Lead nitrate + potassium sulfate ---> Lead sulfate + Potassium nitrate
A chemical reaction occurs where iron III iodide is formed and potassium nitrate is produced as a byproduct. The balanced chemical equation for this reaction is 2KI + Fe(NO3)3 -> 2KNO3 + FeI3. Iron III iodide is a dark brown solid, whereas potassium nitrate remains in solution.
It reacts with water to produce toxic Ammonia
Potassium nitrate is a chemical compound with the chemical formula KNO₃. It is an ionic salt of potassium ions K⺠and nitrate ions NO₃−.the equation for the reaction of potassium nitrate and water is as follows :pottasium nitrate is formed by the reaction between KOH and HNO3 so the reverse reaction will not happen.
When potassium nitrate and sulfur react, they form potassium sulfate and nitrogen dioxide gas. This reaction is a chemical change where the substances combine to create new compounds.
The compound precipitate formed when potassium iodide is added to a solution of lead nitrate is lead iodide, which is a yellow precipitate. This reaction is a double displacement reaction where the potassium ion and nitrate ion switch partners to form potassium nitrate and lead iodide.
A chemical reaction occurs where iron III iodide is formed and potassium nitrate is produced as a byproduct. The balanced chemical equation for this reaction is 2KI + Fe(NO3)3 -> 2KNO3 + FeI3. Iron III iodide is a dark brown solid, whereas potassium nitrate remains in solution.
It reacts with water to produce toxic Ammonia
Potassium nitrate is a chemical compound with the chemical formula KNO₃. It is an ionic salt of potassium ions K⺠and nitrate ions NO₃−.the equation for the reaction of potassium nitrate and water is as follows :pottasium nitrate is formed by the reaction between KOH and HNO3 so the reverse reaction will not happen.
When potassium nitrate and sulfur react, they form potassium sulfate and nitrogen dioxide gas. This reaction is a chemical change where the substances combine to create new compounds.
The compound precipitate formed when potassium iodide is added to a solution of lead nitrate is lead iodide, which is a yellow precipitate. This reaction is a double displacement reaction where the potassium ion and nitrate ion switch partners to form potassium nitrate and lead iodide.
When potassium nitrate is added with citric acid, a chemical reaction occurs that results in the formation of carbon dioxide gas, water, and potassium citrate. This reaction is an acid-base reaction between citric acid and potassium nitrate.
The reaction equation for potassium nitrate (KNO3) with water (H2O) is: KNO3 (s) + H2O (l) -> K+ (aq) + NO3- (aq) + H2O. This reaction is a dissolution reaction, where the solid potassium nitrate dissolves in water to form aqueous potassium ions, nitrate ions, and water molecules.
No
A yellow precipitate of lead iodide is formed due to the reaction between potassium iodide and lead nitrate. This reaction is a double displacement reaction, where the potassium from potassium iodide swaps places with the lead from lead nitrate, forming the insoluble lead iodide.
Lead nitrate and potassium bromide react to form lead(II) bromide and potassium nitrate. This chemical reaction is a double displacement reaction where the cations and anions exchange partners to form the new compounds.
Just potassium nitrate in water. Aqueous stands for anything with water, so if you take dry potassium nitrate and add some water to it until it dissolves, you have made an aqueous solution of potassium nitrate.
When silver nitrate and potassium iodide are combined, they undergo a double displacement reaction. Silver iodide is formed as a yellow precipitate, while potassium nitrate remains in solution. The balanced chemical equation for this reaction is: AgNO3 + KI -> AgI + KNO3.