Balanced equation.
Zn + I2 --> ZnI2
All is one to one, so it does not matter what is limiting and what drives this reaction. We will use zinc as the driver of convenience.
1 mole Zn (1 mole ZnI2/1 mole Zn)(319.21 grams/1 mole ZnI2)
= 319.21 grams zinc iodide produced
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When water, iodine crystals, and aluminum powder are combined, a reaction occurs in which hydrogen gas is evolved and a purple solution is formed due to the reaction of iodine with water. The aluminum powder reacts with water to produce aluminum hydroxide and hydrogen gas.
Yes, it is correct.
When chlorine gas reacts with zinc iodide, it forms zinc chloride and iodine. The balanced chemical equation for this reaction is: Cl2 + ZnI2 -> 2 ZnCl2 + I2
Potassium iodide (KI) is added to prepare iodine solution because it helps dissolve iodine (I2) in water, increasing its solubility and stability. This results in a more concentrated solution that is easier to work with for various applications, such as in titrations or as an antiseptic.
When sodium metal is combined with iodine gas, an oxidation-reduction reaction occurs. Sodium loses and electron to form the sodium cation, and iodide gains an electron to form iodide. The resulting compound is NaI.
The compound formed when lead reacts with iodine is lead(II) iodide, with the chemical formula PbI2.
When calcium reacts with iodine, calcium iodide is formed. This is a white crystalline solid that is soluble in water and has various industrial applications such as in the manufacturing of chemical compounds.
Aluminium iodide is the compound formed when aluminium reacts with iodine. The chemical formula for aluminium iodide is AlI3. It is a solid compound that is highly soluble in water and has a white color.
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Iron (III) iodide is the compound formed when iron reacts with iodine. Its chemical formula is FeI3.
The word equation for the reaction between potassium and iodine is: potassium + iodine → potassium iodide.
When water, iodine crystals, and aluminum powder are combined, a reaction occurs in which hydrogen gas is evolved and a purple solution is formed due to the reaction of iodine with water. The aluminum powder reacts with water to produce aluminum hydroxide and hydrogen gas.
When iodide reacts with chlorine, it forms iodine gas according to the chemical equation: 2KI + Cl2 → 2KCl + I2. This is a redox reaction where chlorine is reduced and iodide is oxidized. The reaction can be seen as the displacement of iodine from the iodide by chlorine.
Molecular formula for aluminium iodide : All3
When chlorine reacts with lithium iodide, it forms lithium chloride and iodine gas in a displacement reaction. The chlorine displaces the iodide ion in lithium iodide to form lithium chloride, while the displaced iodide ion combines with chlorine to form iodine gas.
Potassium iodide reacts similarly to sodium iodide, as both compounds are halides. They display similar chemical properties and reactivity when involved in reactions that involve iodine.
Yes, when lithium chloride reacts with iodine, lithium iodide and chlorine gas are formed. The balanced chemical equation for this reaction is: 2LiCl + I2 -> 2LiI + Cl2.