sodium acetate = Na+C2H3O2- (a salt)
nitric acid = HNO3
equation:
NaC2H3O2 + HNO3 --> NaNO3 + C2H4O2
The balanced equation for Sodium Nitrate (NaNO3) and Potassium Chloride (KCl) is: 2NaNO3 + KCl -> 2NaCl + KNO3
The net ionic equation for potassium chloride (KCl) and sodium nitrate (NaNO3) is: K+(aq) + NO3-(aq) -> KNO3(aq)
Yes, under the right conditions, sodium acetate is flammable. In fact, a mixture of sodium acetate and potassium nitrate, when intimately mixed, and heated, will explode -- sodium acetate is incompatible with strong oxidizers. The reaction is said to be about "one third as powerful" as that between potassium nitrate, potassium carbonate, and sulfur (in a 3:2:1 ratio -- "yellow powder") under the same conditions of slow heating. Do not try this at home (but, if you must, stick to quantities of a gram or less, and use hearing and eye protection, and keep away from anything flammable).
The word equation for silver nitrate plus sodium chloride is "silver nitrate + sodium chloride → silver chloride + sodium nitrate". The symbol equation for this reaction is "AgNO3 + NaCl → AgCl + NaNO3".
Word equation: Lead(II) nitrate + Sodium iodide -> Lead(II) iodide + Sodium nitrate. Balanced chemical equation: Pb(NO3)2 + 2NaI -> PbI2 + 2NaNO3.
The balanced molecular equation for the reaction between sodium acetate (NaC2H3O2) and silver nitrate (AgNO3) is: 2NaC2H3O2 + AgNO3 -> 2AgC2H3O2 + NaNO3
The balanced equation for Sodium Nitrate (NaNO3) and Potassium Chloride (KCl) is: 2NaNO3 + KCl -> 2NaCl + KNO3
The net ionic equation for the reaction between sodium acetate (NaCH3COO) and silver nitrate (AgNO3) is: CH3COO- + Ag+ -> AgCH3COO. This simplified equation highlights the formation of a precipitate of silver acetate (AgCH3COO) when silver ions (Ag+) react with acetate ions (CH3COO-).
The net ionic equation for the reaction between sodium acetate (NaC2H3O2) and silver nitrate (AgNO3) is: CH3COONa(aq) + AgNO3(aq) → AgCH3COO(s) + NaNO3(aq)
The skeleton equation for sodium nitrate (NaNO3) plus potassium chloride (KCl) is NaNO3 + KCl -> NaCl + KNO3.
The molecular equation for potassium chloride and sodium nitrate is 2KCl(aq) + NaNO3(aq) → 2NaCl(aq) + KNO3(aq).
The net ionic equation for potassium chloride (KCl) and sodium nitrate (NaNO3) is: K+(aq) + NO3-(aq) -> KNO3(aq)
The reaction between egg albumin, potassium nitrate, and sodium carbonate would not result in a single equation since egg albumin is a complex mixture of proteins. Each component would likely undergo different reactions when mixed with potassium nitrate and sodium carbonate. It would be necessary to isolate and identify the specific components of the egg albumin that are reacting with the potassium nitrate and sodium carbonate to write a balanced chemical equation for the overall reaction.
When sodium nitrate (NaNO3) reacts with potassium iodide (KI), it forms sodium iodide (NaI) and potassium nitrate (KNO3). This reaction is a double replacement reaction, where the positive ions from each compound switch places. The chemical equation for this reaction is: NaNO3 + KI → NaI + KNO3.
The molecular formula for sodium acetate is CH3COONa and for silver nitrate it is AgNO3.
No, it is not possible to directly change potassium nitrate into sodium nitrate. These are two different compounds with different chemical compositions and properties. To obtain sodium nitrate from potassium nitrate, you would need to first separate the potassium and then introduce sodium in a separate chemical reaction.
Yes, under the right conditions, sodium acetate is flammable. In fact, a mixture of sodium acetate and potassium nitrate, when intimately mixed, and heated, will explode -- sodium acetate is incompatible with strong oxidizers. The reaction is said to be about "one third as powerful" as that between potassium nitrate, potassium carbonate, and sulfur (in a 3:2:1 ratio -- "yellow powder") under the same conditions of slow heating. Do not try this at home (but, if you must, stick to quantities of a gram or less, and use hearing and eye protection, and keep away from anything flammable).