2 AlBr3 + 3Cl2 -> 2AlCl3 + 3Br2
Aluminum bromide (AlBr3) + Chlorine (Cl2) → Aluminum chloride (AlCl3) + Bromine (Br2)
The chemical equation is:2 AlBr3 + 3 Cl2 = 2 AlCl3 + 3 Br2
The chemical equation is:2 AlBr3 + 3 Cl2 = 2 AlCl3 + 3 Br2
The balanced chemical equation for the reaction is: 2LiBr + Cl2 -> 2LiCl + Br2 Since the ratio of lithium bromide to lithium chloride is 1:1, 0.046 mol of lithium bromide will produce 0.046 mol of lithium chloride.
The reaction between chlorine gas and potassium bromide results in the formation of potassium chloride and liquid bromine. The balanced chemical equation for this reaction is 2KBr + Cl2 -> 2KCl + Br2.
This chemical reaction is:2 AlBr3 + 3 Cl2 = 2 AlCl3 + 3 Br2
Aluminum bromide (AlBr3) + Chlorine (Cl2) → Aluminum chloride (AlCl3) + Bromine (Br2)
Yes. Chlorine is more reactive than bromine.
The chemical equation is:2 AlBr3 + 3 Cl2 = 2 AlCl3 + 3 Br2
Chlorine + Magnesium Bromide ----> Magnesium Chloride + Bromine
I think this is right... Cl2 + 2NaBr = 2NaCl + Br2
The chemical equation for this reaction is: 2 AlBr3 + 3 Cl2 -> 2 AlCl3 + 3 Br2 It is a redox reaction where aluminum bromide is oxidized to aluminum chloride and chlorine is reduced to bromine.
The chemical equation is:2 AlBr3 + 3 Cl2 = 2 AlCl3 + 3 Br2
The reaction between aluminum bromide and chlorine gas forms aluminum chloride and bromine gas. This is a double displacement reaction where the bromine from aluminum bromide is replaced by chlorine to form new compounds. The balanced chemical equation for this reaction is 2AlBr3 + 3Cl2 → 2AlCl3 + 3Br2.
Yes, chlorine will react with potassium bromide to form potassium chloride and bromine. This is a displacement reaction where the more reactive chlorine displaces bromine from potassium bromide.
In the reaction between chlorine gas and bromide ions, the chlorine gas oxidizes the bromide ions to form bromine gas and chloride ions. This is a redox reaction where chlorine undergoes reduction by gaining electrons from bromide ions.
The balanced chemical equation for the reaction is: 2LiBr + Cl2 -> 2LiCl + Br2 Since the ratio of lithium bromide to lithium chloride is 1:1, 0.046 mol of lithium bromide will produce 0.046 mol of lithium chloride.