Idealy.
Fe + 2HCl --> FeCl2 + H2
You get iron II chloride and hydrogen gas.
When hydrochloric acid (HCl) reacts with iron powder, the iron oxidizes to form iron(II) chloride (FeCl2) and hydrogen gas (H2) is released. This reaction is a typical metal-acid reaction known as a single displacement reaction. The iron powder will dissolve and you will observe bubbling as the gas is released.
In the reaction between iron (Fe) and hydrochloric acid (HCl), the Fe reacts with the HCl to form iron chloride (FeCl2) and hydrogen gas (H2). This reaction is a single displacement reaction, where the Fe displaces the hydrogen in the HCl to form the products.
When potassium bromide (KBr) reacts with hydrochloric acid (HCl), a double displacement reaction occurs producing potassium chloride (KCl) and hydrogen bromide (HBr). The reaction can be represented as follows: KBr + HCl → KCl + HBr.
A gas H2S evolves.
When sodium phenoxide is reacted with CO2 and HCl, the phenoxide anion is protonated by HCl to form phenol. The phenol then reacts with CO2 to form salicylic acid.
When hydrochloric acid (HCl) reacts with iron powder, the iron oxidizes to form iron(II) chloride (FeCl2) and hydrogen gas (H2) is released. This reaction is a typical metal-acid reaction known as a single displacement reaction. The iron powder will dissolve and you will observe bubbling as the gas is released.
In the reaction between iron (Fe) and hydrochloric acid (HCl), the Fe reacts with the HCl to form iron chloride (FeCl2) and hydrogen gas (H2). This reaction is a single displacement reaction, where the Fe displaces the hydrogen in the HCl to form the products.
When potassium bromide (KBr) reacts with hydrochloric acid (HCl), a double displacement reaction occurs producing potassium chloride (KCl) and hydrogen bromide (HBr). The reaction can be represented as follows: KBr + HCl → KCl + HBr.
When iron reacts with air, they form ferric oxide.
it explodes
iron(III) sulfate and HCl is formed
A gas H2S evolves.
When sodium phenoxide is reacted with CO2 and HCl, the phenoxide anion is protonated by HCl to form phenol. The phenol then reacts with CO2 to form salicylic acid.
When calcium propionate reacts with hydrochloric acid (HCl), it forms calcium chloride, water, and releases carbon dioxide gas. This reaction is an acid-base reaction where the acid (HCl) reacts with the calcium compound to form a salt (calcium chloride) and water. The release of carbon dioxide gas can cause effervescence or bubbling.
Iron(II) sulfate (FeSO4) reacts with hydrochloric acid (HCl) to form iron(II) chloride (FeCl2), sulfuric acid (H2SO4), and water (H2O). The balanced chemical equation for this reaction is: FeSO4 + 2HCl -> FeCl2 + H2SO4 + H2O.
7.3 g of HCl.
The chemical equation for the reaction between iron oxide (Fe2O3) and hydrogen chloride (HCl) is: Fe2O3 + 6HCl → 2FeCl3 + 3H2O. In this reaction, iron oxide is converted to iron(III) chloride and water is produced as a byproduct.