SOLVED:The Colour Of Iodine Solution Is Discharged By Shaking It ...

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The colour of iodine solution is discharged by shaking it with aqueous solution of: (a) $\mathrm{H}_{2} \mathrm{SO}_{4}$ $\square$ (b) sodium sulphide $\square$ (c) sodium sulphate $\square$ (d) sodium thiosulphate $\square$ The colour of iodine solution is discharged by shaking it with aqueous solution of:(a) $\mathrm{H}_{2} \mathrm{SO}_{4}$$\square$ (b) sodium sulphide $\square$(c) sodium sulphate$\square$ (d) sodium thiosulphate $\square$ Inorganic Chemistry for Jee mains and Advanced Inorganic Chemistry for Jee mains and Advanced Dr OP Tandon 2000 Edition Chapter 6, Problem 13 ↓ View All Chapters

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Step 1: The color of iodine solution is due to the presence of iodine molecules. Show more…

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Thumb up icon Thumb down icon Submit Thanks for your feedback! Profile picture The colour of iodine solution is discharged by shaking it with aqueous solution of: (a) $\mathrm{H}_{2} \mathrm{SO}_{4}$ $\square$ (b) sodium sulphide $\square$ (c) sodium sulphate $\square$ (d) sodium thiosulphate $\square$ Close icon Play audio Feedback Upload button Send button Powered by NumerAI Danielle Fairburn Ivan Kochetkov Jennifer Stoner verified

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Key Concepts

- Iodometric Titration Iodometric titration is an analytical method that utilizes the redox reaction between iodine and a reducing agent, most commonly sodium thiosulfate. This technique is based on the quantitative reduction of iodine to iodide ions, allowing the determination of the concentration of oxidizing agents by measuring the amount of thiosulfate required to decolourize the iodine solution. Role of Sodium Thiosulfate as a Reducing Agent Sodium thiosulfate is widely used as a reducing agent due to its ability to donate electrons effectively, thereby reducing iodine (I2) to iodide (I?). This reaction is central to various chemical analyses and demonstrates how certain reagents can neutralize the colour of iodine solutions by chemically altering its oxidation state. Redox Reaction A redox reaction involves the transfer of electrons from one species to another, resulting in the change of oxidation states. In the context of iodine chemistry, iodine acts as an oxidizing agent by accepting electrons during its reaction, which is fundamental to understanding how its colour can be discharged or faded in the presence of a suitable reducing agent. *

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