Hint: Break up the polyatomic ions
The reaction is:Ag2CO3 + 2 HNO3 = 2 AgNO3 + CO2 + H2O
Silver nitrate doesn't react with nitric acid.
There's NO reaction between AgNO3 and HNO3
AgNO3(aq) + HCl(aq) --> AgCl(s) + HNO3(aq)
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.
AgNO3 H2O is a compound of silver nitrate and water. When AgNO3 dissolves in water, it ionizes into silver ions (Ag+) and nitrate ions (NO3-). The silver ions can participate in various chemical reactions such as precipitation or complexation reactions.
The reaction is:Ag2CO3 + 2 HNO3 = 2 AgNO3 + CO2 + H2O
Silver nitrate doesn't react with nitric acid.
There's NO reaction between AgNO3 and HNO3
AgNO3(aq) + HCl(aq) --> AgCl(s) + HNO3(aq)
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 equation for the reaction between silver nitrate (AG) and hydrochloric acid (HCl) is: AgNO3 + HCl → AgCl + HNO3. This reaction forms silver chloride (AgCl) and nitric acid (HNO3) as products.
The complete ionic equation for the reaction between HCl and AgNO3 is: H+(aq) + Cl-(aq) + Ag+(aq) + NO3-(aq) -> AgCl(s) + HNO3(aq)
The product agNO3 is a chemical formula known as silver nitrate. Silver nitrate is developed by reacting silver with nitric acid. The correct formula written for silver nitrate is AgNO3, or Ag(NO3)2.
by adding AgNO3, ppt. is formed in h2so4 not hno3.
When AlCl3 reacts with HNO3, the products are Al(NO3)3 and HCl. When AlCl3 reacts with AgNO3, the products are AgCl and Al(NO3)3.
To find the mass of silver in 3.4g of AgNO3, you need to consider the molar mass of AgNO3. The molar mass of AgNO3 is 169.87 g/mol. From this, you can calculate the mass of silver (Ag) in AgNO3, which is 107.87 g/mol. Therefore, the mass of silver in 3.4g of AgNO3 is (107.87/169.87) * 3.4g.