Ionization
Silver is below hydrogen in the reactivity series, so it cannot displace hydrogen from dilute sulfuric acid, which is a less reactive acid compared to hydrochloric acid. Therefore, silver does not evolve hydrogen gas when reacting with dilute sulfuric acid.
it is because hydrogen gas usually liberates when an acid reacts with metal
Copper does not evolve hydrogen gas when reacting with dilute sulfuric acid because copper is below hydrogen in the reactivity series. This means that copper is not reactive enough to displace hydrogen from sulfuric acid to form hydrogen gas. Instead, copper reacts with sulfuric acid to form copper(II) sulfate and water.
Silver is too unreactive to displace hydrogen from dilute sulfuric acid. The Standard Reduction Potential (SRP) of silver is higher than that of hydrogen, so it cannot reduce H+ ions to H2 gas. Therefore, no hydrogen gas is evolved when silver reacts with dilute sulfuric acid.
Iron + sulphuric acid ----> iron sulphate + hydrogen
Magnesium will react with nitric acid and most other acids to produce hydrogen gas.
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.
All of those metals which are located below hydrogen on the activity series will not replace it, and therefore not create hydrogen gas. Those metals would be copper, silver, mercury, platinum, and gold.
Yes, exothermic reaction: Zn + H2SO4 --> ZnSO4 + H2 Zinc + Sulfuric acid --> Zinc Sulfate + Hydrogen(gas)
Zinc is a metal that reacts with dilute sulfuric acid to produce hydrogen gas.
When dilute sulfuric acid is added to zinc, a chemical reaction occurs in which zinc reacts with the sulfuric acid to form zinc sulfate and hydrogen gas. The hydrogen gas is released as bubbles, and the zinc sulfate remains dissolved in the solution.
Gold is a metal that cannot displace hydrogen from dilute acid due to its low reactivity.