Since barium chloride is reactive with sulfate ions there would be more precipitate present. The solution with more precipitate present would show it had higher amounts of sulfate ions
Epsom salt (magnesium sulfate heptahydrate) and calcium chloride (sold as DampRid).
A precipitate is expected to form when an aqueous solution of sodium sulfate is added to an aqueous solution of barium chloride. This reaction results in the formation of insoluble barium sulfate, which appears as a white precipitate.
Yes, aluminum sulfate can react with lead in certain conditions to form insoluble lead sulfate. This reaction occurs when aluminum sulfate and lead ions are both present in a solution, leading to the formation of lead sulfate as a precipitate.
To find the grams of aluminum sulfate produced, you would need to know the stoichiometry of the reaction between sulfuric acid and aluminum sulfate. Without that information, we cannot determine the exact amount of aluminum sulfate produced.
The reaction between dissolved barium chloride and dissolved potassium sulfate in water forms solid barium sulfate as a precipitate and soluble potassium chloride in the water solution. This is a double displacement reaction where the cations switch partners to form the products. Barium sulfate is insoluble in water, which causes it to precipitate out.
the precipitate is calcium sulfate (CaSO4) and its white in color
When aluminum sulfate reacts with strontium hydroxide, aluminum hydroxide and strontium sulfate are formed as products in a double displacement reaction. Aluminum hydroxide is insoluble in water and will precipitate out of the solution, while strontium sulfate will also be a precipitate since it is insoluble in water.
Epsom salt (magnesium sulfate heptahydrate) and calcium chloride (sold as DampRid).
A precipitate is expected to form when an aqueous solution of sodium sulfate is added to an aqueous solution of barium chloride. This reaction results in the formation of insoluble barium sulfate, which appears as a white precipitate.
When you add sodium sulfate to barium chloride, a white precipitate of barium sulfate forms. This is due to the reaction between sodium sulfate and barium chloride, which forms insoluble barium sulfate.
The reaction is a double displacement reaction as lead chloride and sodium sulfate exchange ions to form lead sulfate and sodium chloride. The lead sulfate is insoluble in water, forming a precipitate, while the sodium chloride remains in solution as ions. This reaction is used to separate lead ions from a mixture.
Nothing - barium chloride is soluble. You can however precipitate either the barium (e.g. with sodium sulphate, giving barium sulpate, or the chloride, e.g. with silver nitrate giving silver chloride precipitate.
Yes, aluminum sulfate can react with lead in certain conditions to form insoluble lead sulfate. This reaction occurs when aluminum sulfate and lead ions are both present in a solution, leading to the formation of lead sulfate as a precipitate.
To find the grams of aluminum sulfate produced, you would need to know the stoichiometry of the reaction between sulfuric acid and aluminum sulfate. Without that information, we cannot determine the exact amount of aluminum sulfate produced.
The reaction between dissolved barium chloride and dissolved potassium sulfate in water forms solid barium sulfate as a precipitate and soluble potassium chloride in the water solution. This is a double displacement reaction where the cations switch partners to form the products. Barium sulfate is insoluble in water, which causes it to precipitate out.
The balanced chemical equation for Barium chloride plus Aluminium sulphate gives Barium sulphate Aluminium chloride is represented as .3BaCl2(aq) + Al2(SO4)3(aq) --> 3BaSO4(ppt) + 2AlCl3(aq).The ppt formed are white in color.
Some examples of simple precipitation reactions include mixing silver nitrate with sodium chloride to form silver chloride precipitate, mixing lead nitrate with potassium iodide to form lead iodide precipitate, and mixing barium chloride with sodium sulfate to form barium sulfate precipitate.