Potassium nitrate is too stable and so is silver for these two species to react. There is thus no balanced equation.
When silver nitrate reacts with potassium iodide, a precipitation reaction occurs where silver iodide is formed. The balanced chemical equation for this reaction is: AgNO3 + KI -> AgI + KNO3. The silver iodide formed will appear as a yellow solid precipitate.
The balanced equation for sodium bromide (NaBr) and silver nitrate (AgNO3) is: 2NaBr + AgNO3 → 2NaNO3 + AgBr.
Yes, silver and calcium nitrate will react to form silver nitrate and calcium. The balanced equation for this reaction is: 3Ag + 2Ca(NO3)2 -> 3AgNO3 + 2Ca
The balanced equation for the reaction between iron and silver nitrate is: 2Fe + 3AgNO3 -> 3Ag + Fe2(NO3)3
The balanced equation for the reaction is: 2AgNO3 + 2NaClO3 -> 2NaNO3 + AgClO3
When silver nitrate reacts with potassium iodide, a precipitation reaction occurs where silver iodide is formed. The balanced chemical equation for this reaction is: AgNO3 + KI -> AgI + KNO3. The silver iodide formed will appear as a yellow solid precipitate.
Silver nitrate + Potassium iodide ----> Silver iodide + Potassium nitrate AgNO3 + KI ----> AgI + KNO3
Potassium iodide + silver nitrate --> Silver iodide and potassium nitrate The chemical equation is: K+I- (aq) + Ag+[NO3]- (aq) --> AgI (s) + K+[NO3]- (aq)
The balanced equation for sodium bromide (NaBr) and silver nitrate (AgNO3) is: 2NaBr + AgNO3 → 2NaNO3 + AgBr.
Yes, silver and calcium nitrate will react to form silver nitrate and calcium. The balanced equation for this reaction is: 3Ag + 2Ca(NO3)2 -> 3AgNO3 + 2Ca
The balanced equation for the reaction between iron and silver nitrate is: 2Fe + 3AgNO3 -> 3Ag + Fe2(NO3)3
The balanced equation for the reaction is: 2AgNO3 + 2NaClO3 -> 2NaNO3 + AgClO3
The balanced equation for the reaction between silver nitrate (AgNO3) and copper nitrate (Cu(NO3)2) is: 2AgNO3 + Cu -> Cu(NO3)2 + 2Ag
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.
Do you want that for Monopotassium phosphate, dipotassium phosphate, or tripotassium phosphate? --------------------------------- To clarify for the previous answerer, ionic compounds inherently don't use the mono-, di-, or tri- system used for molecular compounds. Instead, when a cation and an anion is supplied, the ionic compound assumes the number of cations and anions that will generate a neutral ionic compound. In this case, since K is 1+ and PO4 is 3-, the compound potassium phosphate always refers to K3PO4. Therefore: 3AgNO3 + K3PO4 -> 3KNO3 + Ag3PO4
No Reaction
balanced equation:- AgNO3(aq) + HBr(aq) ----> AgBr(s) + HNO3(aq)