Mercury and sulfur combine to form mercury(II) sulfide, which is a black compound. The chemical equation for this reaction is: Hg + S → HgS
Both Sulfur (S) and Mercury (Hg) are elements. However, Mercury has a great affinity for Sulfur, and is often found in Mercury Sulfides. Cinnabar (Mercury Sulfide, HgS) is a common Mercury Ore.
Cinnabar is composed of mercury and sulfur. Mercury is a heavy metal, and sulfur is a non-metal.
The word equation for the reaction between sulfur and air is: sulfur + oxygen → sulfur dioxide.
Sulfur and oxygen can combine through a chemical reaction to form sulfur dioxide (SO2) or sulfur trioxide (SO3) depending on the reaction conditions. These compounds are formed when sulfur reacts with oxygen in the presence of heat or a catalyst.
Mercury and sulfur combine to form mercury(II) sulfide, which is a black compound. The chemical equation for this reaction is: Hg + S → HgS
Both Sulfur (S) and Mercury (Hg) are elements. However, Mercury has a great affinity for Sulfur, and is often found in Mercury Sulfides. Cinnabar (Mercury Sulfide, HgS) is a common Mercury Ore.
mercury
Cinnabar is composed of mercury and sulfur. Mercury is a heavy metal, and sulfur is a non-metal.
The word equation for the reaction between sulfur and air is: sulfur + oxygen → sulfur dioxide.
The electron configuration for sulfur is [Ne]3s2.3p4.The electron configuration for mercury is [Xe]4f14.5d10.6s2.
S + O2 à SO2 This is a combustion reaction
The reaction between sulfur and oxygen forms sulfur dioxide, which is a chemical compound composed of sulfur and oxygen atoms. This reaction is exothermic, meaning it releases heat energy. The balanced chemical equation for this reaction is: 2S(s) + 3O2(g) → 2SO2(g).
The reverse reaction of sulfur trioxide being made into sulfur dioxide and oxygen is simply the decomposition reaction of sulfur trioxide into its original components. This is represented by the chemical equation: 2SO3 → 2SO2 + O2.
Sulfur and oxygen can combine through a chemical reaction to form sulfur dioxide (SO2) or sulfur trioxide (SO3) depending on the reaction conditions. These compounds are formed when sulfur reacts with oxygen in the presence of heat or a catalyst.
Zinc and sulfur combine in a chemical reaction called a synthesis reaction to form zinc sulfide.
The balanced equation for the reaction of sulfur with oxygen to produce sulfur dioxide is: S + O₂ -> SO₂ From the reaction stoichiometry, 1 mole of sulfur produces 1 mole of sulfur dioxide. Therefore, the volume of sulfur dioxide produced would be 26.9 L.