The reaction is:
Ag2CO3 + 2 HNO3 = 2 AgNO3 + CO2 + H2O
The reaction between silver carbonate (Ag2CO3) and nitric acid (HNO3) will result in the formation of silver nitrate (AgNO3), carbon dioxide (CO2), and water (H2O), as the carbonate ion reacts with the acid to form carbonic acid which then decomposes into CO2 and H2O.
The molecular equation for the reaction between nitric acid (HNO3) and potassium hydroxide (KOH) is: HNO3 + KOH -> KNO3 + H2O.
AgCl -> Ag + 1/2 Cl2or2 AgCl -> 2 Ag + Cl2
This equation is NaHCO3 + HNO3 => NaNO3 + H2O + CO2 (g).
4Ag + 4HCl + O2---------4 AgCl + 2 H2O The reaction between silver and hydrochloric acid is possible only in the presence of air and is a slow reaction; the silver chloride in insoluble.
The reaction between silver carbonate (Ag2CO3) and nitric acid (HNO3) will result in the formation of silver nitrate (AgNO3), carbon dioxide (CO2), and water (H2O), as the carbonate ion reacts with the acid to form carbonic acid which then decomposes into CO2 and H2O.
The molecular equation for the reaction between nitric acid (HNO3) and potassium hydroxide (KOH) is: HNO3 + KOH -> KNO3 + H2O.
The balanced equation for Na + HNO3 is: 2Na + 2HNO3 -> 2NaNO3 + H2
AgCl -> Ag + 1/2 Cl2or2 AgCl -> 2 Ag + Cl2
This equation is NaHCO3 + HNO3 => NaNO3 + H2O + CO2 (g).
The balanced equation for the reaction between HNO3 and NaHCO3 is: 2 HNO3 + NaHCO3 → NaNO3 + H2O + CO2
4Ag + 4HCl + O2---------4 AgCl + 2 H2O The reaction between silver and hydrochloric acid is possible only in the presence of air and is a slow reaction; the silver chloride in insoluble.
The balanced chemical equation for the dissociation of nitric acid (HNO3) in water is: HNO3(aq) -> H+(aq) + NO3-(aq)
The chemical equation is: KOH + HNO3-------------→KNO3 + H2O
HNO3
The balanced chemical equation for the reaction between ammonia (NH3) and nitric acid (HNO3) is: NH3 + HNO3 → NH4NO3
The chemical equation is:Sn + 4 HNO3 = SnO2 + 4 NO2 + 2 H2O