The balanced chemical equation for sulfur reacting with oxygen to produce sulfur trioxide is: 2S + 3O2 → 2SO3
The reaction between lithium and sulfur can be represented by the chemical equation: 8Li + S8 → 8Li2S. This equation shows that 8 lithium atoms react with 1 sulfur molecule to form 8 lithium sulfide molecules.
The balanced equation for lithium oxide and sulfur dioxide is 2Li2O + 2SO2 -> 2Li2SO3.
The balanced equation for the reaction between sulfur, oxygen, and water is: Sulfur + Oxygen + Water → Sulfuric Acid
The balanced chemical equation for the reaction of sulfur dioxide with water is: SO2 + H2O → H2SO3
The balanced chemical equation for sulfur reacting with oxygen to produce sulfur trioxide is: 2S + 3O2 → 2SO3
The balanced chemical equation for sulfur reacting with molecular chlorine to form sulfur dichloride is: S(s) + Cl2(g) → SCl2(l)
SO2 + O = SO3
The reaction between lithium and sulfur can be represented by the chemical equation: 8Li + S8 → 8Li2S. This equation shows that 8 lithium atoms react with 1 sulfur molecule to form 8 lithium sulfide molecules.
The balanced equation for the reaction between sodium and sulfur is: 2 Na + S -> Na2S
2h2s + o2 -> 2s + 2h2o
The balanced equation for lithium oxide and sulfur dioxide is 2Li2O + 2SO2 -> 2Li2SO3.
The balanced equation for lighting a match involves the combustion of the match head. It can be represented by the chemical equation: S(s) + O2(g) → SO2(g) + heat and light. This equation shows the sulfur in the match head reacting with oxygen in the air to produce sulfur dioxide, heat, and light.
The balanced equation for the reaction between sulfur, oxygen, and water is: Sulfur + Oxygen + Water → Sulfuric Acid
The balanced chemical equation for the reaction of sulfur dioxide with water is: SO2 + H2O → H2SO3
Sulfur does not react with hydrochloric acid.
When magnesium oxide reacts with sulfur trioxide, the products formed are magnesium sulfate (MgSO4). The balanced chemical equation for this reaction is: MgO + SO3 → MgSO4.