calcium carbonate
lead oxide + carbon-> lead + carbon dioxide
When lead oxide is heated with carbon, carbon dioxide and lead are formed as the products 2PbO+C -->CO2+2Pb
with water aswell it would become copper carbonate
When an element is burned in air or oxygen, it forms oxides. The type of oxide formed depends on the reactivity of the element with oxygen. For example, carbon forms carbon dioxide while magnesium forms magnesium oxide.
Carbon monoxide (CO) is a diatomic molecule with two atoms: carbon (C) and oxygen (O).
lead oxide + carbon-> lead + carbon dioxide
what is product when zinc added to carbon dioxide?
When lead oxide is heated with carbon, carbon dioxide and lead are formed as the products 2PbO+C -->CO2+2Pb
with water aswell it would become copper carbonate
The formula for iron (III) oxide is Fe2O3 and the formula for carbon dioxide is CO2. Therefore, the combined formula for iron (III) oxide and carbon dioxide is 2Fe2O3 + 3CO2, which indicates the reaction between them or the product formed.
When magnesium ribbon is burned in air, it forms magnesium oxide. This is a white powdery substance that results from the reaction of magnesium with oxygen in the air.
Carbon dioxide is a covalent oxide, specifically a non-metallic oxide. It is formed by the combination of carbon and oxygen atoms, and primarily exists as a gas at room temperature.
An oxide is formed.
When an element is burned in air or oxygen, it forms oxides. The type of oxide formed depends on the reactivity of the element with oxygen. For example, carbon forms carbon dioxide while magnesium forms magnesium oxide.
The reaction between calcium carbonate and sodium metal would likely produce calcium oxide, sodium oxide, and carbon. The calcium oxide and sodium oxide would be the main products, with carbon formation as a byproduct.
Carbon monoxide (CO) is a diatomic molecule with two atoms: carbon (C) and oxygen (O).
When carbon dioxide gas is blown into a solution of magnesium oxide, it will form magnesium carbonate as a product. This reaction involves the carbon dioxide reacting with the magnesium oxide to form the magnesium carbonate.