As a first step in balancing redox reactions using lon-Electron Method, identify the oxidation and reduction half-reactions of the following reaction: Bi,O, + CIO → BiO, CI O Oxidation: Bi3* → Bi* ; Reduction: Cl CI Oxidation: Bi,0, –→ BiO, ; Reduction: Clo → Oxidation: CIO → Cl ; Reduction: Bi,0, - Bio, Oxidation: Cl* → Cl ; Reduction: Bi*3 → Bi*s Indium reacts with chlorine to form InCl,. In the balanced equation for this reaction, the coefficient of the indium trichloride is 1 2 3 4

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As a first step in balancing redox reactions
using lon-Electron Method, identify the
oxidation and reduction half-reactions of
the following reaction: Bi,O, + ClO → BiO, +
CI
Oxidation: Bi3+ → Bi* ; Reduction: Cl* → Cl
Oxidation: Bi¸O̟ →
BiO, ; Reduction: CIO →
Oxidation: CIO → Cl ; Reduction: Bi,0, -
Bio,
Oxidation: Cl→ Cl ; Reduction: Bi*3 → Bi+5
Indium reacts with chlorine to form InCl,. In
the balanced equation for this reaction, the
coefficient of the indium trichloride is
1
2
3
4
For the following redox reaction, what is the
sum of the balancing coefficients when
properly balanced using ion-electron
method (in acidic medium)?
O O
Transcribed Image Text:9:55 A docs.google.com As a first step in balancing redox reactions using lon-Electron Method, identify the oxidation and reduction half-reactions of the following reaction: Bi,O, + ClO → BiO, + CI Oxidation: Bi3+ → Bi* ; Reduction: Cl* → Cl Oxidation: Bi¸O̟ → BiO, ; Reduction: CIO → Oxidation: CIO → Cl ; Reduction: Bi,0, - Bio, Oxidation: Cl→ Cl ; Reduction: Bi*3 → Bi+5 Indium reacts with chlorine to form InCl,. In the balanced equation for this reaction, the coefficient of the indium trichloride is 1 2 3 4 For the following redox reaction, what is the sum of the balancing coefficients when properly balanced using ion-electron method (in acidic medium)? O O
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