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Explain why halogens are strong oxidizin...

Explain why halogens are strong oxidizing agents.

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To explain why halogens are strong oxidizing agents, we can break down the reasoning into several key points: ### Step-by-Step Solution: 1. **Definition of Oxidizing Agents**: - An oxidizing agent is a substance that can accept electrons from another substance, thereby causing the other substance to be oxidized. In this process, the oxidizing agent itself gets reduced. 2. **Identification of Halogens**: ...
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Why are halogens strong oxidising agents ?

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The strong oxidising agent has :

CBSE COMPLEMENTARY MATERIAL-P-BLOCK ELEMENTS-VERY SHORT ANSWER TYPE QUESTIONS
  1. Explain why fluorine forms only one oxoacid, HOF.

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  2. Why HF is the weakest acid and HI is the strongest ?

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  3. Explain why halogens are strong oxidizing agents.

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  4. I(2) is more soluble in KI than in water. Why ?

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  5. What is cause of bleaching action of chlorine water ? Explain it with ...

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  6. Electron gain enthalpy of fluorine is less than that of chlorine - exp...

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  7. Why can’t we prepare HBr by heating KBr with sulphuric acid ?

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  8. Explain why : ICl is more reactive than I(2) ?

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  9. Which oxide of iodine is used for the estimation of carbon mono oxide ...

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  10. Arrange the following oxoacids of chlorine in increasing order of acid...

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  11. Why does fluorine not play the role of a central atom in interhalogen ...

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  12. Fluorine exhibit only – 1 oxidation state whereas other halogens exhib...

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  13. ClF(3) exists but FCl(3) does not. Why ?

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  14. Despite lower value of its electron gain enthalpy with negative sign, ...

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  15. ClF(3) molecule has a bent T-shaped structure and not a trigonal plana...

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  16. What happens when NaCl is heated with H(2)SO(4) in the presence of MnO...

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  17. With what neutral molecule ClO^(−) is isoelectronic ?

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  18. Why HF acid is stored in wax coated glass bottle ?

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  19. Bond dissociation enthalpy of F(2) is less than that of Cl(2). Explain...

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  20. What inspired N. Bartlett for carrying out reaction between Xe and PtF...

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