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Zinc metal reacts with sulfuric acid to produce zinc sulfate and hydrogen gas. The balanced chemical equation for this reaction is: Zn (s) + H2SO4 (aq) -> ZnSO4 (aq) + H2 (g).
Copper ions dissolved in sulfuric acid react to give a colorless gas (sulfur dioxide) and a blue solution (copper sulfate).
Magnesium hydroxide and Sulphuric acid will combine to give Magnesium sulphate and water: Mg(OH)2 + H2SO4 ---> MgSO4 + 2H2O
Sulphuric acid will react with calcium hydroxide(lime water) to give calcium sulphate. Initially slightly white turbidity may be seen but then the turbidity dissolves and calcium sulphate solution is obtained. Heat is released and temperature of solution rises. Note - Lime water is saturated solution of calcium hydroxide.
Can be for a limited time, after which it will form graphite on the inside surface of the container. Some of this dissolves in the acid to give a brown colour. This acid can no longer be used for determining the Chemical Oxygen Demand of waste water.
This base is zinc hydroxide.
No. There is no carbon in either sodium sulphate or hydrochloric acid so they cannot produce a compound containing carbon.
zinc sulphate is made of a reaction between zinc and what acid
Zinc metal reacts with sulfuric acid to produce zinc sulfate and hydrogen gas. The balanced chemical equation for this reaction is: Zn (s) + H2SO4 (aq) -> ZnSO4 (aq) + H2 (g).
Copper ions dissolved in sulfuric acid react to give a colorless gas (sulfur dioxide) and a blue solution (copper sulfate).
Magnesium hydroxide and Sulphuric acid will combine to give Magnesium sulphate and water: Mg(OH)2 + H2SO4 ---> MgSO4 + 2H2O
Sulphuric acid will react with calcium hydroxide(lime water) to give calcium sulphate. Initially slightly white turbidity may be seen but then the turbidity dissolves and calcium sulphate solution is obtained. Heat is released and temperature of solution rises. Note - Lime water is saturated solution of calcium hydroxide.
If pure bromine is contacted with sulfuric acid, the only possible source of bromine atoms for a potential chemical product is the original bromine itself; the sulfuric acid does not contain any bromine atoms and therefore can not supply any additional atoms to make more bromine.
Self-condensation of malic acid with fuming sulfuric acid gives the pyrone coumalic acid.
Can be for a limited time, after which it will form graphite on the inside surface of the container. Some of this dissolves in the acid to give a brown colour. This acid can no longer be used for determining the Chemical Oxygen Demand of waste water.
To make potassium sulfate from potassium hydroxide and sulfuric acid, you would first need to mix the two compounds in the appropriate stoichiometric ratio. This will produce potassium sulfate and water as products. The reaction is exothermic, so it should be conducted under controlled conditions to avoid overheating. Finally, the potassium sulfate can be separated from the water through crystallization or evaporation techniques.
Becayse Iron (Fe) is higher than hydrogen (H) in the chemical reactivity series so it displaces it forming hydrogen gas and Iron sulphate. But Copper (Cu) is lower than hydrogen in the chemical reactivity series so it cannot dispalce hydrogen thus not liberating hydrogen gas