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Identify the substances undergoing oxida...

Identify the substances undergoing oxidation and reduction in the following reactions.
`2NaOH+Cl toNaCl+NaClO+H_(2)O`

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AI Generated Solution

To identify the substances undergoing oxidation and reduction in the reaction \(2 \text{NaOH} + \text{Cl}_2 \rightarrow \text{NaCl} + \text{NaClO} + \text{H}_2\text{O}\), we can follow these steps: ### Step 1: Write down the oxidation states of each element in the reactants and products. 1. **Reactants:** - In \( \text{NaOH} \): - Sodium (Na) = +1 - Oxygen (O) = -2 ...
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ICSE-REDOX REACTIONS (OXIDATION AND REDUCTION)-VERY SHORT ANSWER TYPE QUESTIONS
  1. Define reduction in terms of oxidation number.

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  2. Identify the substances undergoing oxidation and reduction in the foll...

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  3. Identify the substances undergoing oxidation and reduction in the foll...

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  4. Is the process of neutralisation of a strong acid by a strong base a r...

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  5. Write the half equations for each of the following redox reactions. ...

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  6. Write the half equations for each of the following redox reactions. ...

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  7. Name the type of reaction that occurs at anode in an electrochemical c...

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  8. What is the direction of flow of electrons in a galvanic cell?

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  9. In what form does chemical energy get converted when the oxidising and...

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  10. Define oxidation and reduction potentials.

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  11. If E(Sn^(2+)//Sn)^(@)=-0.14V, what would be the value of E(Sn//Sn^(2+)...

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  12. Define standard electrode potential.

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  13. The standard reduction potential for silver electrode is +0.80 V. It i...

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  14. E(Li^(+)//Li)^(@)=-3.05V and E(Ca^(2+)//Ca)^(@)=-2.87V, state which is...

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  15. Among Na and Mg, which is more reactive and why?

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  16. Write the cell reaction for each of the following cells. Pt,H(2)(g)|...

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  17. Write the cell reaction for each of the following cells. Ni(s)|Ni^(2...

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  18. In which direction the cell reaction would proceed if the E.M.F. of a ...

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  19. Represent the cell corresponding to the following redox reaction and i...

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  20. Write the Nernst equation at 298 K for the electrode reaction 2H^(+)...

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