S + 2Cl --> SCl2
The balanced equation for caesium and chlorine is 2Cs + Cl2 -> 2CsCl.
The balanced chemical equation for this reaction is 2NaBr + Cl2 -> 2NaCl + Br2. It shows that one molecule of molecular chlorine reacts with two molecules of sodium bromide to produce two molecules of sodium chloride and one molecule of bromine.
The balanced symbol equation for the reaction between potassium and chlorine is: 2K + Cl2 → 2KCl.
2(FeBr3) + 3(Cl2) --> 2(FeCl3) + 3(Br2)
The balanced molecular equation for the reaction between CaBr2 and NaCO3 is: CaBr2 + 2NaCO3 -> CaCO3 + 2NaBr.
The balanced equation for the reaction between chlorine and fluorine is: Cl2 + F2 → 2ClF
The balanced equation for caesium and chlorine is 2Cs + Cl2 -> 2CsCl.
The balanced chemical equation for this reaction is 2NaBr + Cl2 -> 2NaCl + Br2. It shows that one molecule of molecular chlorine reacts with two molecules of sodium bromide to produce two molecules of sodium chloride and one molecule of bromine.
The balanced symbol equation for the reaction between potassium and chlorine is: 2K + Cl2 → 2KCl.
The balanced equation for the reaction of iron with chlorine is: Fe + Cl2 -> FeCl3.
2(FeBr3) + 3(Cl2) --> 2(FeCl3) + 3(Br2)
The balanced molecular equation for the reaction between CaBr2 and NaCO3 is: CaBr2 + 2NaCO3 -> CaCO3 + 2NaBr.
The balanced chemical equation for the reaction between chlorine (Cl2) and bromine (Br2) is: Cl2 + Br2 -> 2ClBr
The balanced equation between indium and chlorine is: 2 In + 3 Cl₂ → 2 InCl₃.
The balanced equation for the reaction between chlorine and ammonia is: 3Cl2 + 6NH3 → 6HCl + N2.
The balanced equation for potassium reacting with chlorine to form potassium chloride is: 2K + Cl2 → 2KCl
The balanced symbol equation between chlorine and potassium iodide is: Cl2 + 2KI -> 2KCl + I2