A double displacement reaction takes place, producing Silver Chloride and Nitric acid
No, hydrogen gas is not produced when copper reacts with silver nitrate. In this reaction, copper replaces silver in the silver nitrate solution, resulting in the formation of copper(II) nitrate and silver metal.
When silver nitrate reacts with hydrochloric acid, silver chloride and nitric acid are formed. This reaction is a double displacement reaction where the silver ions from silver nitrate combine with the chloride ions from hydrochloric acid to form silver chloride, which is insoluble and precipitates out of solution. This reaction is often used as a test for the presence of chloride ions in a solution.
The equation for the reaction between ammonia and silver nitrate is: 2NH3 + AgNO3 → AgNH3 + NO3
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.
No Reaction
No, hydrogen gas is not produced when copper reacts with silver nitrate. In this reaction, copper replaces silver in the silver nitrate solution, resulting in the formation of copper(II) nitrate and silver metal.
When silver nitrate reacts with hydrochloric acid, silver chloride and nitric acid are formed. This reaction is a double displacement reaction where the silver ions from silver nitrate combine with the chloride ions from hydrochloric acid to form silver chloride, which is insoluble and precipitates out of solution. This reaction is often used as a test for the presence of chloride ions in a solution.
The equation for the reaction between ammonia and silver nitrate is: 2NH3 + AgNO3 → AgNH3 + NO3
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 ethyl bromide, an alkyl halide, reacts with alcoholic silver nitrate (AgNO3), silver bromide (AgBr) and ethanol are produced. This reaction is a substitution reaction where the bromine in ethyl bromide is replaced by the nitrate ion from silver nitrate.
No Reaction
When silver nitrate reacts with sodium bicarbonate, a white precipitate of silver carbonate forms along with sodium nitrate and water. This reaction can be written as: AgNO3 + NaHCO3 -> Ag2CO3 + NaNO3 + H2O.
Copper reacts with silver nitrate solution to form silver metal, copper(II) nitrate, and nitric oxide gas. This reaction is a displacement reaction where copper displaces silver from the silver nitrate solution because copper is higher in the activity series than silver.
When silver nitrate reacts with light, it undergoes a photochemical decomposition process where it decomposes into silver metal, nitrogen dioxide gas, and oxygen gas. This reaction is a decomposition reaction and is commonly used in photography to form images on sensitive materials.
When silver nitrate reacts with ammonium chloride, a white precipitate of silver chloride forms along with ammonium nitrate. This reaction is a double displacement reaction where the silver ion in the silver nitrate switches places with the ammonium ion in the ammonium chloride, resulting in the formation of the two new compounds.
When copper reacts with silver nitrate, there is a displacement reaction where the copper displaces silver from the silver nitrate solution. This results in the formation of copper(II) nitrate solution and solid silver. The reaction is a single displacement reaction where copper is more reactive than silver.
When sodium iodide reacts with silver nitrate, a double displacement reaction occurs. The sodium ions exchange with the silver ions, forming silver iodide as a white precipitate and sodium nitrate. This reaction can be represented by the equation: 2NaI + 2AgNO3 → 2AgI + 2NaNO3