When an alkyl halide reacts with silver nitrate, a substitution reaction takes place where the halide ion is displaced by the silver ion to form a silver halide precipitate. The alkyl group remains unchanged in the reaction.
A single-displacement reaction occurs where copper replaces silver in the silver nitrate solution to form copper(II) nitrate and solid silver. The blue color of the copper(II) nitrate solution turns a greenish-blue color due to the presence of excess copper ions.
When lead nitrate reacts with hydrochloric acid, lead chloride and nitric acid are formed. This reaction is a double displacement reaction, where the nitrate ion from lead nitrate switches places with the chloride ion from hydrochloric acid. The lead chloride formed is insoluble and precipitates out of solution.
A single replacement reaction occurs between copper and silver nitrate in which copper displaces silver, creating copper(II) nitrate and silver metal. The solution may change color from blue to brownish as the reaction progresses, and a brown precipitate of silver may form in the beaker.
When adding silver nitrate to salt water, a chemical change occurs as a reaction takes place between the silver nitrate and the salt in the water. This reaction forms a precipitate of silver chloride, which is a different substance than the original silver nitrate and salt.
A double replacement takes place. And a precipitate is formed called AgCl. It is solution on CuNO3.
When silver nitrate reacts with hydrochloric acid, silver chloride and nitric acid are formed. The balanced chemical equation for this reaction is: AgNO3 + HCl -> AgCl + HNO3
When silver nitrate reacts with hydrochloric acid, a chemical reaction known as a double displacement reaction takes place. The silver cation from the silver nitrate exchanges with the hydrogen cation from the hydrochloric acid to form silver chloride, which is a white precipitate, and nitric acid.
When silver nitrate, a soluble solution, is mixed with a carbonate solution a precipitation reaction (double replacement reaction) takes place forming nitrate ions and the insoluble solid silver carbonate.
When an alkyl halide reacts with silver nitrate, a substitution reaction takes place where the halide ion is displaced by the silver ion to form a silver halide precipitate. The alkyl group remains unchanged in the reaction.
A precipitation reaction takes place when silver nitrate reacts with hydrochloric acid, forming a white precipitate of silver chloride. This reaction can be represented by the chemical equation: AgNO3 + HCl -> AgCl + HNO3.
exothermic process takes place when powdered limestone reacts with acid in lakes.
Nitric acid reacts with metals, metal oxides, or metal carbonates to produce nitrate salts. The acid donates a hydrogen ion to form water and the metal or base component takes the remaining ion to form the nitrate salt.
When aluminum chloride and silver nitrate are mixed, a double displacement reaction takes place where aluminum nitrate and silver chloride are formed. Silver chloride is a white precipitate that can be observed in the reaction mixture.
AgNO3 + NaCl --> AgCl + NaNO3This is a double displacement reaction where the negative and positive ions pairs switch.what you have to keep in mind is that this is happening in water otherwise two solids put together wont react much.In water, both of the reactants are soluble, but after the reaction takes place AgCl is no longer soluble, so you form a solid product of it. NaNO3 is still soluble so it stays dissolved in solution.
the reaction which takes place when an acid reacts with a base is called neutralization reaction. For instance,if HCl reacts with NaOH, the products are NaCl and water. Neutralizing an acid with a base would always give salt and water as the only products.
When you mix silver nitrate with sugar, a chemical reaction takes place that results in a black precipitate of silver metal forming. This reaction is a reducing sugar reaction, where the sugar acts as a reducing agent to convert the silver ion in silver nitrate into silver metal.