Solid barium peroxide is added to cold dilute sulfuric acid
BaO2(s) + H2SO4(aq) --> BaSO4(s) + H2O2(aq)
The reaction between zinc and dilute sulfuric acid can be represented by the equation: Zn + H2SO4 -> ZnSO4 + H2. In this reaction, zinc reacts with sulfuric acid to produce zinc sulfate and hydrogen gas.
The reaction between potassium iodide (KI) and dilute sulfuric acid (H2SO4) can be represented by the following equation: 2KI + H2SO4 -> 2KHSO4 + HI
The chemical reaction between iron and dilute sulfuric acid is a redox reaction. The iron reacts with the sulfuric acid to form iron(II) sulfate and hydrogen gas. The balanced chemical equation for this reaction is: 2 Fe + 3 H2SO4 -> Fe2(SO4)3 + 3 H2
When magnesium reacts with dilute sulfuric acid, magnesium sulfate and hydrogen gas are produced. The chemical reaction is represented as: Mg + H2SO4 -> MgSO4 + H2. Magnesium displaces hydrogen from sulfuric acid in this single displacement reaction.
When aluminum reacts with dilute sulfuric acid, aluminum sulfate and hydrogen gas are produced. The chemical reaction can be represented by the equation: 2Al + 3H2SO4 -> Al2(SO4)3 + 3H2. This reaction is also known as a displacement reaction, where aluminum displaces hydrogen from the sulfuric acid to form aluminum sulfate.
The reaction between zinc and dilute sulfuric acid can be represented by the equation: Zn + H2SO4 -> ZnSO4 + H2. In this reaction, zinc reacts with sulfuric acid to produce zinc sulfate and hydrogen gas.
The reaction between potassium iodide (KI) and dilute sulfuric acid (H2SO4) can be represented by the following equation: 2KI + H2SO4 -> 2KHSO4 + HI
The chemical reaction between iron and dilute sulfuric acid is a redox reaction. The iron reacts with the sulfuric acid to form iron(II) sulfate and hydrogen gas. The balanced chemical equation for this reaction is: 2 Fe + 3 H2SO4 -> Fe2(SO4)3 + 3 H2
When magnesium reacts with dilute sulfuric acid, magnesium sulfate and hydrogen gas are produced. The chemical reaction is represented as: Mg + H2SO4 -> MgSO4 + H2. Magnesium displaces hydrogen from sulfuric acid in this single displacement reaction.
When aluminum reacts with dilute sulfuric acid, aluminum sulfate and hydrogen gas are produced. The chemical reaction can be represented by the equation: 2Al + 3H2SO4 -> Al2(SO4)3 + 3H2. This reaction is also known as a displacement reaction, where aluminum displaces hydrogen from the sulfuric acid to form aluminum sulfate.
Yes, exothermic reaction: Zn + H2SO4 --> ZnSO4 + H2 Zinc + Sulfuric acid --> Zinc Sulfate + Hydrogen(gas)
The reaction of methyl benzoate with dilute sulfuric acid generates benzoic acid and methanol as the main products.
Yes, copper reacts with dilute sulfuric acid (H2SO4) to form copper sulfate (CuSO4) and release hydrogen gas (H2). This is a redox reaction.
Yes, magnesium metal will react with dilute sulfuric acid to produce magnesium sulfate and hydrogen gas. This is a common reaction in chemistry labs to study the reactivity of metals with acids.
Yes, silver would react with dilute sulfuric acid to produce silver sulfate and hydrogen gas. This reaction involves the displacement of hydrogen ions from the acid by the silver metal.
Yes, silver will react with dilute sulfuric acid to form silver sulfate and hydrogen gas. This reaction occurs because silver is more reactive than hydrogen in the reactivity series.
When zinc is added to dilute sulfuric acid in a test tube, a chemical reaction occurs where zinc reacts with sulfuric acid to form zinc sulfate and hydrogen gas. This reaction is a redox reaction where zinc is oxidized to zinc ions, while hydrogen ions in the sulfuric acid are reduced to form hydrogen gas. The production of hydrogen gas can be observed as bubbles forming in the test tube.