Calculate Ecell for an electrochemical cell at room temperature (298K) based on the two half-reactions given below when the reaction occurs in an acidic aqueous solution in which the pH is buffered at 5.700 and [BrO3-] = 0.880 M, [Cl-] = 0.200 M, PBr2= 1.00 atm, and PCl2= 0.260 atm. Use the smallest whole-number coefficients possible when balancing the overall reaction.

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Calculate Ecell for an electrochemical cell at room temperature (298K) based on the two half-reactions given below when the reaction occurs in an acidic aqueous solution in which the pH is buffered at 5.700 and [BrO3-] = 0.880 M, [Cl-] = 0.200 M, PBr2= 1.00 atm, and PCl2= 0.260 atm. Use the smallest whole-number coefficients possible when balancing the overall reaction.

Here are the standard electrode potentials for two redox reactions:

1. The reduction half-reaction involving bromate ions:
\[ \text{BrO}_3^- + 6\text{H}^+ + 5\text{e}^- \rightarrow \frac{1}{2}\text{Br}_2 + 3\text{H}_2\text{O} \]
\[ E^\circ = +1.52 \text{ V} \]

2. The reduction half-reaction involving chlorine:
\[ \text{Cl}_2 + 2\text{e}^- \rightarrow 2\text{Cl}^- \]
\[ E^\circ = +1.36 \text{ V} \]

These reactions illustrate the potentials at which these substances are reduced under standard conditions. Higher values of \( E^\circ \) indicate a greater tendency for the species to be reduced.
Transcribed Image Text:Here are the standard electrode potentials for two redox reactions: 1. The reduction half-reaction involving bromate ions: \[ \text{BrO}_3^- + 6\text{H}^+ + 5\text{e}^- \rightarrow \frac{1}{2}\text{Br}_2 + 3\text{H}_2\text{O} \] \[ E^\circ = +1.52 \text{ V} \] 2. The reduction half-reaction involving chlorine: \[ \text{Cl}_2 + 2\text{e}^- \rightarrow 2\text{Cl}^- \] \[ E^\circ = +1.36 \text{ V} \] These reactions illustrate the potentials at which these substances are reduced under standard conditions. Higher values of \( E^\circ \) indicate a greater tendency for the species to be reduced.
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