Molecular_equation_of_copper_II_sulfate_plus_sodium_carbonateCuSO4 + NaCO3 -------> Na2SO4 + CuCO3
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Copper(II) carbonate is insoluble in water and doesn't react with sodium sulfate. A green product, visible on ald objects made from copper or copper alloys, is a mixture of copper carbonate and copper hydroxide.
The word equation for copper sulfate and water is: copper sulfate + water → copper sulfate solution.
When copper sulfate (blue) and sodium carbonate (colorless) are mixed, a chemical reaction occurs that forms copper carbonate as a product, which is green in color. The green color comes from the copper carbonate that is insoluble in water and precipitates out when the two solutions are mixed.
The word equation for the reaction between iron sulfate and copper is: iron sulfate + copper → copper sulfate + iron.
When copper carbonate is added to sulfuric acid, it produces copper sulfate, carbon dioxide gas, and water. The balanced chemical equation is: CuCO3 + H2SO4 → CuSO4 + CO2 + H2O.
Copper(II) carbonate is insoluble in water and doesn't react with sodium sulfate. A green product, visible on ald objects made from copper or copper alloys, is a mixture of copper carbonate and copper hydroxide.
When copper sulfate and sodium carbonate are mixed together, a chemical reaction occurs. This reaction forms copper carbonate, a new substance with different properties than the reactants. Therefore, the mixing of copper sulfate and sodium carbonate is a chemical change.
The word equation for copper sulfate and water is: copper sulfate + water → copper sulfate solution.
One way to separate copper carbonate and iron sulfate is by adding water to the mixture and stirring to dissolve the copper carbonate. This will leave the iron sulfate as a solid at the bottom of the container. The liquid containing the dissolved copper carbonate can then be decanted, leaving the iron sulfate behind.
If they are mixed powdered solids, then put the mixture in water. The copper sulphate will dissolve into the water, but the calcium carbonate will remain solid. Filter. The filter paper will hold the calcium carbonate Dry the filter paper and collect the dry calcium carbonate The filtrate is a blue solution of copper sulphate. Evaporate the solution to obtain dry crystals of copper sulphate.
When copper sulfate (blue) and sodium carbonate (colorless) are mixed, a chemical reaction occurs that forms copper carbonate as a product, which is green in color. The green color comes from the copper carbonate that is insoluble in water and precipitates out when the two solutions are mixed.
The word equation for the reaction between iron sulfate and copper is: iron sulfate + copper → copper sulfate + iron.
When copper carbonate is added to sulfuric acid, it produces copper sulfate, carbon dioxide gas, and water. The balanced chemical equation is: CuCO3 + H2SO4 → CuSO4 + CO2 + H2O.
The chemical reaction between sodium carbonate and copper(II) sulfate is as follows: Na2CO3 + CuSO4 → CuCO3 + Na2SO4. This reaction forms copper(II) carbonate and sodium sulfate.
Adding an excess of copper carbonate ensures that all the sulfuric acid is fully neutralized and reacts with the copper carbonate to form copper sulfate. This guarantees that the maximum amount of copper sulfate is produced during the reaction.
Mixing copper sulfate and sodium carbonate would be considered a chemical reaction because a new substance is formed as a result of the reaction between the two compounds, resulting in the formation of copper carbonate and sodium sulfate.
Word equation: Iron + Copper (II) sulfate → Iron (II) sulfate + Copper Chemical equation: Fe + CuSO4 → FeSO4 + Cu