Formula: CsI
The balanced equation for cesium reacting with chloride ions to form cesium chloride is 2Cs + Cl2 -> 2CsCl.
The balanced chemical equation for cesium bromide is 2CsBr -> 2Cs + Br2.
The balanced equation for lead iodide is: PbI2 (s) ↔ Pb2+ (aq) + 2I- (aq)
The balanced symbol equation between chlorine and potassium iodide is: Cl2 + 2KI -> 2KCl + I2
The balanced equation for fluorine reacting with sodium iodide is: 2 NaI + F2 → 2 NaF + I2
The balanced equation for cesium reacting with chloride ions to form cesium chloride is 2Cs + Cl2 -> 2CsCl.
The balanced chemical equation for cesium bromide is 2CsBr -> 2Cs + Br2.
The formula for cesium iodide is CsI, where Cs is the chemical symbol for cesium and I is the chemical symbol for iodide. It is an ionic compound composed of cesium cations (Cs+) and iodide anions (I-).
The compound with the formula CsI is called cesium iodide.
The balanced equation for the formation of silver iodide is: 2 AgNO3 + 2 KI → 2 AgI + 2 KNO3
The balanced equation for the reaction between cesium (Cs) and selenium (Se) to form cesium selenide (Cs2Se) is: 2Cs(s) + Se(s) -> Cs2Se(s)
The balanced equation for the reaction of aluminum and iodine to form aluminum iodide is: 2Al + 3I2 -> 2AlI3
The balanced equation for lead iodide is: PbI2 (s) ↔ Pb2+ (aq) + 2I- (aq)
what are the products of the reaction between aluminum chloride and cesium
The balanced symbol equation between fluorine and potassium iodide is: 2KI + F2 --> 2KF + I2
The balanced symbol equation between chlorine and potassium iodide is: Cl2 + 2KI -> 2KCl + I2
Balanced:H2 + I2 ----> 2 HI