They react and give lead hydroxide which is a white precipitate.
Yes, a precipitate is formed when ammonium nitrate and potassium hydroxide are mixed. The reaction between these two compounds forms ammonium hydroxide and potassium nitrate, which results in the formation of a white precipitate of ammonium nitrate.
This question cannot be answered because if you neutralise citric acid you will get a citrate, not a nitrate. To get potassium nitrate you will need the alkali potassium hydroxide and nitric acid.
The reaction between potassium hydroxide and nitric acid produces potassium nitrate, which is a common form of inorganic fertilizer. Potassium nitrate provides plants with essential nutrients such as potassium and nitrogen, supporting their growth and overall health.
Potassium Nitrate+Water HNO3 (aq)+KOH (aq)-->KNO3 (aq)+H2O (l)
When potassium iodide reacts with lead nitrate, a double displacement reaction occurs. The potassium ion and the lead ion switch places to form potassium nitrate and lead iodide. This reaction results in the formation of a yellow precipitate of lead iodide.
Yes, a precipitate is formed when ammonium nitrate and potassium hydroxide are mixed. The reaction between these two compounds forms ammonium hydroxide and potassium nitrate, which results in the formation of a white precipitate of ammonium nitrate.
This question cannot be answered because if you neutralise citric acid you will get a citrate, not a nitrate. To get potassium nitrate you will need the alkali potassium hydroxide and nitric acid.
It is lead bromide and potassium nitrate
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.
The products will be lead hydroxide and sodium nitrate
The reaction between potassium hydroxide and nitric acid produces potassium nitrate, which is a common form of inorganic fertilizer. Potassium nitrate provides plants with essential nutrients such as potassium and nitrogen, supporting their growth and overall health.
Potassium Nitrate+Water HNO3 (aq)+KOH (aq)-->KNO3 (aq)+H2O (l)
When potassium iodide reacts with lead nitrate, a double displacement reaction occurs. The potassium ion and the lead ion switch places to form potassium nitrate and lead iodide. This reaction results in the formation of a yellow precipitate of lead iodide.
KCl = Potassium Chloride KOH = Potassium Hydroxide KNO3 = Potassium Nitrate KMnO4 = Potassium Permanganate
gay
Potassium Iodide- KI Lead Nitrate- Pb(NO3)2
potassium hydroxide is POH and nitric acid is HNO3