Net Ionic: Pb2+(aq)+SO42-(aq) --> PbSO4(s)
Molecular: Pb(NO3)2(aq) + K2SO4(aq) --> PbSO4(s) + 2KNO3(aq)
The net ionic equation for the reaction between aqueous potassium iodide (KI) and aqueous lead(II) nitrate (Pb(NO3)2) is: 2I- (aq) + Pb2+ (aq) → PbI2 (s)
Yes, when metallic potassium is added to an aqueous solution of zinc nitrate, a single replacement reaction occurs. The potassium replaces the zinc in the compound to form potassium nitrate and zinc metal. This reaction is represented by the chemical equation: 2K(s) + Zn(NO3)2(aq) -> 2KNO3(aq) + Zn(s)
NH4NO3(aq) + KCL(aq) --> KNO3(s) + NH4CL(aq) This is a type of metathesis reaction called a double displacement reaction. Aqueous ammonium nitrate and aqueous potassium chloride yields solid potassium nitrate and aqueous ammonium chloride. Essentially the cations and anions of the reactants switch, and potassium nitrate (one of the products) precipitates out of the solution as a solid. The ammonium chloride (the other product formed) remains dissociated as ions in the solution. The above reaction is balanced.
The reaction between potassium carbonate and calcium nitrate will result in the formation of potassium nitrate and calcium carbonate. The balanced chemical equation is: K2CO3 + Ca(NO3)2 -> 2KNO3 + CaCO3.
When aqueous solutions of potassiumfluoride and hydrobromic acid are mixed, an aqueous solution of potassiumbromide and hydrofluoric acidresults. Write the net ionic equation for the reaction.
The net ionic equation for the reaction of aqueous potassium iodide with aqueous lead (II) nitrate is: 2I⁻(aq) + Pb²⁺(aq) -> PbI₂(s)
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.
The net ionic equation for the reaction between aqueous potassium iodide (KI) and aqueous lead(II) nitrate (Pb(NO3)2) is: 2I- (aq) + Pb2+ (aq) → PbI2 (s)
Yes, when metallic potassium is added to an aqueous solution of zinc nitrate, a single replacement reaction occurs. The potassium replaces the zinc in the compound to form potassium nitrate and zinc metal. This reaction is represented by the chemical equation: 2K(s) + Zn(NO3)2(aq) -> 2KNO3(aq) + Zn(s)
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.
no reaction occurs .. they just mix together.
KNO3 + H2O --> KOH + HNO3 is the full equation. However, potassium nitrate, potassium hydroxide and nitric acid are all water soluble so there is no reaction. You simply get a solution of aqueous potassium nitrate. The net equation is KNO3 ---> K+ (aq) + NO3- (aq).
NH4NO3(aq) + KCL(aq) --> KNO3(s) + NH4CL(aq) This is a type of metathesis reaction called a double displacement reaction. Aqueous ammonium nitrate and aqueous potassium chloride yields solid potassium nitrate and aqueous ammonium chloride. Essentially the cations and anions of the reactants switch, and potassium nitrate (one of the products) precipitates out of the solution as a solid. The ammonium chloride (the other product formed) remains dissociated as ions in the solution. The above reaction is balanced.
The reaction between potassium carbonate and calcium nitrate will result in the formation of potassium nitrate and calcium carbonate. The balanced chemical equation is: K2CO3 + Ca(NO3)2 -> 2KNO3 + CaCO3.
When aqueous solutions of potassiumfluoride and hydrobromic acid are mixed, an aqueous solution of potassiumbromide and hydrofluoric acidresults. Write the net ionic equation for the reaction.
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.
The balanced equation for the reaction between potassium bromide and aluminum nitrate is 6KBr + Al(NO3)3 → 2AlBr3 + 3KNO3.