Cl2(g) + 3I2(s) → 2ICl3(l)
P4 (s) + 6Cl2 (g) -> 4PCl3 (l)
The balanced equation for caesium and chlorine is 2Cs + Cl2 -> 2CsCl.
The balanced symbol equation for the reaction between potassium and chlorine is: 2K + Cl2 → 2KCl.
The balanced equation for the reaction between chlorine and ammonia is: 3Cl2 + 6NH3 → 6HCl + N2.
The balanced symbol equation between chlorine and potassium iodide is: Cl2 + 2KI -> 2KCl + I2
show you the balance reaction between water and phsphorous trichloride show you the balance reaction between water and phsphorous trichloride show you the balance reaction between water and phsphorous trichloride
iodine reacts with chlorine gas produces iodine trichloride I + Cl2 -->ICl3 now you have to balance the equation and you get: 2I + 3Cl2--> 2ICl3 Note: iodine trichloride is a molecular compound and that is why they used a prefix on the chloride. Therefore iodine trichloride just means 1 iodine and 3 chlorines resulting in ICl3. Also because chlorine is a diatomic element it needs to have a subscript of 2.
P4 (s) + 6Cl2 (g) -> 4PCl3 (l)
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 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.
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