In three steps the exchange of the acid H+ions each to one added hydroxide ion OH-: (HOOC)3C3H5O4 + 3 OH- --> (-OOC)3C3H5O4 + 3H2O
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 equation for potassium hydroxide (KOH) reacting with sulfuric acid (H2SO4) to form potassium sulfate (K2SO4) and water (H2O) is 2KOH + H2SO4 → K2SO4 + 2H2O.
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.
Potassium hydroxide can be made by reacting potassium carbonate with calcium hydroxide. This reaction produces potassium hydroxide and calcium carbonate as byproducts.
Hydrobromic acid reacts with NaOH to form water and sodium bromide. The balanced chemical equation is: HBr + NaOH → H2O + NaBr. Nitric acid reacts with potassium hydroxide to form water and potassium nitrate. The balanced chemical equation is: HNO3 + KOH → H2O + KNO3.
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 equation for potassium hydroxide (KOH) reacting with sulfuric acid (H2SO4) to form potassium sulfate (K2SO4) and water (H2O) is 2KOH + H2SO4 → K2SO4 + 2H2O.
The balanced chemical equation for potassium hydroxide (KOH) reacting with carbon dioxide (CO2) to form potassium carbonate (K2CO3) and water (H2O) is: 2 KOH + CO2 → K2CO3 + H2O
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.
Soap is made by reacting fats or oils with sodium hydroxide or potassium hydroxide in a process called saponification.
Potassium hydroxide can be made by reacting potassium carbonate with calcium hydroxide. This reaction produces potassium hydroxide and calcium carbonate as byproducts.
Hydrobromic acid reacts with NaOH to form water and sodium bromide. The balanced chemical equation is: HBr + NaOH → H2O + NaBr. Nitric acid reacts with potassium hydroxide to form water and potassium nitrate. The balanced chemical equation is: HNO3 + KOH → H2O + KNO3.
Soap is an organic salt made by reacting fats or oils with sodium hydroxide or potassium hydroxide through a process called saponification.
I assume a double displacement reaction. At least ideally. 2KI + CaS -> K2S + CaI2
The chemical equation for the reaction between ethanoic acid (acetic acid) and sodium hydroxide is: CH3COOH + NaOH → CH3COONa + H2O This reaction is a neutralization reaction that forms sodium acetate and water.
Potassium displaces the hydrogen in sulfuric acid when reacting with potassium hydroxide to form potassium sulfate and water.
Potassium chloride can be prepared by reacting potassium hydroxide (base) with hydrochloric acid. The chemical equation for this reaction is: KOH + HCl → KCl + H2O. The resulting potassium chloride will be in solution form and can be further purified through crystallization or evaporation.