No, HCl is a gas, though quite soluble in water (up to 720 g/L), which is called hydrochloric acid.
HCl gas is not an acid because it does not produce H+ ions in solution when dissolved in water. However, when HCl gas dissolves in water to form hydrochloric acid (HCl aqueous), it dissociates into H+ and Cl- ions, making it acidic.
Hydrochloric acid
This equation is NaClO (aq) + 2 HCl (aq) = NaCl (aq) + Cl2 + H2O.
Any substance that imparts hydrogen ions (H+) into aqueous (water) solution can be an Arrhenius acid. Examples include HCl(aq), H2SO4(aq), HNO3(aq).
aqueous acid solution it is solute or solvent
HCl gas is not an acid because it does not produce H+ ions in solution when dissolved in water. However, when HCl gas dissolves in water to form hydrochloric acid (HCl aqueous), it dissociates into H+ and Cl- ions, making it acidic.
Aqueous HCl refers to hydrochloric acid that has been dissolved in water, resulting in a solution of HCl molecules and water molecules. In this form, HCl can conduct electricity due to the dissociation of the acid into H+ ions and Cl- ions.
Hydrochloric acid
The aqueous solution of HCl is the Muriatic acid so HCl gas is solute and water is solvent.
This equation is NaClO (aq) + 2 HCl (aq) = NaCl (aq) + Cl2 + H2O.
Any substance that imparts hydrogen ions (H+) into aqueous (water) solution can be an Arrhenius acid. Examples include HCl(aq), H2SO4(aq), HNO3(aq).
This is a solution of hydrogen chloride (HCl) in water.
aqueous acid solution it is solute or solvent
If it aqueous, then it refers to hydrochloric acid and if it is a gas then hydrogen chloride gas
NaHCO3 (solid)+ HCl (aqueous) -> NaCl (aqueous)+ H2O (liquid)+ CO2 (gas)
Other than being hydrochloric acid, which is an aqueous solution of HCl which fully dissociates to form OH3+ and Cl- (HCl is a strong acid), this compound in the gaseous form is called...,hydrogen chloride.
In a muriatic acid solution, hydrochloric acid (HCl) is the solute, as it is the substance being dissolved. Water is the solvent that dissolves the hydrochloric acid to form the muriatic acid solution.