Basic solution Potassium permanganate, KMnO4, is a powerful oxidizing agent. The products of a given redox reaction with the permanganate ion depend on the reaction conditions used. In basic solution, the following equation represents the reaction of this ion with a solution containing sodium sulfite: MnO, (aq) +80,² (aq)→MnO₂(s) + 80,² (aq) Since this reaction takes place in basic solution, H2O(1) and OH(aq) will be shown in the reaction. Places for these species are indicated by the blanks in the following restatement of the equation: MnO4 (aq) + SO2 (aq) +. →MnO2 (s) + SO2 (aq) +.

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MnO4−​(aq)+3SO32−​(aq)+H2​O(l)→MnO2​(s)+3SO42−​(aq)+3OH−(aq)

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Potassium permanganate, KMnO4, is a powerful oxidizing agent. The products of a given redox reaction with the permanganate ion depend on the reaction conditions used. In
basic solution, the following equation represents the reaction of this ion with a solution containing sodium sulfite:
MnO, (aq) +80,² (aq)→MnO₂(s) + 80,² (aq)
Since this reaction takes place in basic solution, H2O(1) and OH(aq) will be shown in the reaction. Places for these species are indicated by the blanks in the following
restatement of the equation:
MnO4 (aq) + SO2 (aq) +. →MnO2 (s) + SO2 (aq) +.
Transcribed Image Text:Basic solution Potassium permanganate, KMnO4, is a powerful oxidizing agent. The products of a given redox reaction with the permanganate ion depend on the reaction conditions used. In basic solution, the following equation represents the reaction of this ion with a solution containing sodium sulfite: MnO, (aq) +80,² (aq)→MnO₂(s) + 80,² (aq) Since this reaction takes place in basic solution, H2O(1) and OH(aq) will be shown in the reaction. Places for these species are indicated by the blanks in the following restatement of the equation: MnO4 (aq) + SO2 (aq) +. →MnO2 (s) + SO2 (aq) +.
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