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In the following process of disproportio...

In the following process of disproportionation
`2CIO_(3)^(-)hArrCiO_(2)^(-)+CIO_(4)^(-)`
`E_(CIO_(4)^(-)//CIO_(3)^(-))^(@)=+0.36V,E_(CIO_(3)^(-)//CIO_(2)^(-))^(@)=+0.33V`
If initial concentration of chloride ion was 0.1M, calculate the equilibrium concentration of perchlorate ion.

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To solve the problem, we will follow these steps: ### Step 1: Write the half-reactions and their standard reduction potentials. The given half-reactions are: 1. \( \text{ClO}_3^{-} + 2e^{-} \rightarrow \text{ClO}_2^{-} \) with \( E^\circ = +0.33 \, \text{V} \) 2. \( \text{ClO}_4^{-} + 2e^{-} \rightarrow \text{ClO}_3^{-} \) with \( E^\circ = +0.36 \, \text{V} \) ...
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In the following process of disproportionation: underset(underset("ion")("Chlorate"))(2 ClO_(3)^(-))hArr underset(underset("ion")("Per chlorate"))(ClO_(4)^(-)) {:(E_(ClO_(4)^(-)//ClO_(3)^(-))^(@),= + 0.36 V),(E_(ClO_(3)^(-)//ClO_(2)^(-))^(@),= + 0.33 V):} Initial concentration of chlorate ion was 0.1 M. The equilibrium concentration of per chlorate ion will be :

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