 \, \text{V} \)

d. \( \text{Cu(s)} \rightarrow \text{Cu}^{2+}(\text{aq}) + 2e^- \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \)

e. \( \text{Cu(s)} + 2e^- \rightarrow \text{Cu}^{2+}(\text{aq}) \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \)
Transcribed Image Text:**Transcription for Educational Website:** 11. The standard oxidation potential, \( E^{\circ}_{\text{ox}} \), of Cu(s) is \(-0.339\) V. The oxidation product is the copper(II) ion. Write the equation for the standard reduction potential. What is the value of the standard reduction potential, \( E^{\circ}_{\text{red}} \)? a. \( \text{Cu}^{2+}(\text{aq}) \rightarrow \text{Cu(s)} + 2e^- \) \hspace{2cm} \( E^{\circ}_{\text{red}} = -0.339 \, \text{V} \) b. \( \text{Cu}^{2+}(\text{aq}) + 2e^- \rightarrow \text{Cu(s)} \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \) c. \( \text{Cu(s)} + 2e^- \rightarrow \text{Cu}^{2+}(\text{aq}) \) \hspace{2cm} \( E^{\circ}_{\text{red}} = -0.339 \, \text{V} \) d. \( \text{Cu(s)} \rightarrow \text{Cu}^{2+}(\text{aq}) + 2e^- \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \) e. \( \text{Cu(s)} + 2e^- \rightarrow \text{Cu}^{2+}(\text{aq}) \) \hspace{2cm} \( E^{\circ}_{\text{red}} = +0.339 \, \text{V} \)
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