This is an ionic bond, in the compound silver nitrate.
It contains 3 type of bonds covalent, Ionic and co-ordinating.
Silver Nitrate is not a covelant bond it is and Ionic
Silver nitrate and lead nitrate do not react, so there would be no precipitate.
The reaction between silver nitrate and potassium iodide forms silver iodide precipitate and potassium nitrate. This reaction is a double displacement reaction where the silver ions from silver nitrate switch places with the potassium ions in potassium iodide.
In order to form a potassium nitrate solution, the ionic bond between potassium ions and nitrate ions in the solid potassium nitrate compound needs to be broken. This allows the potassium and nitrate ions to separate and become surrounded by water molecules, resulting in the formation of a potassium nitrate solution.
It contains 3 type of bonds covalent, Ionic and co-ordinating.
Silver Nitrate is not a covelant bond it is and Ionic
silver nitrate
Not bonds, but chemical reactions - for example with silver nitrate.
Iron and silver nitrate do not react to produce a single compound. However, a reaction between iron and silver nitrate would result in the displacement of silver from the silver nitrate solution, forming iron nitrate and silver metal. This reaction is a single displacement reaction.
Silver nitrate and lead nitrate do not react, so there would be no precipitate.
The reaction between silver nitrate and potassium iodide forms silver iodide precipitate and potassium nitrate. This reaction is a double displacement reaction where the silver ions from silver nitrate switch places with the potassium ions in potassium iodide.
In order to form a potassium nitrate solution, the ionic bond between potassium ions and nitrate ions in the solid potassium nitrate compound needs to be broken. This allows the potassium and nitrate ions to separate and become surrounded by water molecules, resulting in the formation of a potassium nitrate solution.
Aluminum nitrate is an ionic bond. It is formed between the positively charged aluminum ion (Al3+) and the negatively charged nitrate ion (NO3-).
No Reaction
The reaction between sodium bromide and silver nitrate forms silver bromide and sodium nitrate. The product is a white precipitate of silver bromide, while sodium nitrate remains dissolved in the solution as a spectator ion.
The equation for the reaction between ammonia and silver nitrate is: 2NH3 + AgNO3 → AgNH3 + NO3