The following standard reduction potentials have been determined for the aqueous chemistry of vanadium: v3+(aq) + ev²+(aq) v2+(aq) + 2eV(s) E°=-0.255 V E° -1.175 V Calculate the equilibrium constant (K) for the disproportionation of V2+(aq) at 25 °C. 3V2+(aq) V(s) + 2√3+(aq) K = Your answer cannot be understood or grac

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Chapter19: Electrochemistry
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Problem 19.71QP: What is the standard cell potential you would obtain from a cell at 25C using an electrode in which...
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The following standard reduction potentials have been determined for the aqueous chemistry of vanadium:
v3+(aq) + ev²+(aq)
v2+(aq) + 2eV(s)
E°=-0.255 V
E° -1.175 V
Calculate the equilibrium constant (K) for the disproportionation of V2+(aq) at 25 °C.
3V2+(aq) V(s) + 2√3+(aq)
K =
Your answer cannot be understood or grac
Transcribed Image Text:The following standard reduction potentials have been determined for the aqueous chemistry of vanadium: v3+(aq) + ev²+(aq) v2+(aq) + 2eV(s) E°=-0.255 V E° -1.175 V Calculate the equilibrium constant (K) for the disproportionation of V2+(aq) at 25 °C. 3V2+(aq) V(s) + 2√3+(aq) K = Your answer cannot be understood or grac
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