The preparation equation depends on the route by which this compound is prepared. A simple route is neutralization of acetic acid with potassium hydroxide:
KOH + CH3COOH --> H2O + K+CH3COO-
The balanced chemical equation for the reaction between barium acetate and potassium iodide is: Ba(CH3COO)2 + 2KI -> BaI2 + 2KCH3COO
The reaction between potassium phosphate (K3PO4) and barium acetate (Ba(C2H3O2)2) will produce barium phosphate (Ba3(PO4)2) and potassium acetate (KCH3COO). The balanced chemical equation for this reaction is 3K3PO4 + Ba(C2H3O2)2 -> Ba3(PO4)2 + 6KCH3COO.
The chemical equation for the reaction between acetic acid (CH3COOH) and potassium hydroxide (KOH) is: CH3COOH + KOH -> CH3COOK + H2O. This reaction is a neutralization reaction that forms potassium acetate (CH3COOK) and water (H2O).
The chemical formula of potassium ethanoate is CH3COOK. It is the potassium salt of acetic acid (CH3COOH).
The balanced chemical equation for acetic acid (HC2H3O2) in vinegar reacting with potassium hydroxide (KOH) is: HC2H3O2 + KOH -> KC2H3O2 + H2O This balanced equation shows that one molecule of acetic acid reacts with one molecule of potassium hydroxide to form one molecule of potassium acetate and one molecule of water.
The balanced chemical equation for the reaction between barium acetate and potassium iodide is: Ba(CH3COO)2 + 2KI -> BaI2 + 2KCH3COO
The formula for potassium sulphite is K2SO3.
The reaction between potassium phosphate (K3PO4) and barium acetate (Ba(C2H3O2)2) will produce barium phosphate (Ba3(PO4)2) and potassium acetate (KCH3COO). The balanced chemical equation for this reaction is 3K3PO4 + Ba(C2H3O2)2 -> Ba3(PO4)2 + 6KCH3COO.
The chemical equation for the reaction between acetic acid (CH3COOH) and potassium hydroxide (KOH) is: CH3COOH + KOH -> CH3COOK + H2O. This reaction is a neutralization reaction that forms potassium acetate (CH3COOK) and water (H2O).
Pb2+ + I- --> PbI2(s)potassium and acetate ions are left out of the equation, because they don't react (stay unchanged in solution)
The net ionic equation for sodium acetate (NaCH3COO) and potassium nitrate (KNO3) is: CH3COO^- + K^+ -> KCH3COO
The chemical formula of potassium ethanoate is CH3COOK. It is the potassium salt of acetic acid (CH3COOH).
NaC2H3O2and KBr
The molecular equation for lead(II) acetate reacting with potassium chromate is: Pb(C2H3O2)2 + K2CrO4 -> PbCrO4 + 2KCH3COO
KC2H3O2 represents potassium acetate, which is a salt commonly used in the medical and chemical industries. It has various applications, such as a food additive, a deicer for runways, and a buffering agent in chemistry.
The balanced chemical equation for acetic acid (HC2H3O2) in vinegar reacting with potassium hydroxide (KOH) is: HC2H3O2 + KOH -> KC2H3O2 + H2O This balanced equation shows that one molecule of acetic acid reacts with one molecule of potassium hydroxide to form one molecule of potassium acetate and one molecule of water.
The balanced chemical equation for neutralizing aqueous acetic acid (HC2H3O2) with aqueous potassium hydroxide (KOH) is: HC2H3O2 + KOH → KC2H3O2 + H2O This reaction forms potassium acetate (KC2H3O2) and water (H2O) when acetic acid reacts with potassium hydroxide in a 1:1 molar ratio.