it is an acid catalised reaction, commonly HCl.
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There is a dark blue colour when iodine is added to starch instead of a yellow sort of colour when iodine is added to a substance without starch.
in the lumen of the thyroid follicle
A reaction with alkyl halides in NaI with acetone is by the Sn2 mechanism. The rate for an Sn2 mechanism is directly proportional to the concentration of the nucleophile: rate = k[nucleophile][alkylhalide] If the iodine solution (the nucleophile) is half as concentrated, then the rate will also be halved. rate = k [nucleophile]/2 [alkyl halide]
iodine is used in girgnard's reaction bcz girgnard took this RX group and x indicates halogen group iodine is one of element of this group.
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Iodine
The displacement of chloride or bromide by and iodine ion in an acetone based solution will cause this type of reaction to happen in this experiment.
When iodine and cyclooctene are mixed, a reaction occurs between the two and the product that is formed is 1,2-diiodo cyclooctane.
The chemical reaction is:2 K + I2 = 2 KI
The arsenic iii ion is oxidised to arsenic V ion and iodine is reduced to iodide.
Magnesium iodine Mg+l2--->Mgl2. By Brianna .C. :)
There is a dark blue colour when iodine is added to starch instead of a yellow sort of colour when iodine is added to a substance without starch.
in the lumen of the thyroid follicle
The chlorine is reduced to chloride ions and the iodide {note correct spelling} are reduced to elemental iodine.
Yes, iodine (Iā) can react with potassium fluoride (KF). The reaction between iodine and potassium fluoride typically involves the displacement of fluorine in potassium fluoride by iodine. The balanced chemical equation for this reaction is: [I_2 + 2KF \rightarrow 2KI + F_2] In this reaction, iodine displaces fluorine in potassium fluoride, forming potassium iodide (KI) and elemental fluorine (Fā). It's worth noting that the reaction conditions, such as temperature and solvent, can influence the reaction kinetics and outcomes.
Any reaction occur between NaCl and and I2.