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Hydrochloric acid, also known as muriatic acid or spirits of salt, is an aqueous solution of hydrogen chloride (HCl). It is a colorless solution with a distinctive pungent smell. It is classified as a strong acid .
At room temperature, it is a colorless gas, which forms white fumes of hydrochloric acid upon contact with atmospheric water vapor. Hydrogen chloride gas and hydrochloric acid are important in technology and industry. Hydrochloric acid, the aqueous solution of hydrogen chloride, is also commonly given the formula HCl.
An aqueous solution is a solution in which the solvent is water. It is mostly shown in chemical equations by appending (aq) to the relevant chemical formula . For example, a solution of table salt , also known as sodium chloride (NaCl), in water would be represented as Na + (aq) + Cl − (aq) .
A strong acid is one that is fully dissociated in aqueous solution. For example, hydrochloric acid, HCl, is a strong acid. HCl(aq) → H + (aq) + Cl − (aq) A strong base is one that is fully dissociated in aqueous solution. For example, sodium hydroxide, NaOH, is a strong base. NaOH(aq) → Na + (aq) + OH − (aq)
The hydrochloric acid provides a ready supply of chloride ions (Cl −), which react with the gold ions to produce tetrachloroaurate(III) anions ([AuCl 4] −), also in solution. The reaction with hydrochloric acid is an equilibrium reaction that favors formation of tetrachloroaurate(III) anions.
Acid strength is the tendency of an acid, symbolised by the chemical formula, to dissociate into a proton, +, and an anion, .The dissociation or ionization of a strong acid in solution is effectively complete, except in its most concentrated solutions.
Chemical formula Bond length d(H−X) / pm (gas phase) model Dipole μ / D Aqueous phase (acid) Aqueous Phase pK a values hydrogen fluoride (fluorane) HF: 1.86: hydrofluoric acid: 3.1 hydrogen chloride (chlorane) HCl: 1.11: hydrochloric acid-3.9 hydrogen bromide (bromane) HBr: 0.788: hydrobromic acid-5.8 hydrogen iodide (iodane) HI: 0.382 ...
For example H 3 O + CuCl 2 − forms in concentrated hydrochloric acid. [15] Chloride is displaced by CN − and S 2 O 3 2−. [12] Solutions of CuCl in HCl absorb carbon monoxide to form colourless complexes such as the chloride-bridged dimer [CuCl(CO)] 2. The same hydrochloric acid solutions also react with acetylene gas to form [CuCl(C 2 H 2)].