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In the electrolysis of aqueous KI with inert electrodes one half-equation is: $$2I^-(aq) \rightarrow I_2(aq) + 2e^-$$ Write a balanced half-equation for the reaction that takes place at the negative electrode during this electrolysis. - Leaving Cert Chemistry - Question i - 2019

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In-the-electrolysis-of-aqueous-KI-with-inert-electrodes-one-half-equation-is:--$$2I^-(aq)-\rightarrow-I_2(aq)-+-2e^-$$--Write-a-balanced-half-equation-for-the-reaction-that-takes-place-at-the-negative-electrode-during-this-electrolysis.-Leaving Cert Chemistry-Question i-2019.png

In the electrolysis of aqueous KI with inert electrodes one half-equation is: $$2I^-(aq) \rightarrow I_2(aq) + 2e^-$$ Write a balanced half-equation for the reacti... show full transcript

Worked Solution & Example Answer:In the electrolysis of aqueous KI with inert electrodes one half-equation is: $$2I^-(aq) \rightarrow I_2(aq) + 2e^-$$ Write a balanced half-equation for the reaction that takes place at the negative electrode during this electrolysis. - Leaving Cert Chemistry - Question i - 2019

Step 1

Write a balanced half-equation for the reaction at the negative electrode

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Answer

At the negative electrode (cathode), the reduction of water takes place. The balanced half-equation can be expressed as follows:

2H2O+2eH2(g)+2OH2H_2O + 2e^- \rightarrow H_2(g) + 2OH^-

In this reaction, water (H₂O) is reduced to hydrogen gas (H₂) and hydroxide ions (OH⁻). The electrons (e⁻) are consumed in the process of reduction.

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