A chemical equation is a written symbolic representation of a chemical reaction. The reactant chemical(s) are given on the left-hand side and the product chemical(s) on the right-hand side. The law of conservation of mass states that no atoms can be created or destroyed in a chemical reaction, so the number of atoms that are present in the reactants has to balance the number of atoms that are present in the products
phospheric acid= H3PO4
strontium oxide= SrO
The reaction between solid strontium and solid tetraphosphorus produces solid strontium phosphide as a single product. The balanced chemical equation for this reaction is: 3Sr + 2P4 -> Sr3P2. Strontium phosphide is an ionic compound that forms between strontium (Sr) and phosphorus (P).
When strontium hydroxide and lithium phosphate react, they form strontium phosphate and lithium hydroxide. This is a double displacement reaction where the cations and anions of the two compounds switch partners. Strontium phosphate is an insoluble compound, while lithium hydroxide is soluble in water.
The chemical formula of strontium oxalate monohydrate is SrC2O4·H2O. The chemical equation for its formation involves the reaction of strontium nitrate with oxalic acid in the presence of water.
The chemical equation for Strontium Iodide is SrI2, which represents the compound formed by the elements strontium (Sr) and iodine (I) combining in a 1:2 ratio.
The coefficient of strontium oxide in a balanced chemical equation will depend on the specific reaction it is involved in. Generally, coefficients are the numbers placed in front of chemical formulas to balance the equation.
There is no reaction between them
The reaction between solid strontium and solid tetraphosphorus produces solid strontium phosphide as a single product. The balanced chemical equation for this reaction is: 3Sr + 2P4 -> Sr3P2. Strontium phosphide is an ionic compound that forms between strontium (Sr) and phosphorus (P).
When strontium hydroxide and lithium phosphate react, they form strontium phosphate and lithium hydroxide. This is a double displacement reaction where the cations and anions of the two compounds switch partners. Strontium phosphate is an insoluble compound, while lithium hydroxide is soluble in water.
The chemical formula of strontium oxalate monohydrate is SrC2O4·H2O. The chemical equation for its formation involves the reaction of strontium nitrate with oxalic acid in the presence of water.
SrCl2
The chemical equation for Strontium Iodide is SrI2, which represents the compound formed by the elements strontium (Sr) and iodine (I) combining in a 1:2 ratio.
The double replacement reaction between sodium phosphide (Na3P) and sodium oxide (Na2O) would form sodium phosphate (Na3PO4) and sodium metal (Na). The balanced chemical equation for this reaction is: 3Na3P + 6Na2O → 2Na3PO4 + 6Na
The coefficient of strontium oxide in a balanced chemical equation will depend on the specific reaction it is involved in. Generally, coefficients are the numbers placed in front of chemical formulas to balance the equation.
The chemical formulas for calcium oxide and strontium oxide are CaO and SrO, respectively. These compounds are formed when calcium or strontium react with oxygen.
The chemical equation for the reaction between aqueous strontium sulfide (SrS) and aqueous copper sulfate (CuSO4) is: SrS + CuSO4 → SrSO4 + CuS Strontium sulfate (SrSO4) and copper sulfide (CuS) are the products of this double displacement reaction.
The Chemical symbol for Disodium phosphate is: Na2 (Sodium) H (Hydrogen) P (Phosphorus) O4 (Oxygen)
Trick question, because Strontium and Sulfur DON'T react