no
The reaction is a single replacement reaction, also known as a displacement reaction. In this reaction, bromine replaces iodine in lithium iodide to form lithium bromide and free iodine.
Lithium Bromine
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Lithium is a highly reactive metal, so it can react with many other ions, especially halogens such as fluorine, chlorine, bromine, and iodine
Bromine and Potassium iodide react to form Potassium bromide and Iodine.
The reaction is a single replacement reaction, also known as a displacement reaction. In this reaction, bromine replaces iodine in lithium iodide to form lithium bromide and free iodine.
Lithium Bromine
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LiBr= Lithium bromide==================an ionic compound
Bromine has -1 charge and Lithium has +1 charge. Therefore,only one lithium ion is required to react with a bromine ion.
Lithium is a highly reactive metal, so it can react with many other ions, especially halogens such as fluorine, chlorine, bromine, and iodine
Lithium Bromide = LiBr
Bromine and Potassium iodide react to form Potassium bromide and Iodine.
The word equation for potassium bromide and iodine water is: potassium bromide + iodine water -> potassium iodide + bromine.
Lithium bromide is LiBr
Iodine is less reactive than bromine, so it does not displace bromide ions from sodium bromide in solution. This lack of reactivity occurs because the reaction requires a more reactive element to displace a less reactive one from its ionic compound.
The equation for the reaction of potassium bromide with aqueous iodine is: 2KBr (aq) + I2 (aq) → 2KI (aq) + Br2 (aq) This reaction demonstrates a redox reaction where bromide ions are oxidized to bromine, and iodine is reduced to iodide.