in the lumen of the thyroid follicle
When iodine solution is added to CCl4 (carbon tetrachloride), the iodine molecules dissolve in the CCl4 solvent because they are nonpolar molecules. This results in a solution with a distinct purple color due to the presence of iodine. However, there is no chemical reaction between the iodine and CCl4 in this case.
Fluorine is more reactive than iodine, so fluorine can displace iodine in a chemical reaction to form a compound. This displacement reaction occurs because fluorine has a higher electronegativity and stronger oxidizing ability than iodine.
It is an easily reversible chemical reaction known as a redox reaction.The blue color is due to blue color is due to I2+ cation. The iodine has been oxidized by an oxidizing agent. It can be reduced back to I2 in the reverse reaction.
Well, isn't that an interesting question! When you mix vinegar and iodine, you might see a chemical reaction take place. The iodine may dissolve in the vinegar, creating a solution that has a different color and properties than the individual substances. It's always fun to explore and discover new things in the world of chemistry!
When hydrogen gas is added to iodine, a chemical reaction occurs that forms hydrogen iodide (HI) gas. The reaction is exothermic, meaning it releases heat energy. This reaction is represented by the chemical equation: H2 + I2 -> 2HI.
The chemical reaction is:2 K + I2 = 2 KI
The chemical equation for the reaction between calcium and iodine is: Ca + I2 -> CaI2.
The reaction between hydrogen peroxide and iodine produces oxygen gas and water. This reaction is a chemical reaction that involves the oxidation of iodide ions by hydrogen peroxide.
The reaction between ethanol and iodine does not result in a simple chemical reaction. Ethanol may act as a solvent in which iodine can dissolve, forming a solution. This solution may have a brown or reddish-brown color due to the interaction between iodine and ethanol.
When iodine solution is added to CCl4 (carbon tetrachloride), the iodine molecules dissolve in the CCl4 solvent because they are nonpolar molecules. This results in a solution with a distinct purple color due to the presence of iodine. However, there is no chemical reaction between the iodine and CCl4 in this case.
Yes, mass is conserved in a chemical reaction, including the reaction between zinc and iodine. This principle is known as the Law of Conservation of Mass, where the total mass of reactants is equal to the total mass of products formed.
The arsenic iii ion is oxidised to arsenic V ion and iodine is reduced to iodide.
The reaction between Lugol's solution (iodine) and starch forms a blue-black complex. Iodine molecules fit into the helical structure of starch molecules, producing this characteristic color change. This reaction is commonly used to test for the presence of starch in a solution.
The reaction between magnesium and iodine is a synthesis reaction, resulting in the formation of magnesium iodide. The balanced chemical equation for this reaction is: Mg + I2 → MgI2. In this reaction, magnesium atoms react with iodine molecules to produce magnesium iodide, a compound consisting of magnesium cations and iodide anions held together by ionic bonds. This reaction is a classic example of a metal reacting with a non-metal to form an ionic compound.
The chemical equation for magnesium iodide is MgI2. It is formed by the reaction between magnesium metal and iodine.
it has no strong chemical reaction
Salt (sodium chloride) and iodine do not create a chemical reaction when combined. They can be physically mixed together to form a mixture, but they do not undergo a chemical transformation.