CH3COOH + NaOH = CH3COONa + H2O
The reaction of acetic acid and sodium hydroxide will form sodium acetate and water. The chloroform is not involved in the reaction and will remain unchanged. The balanced chemical equation for the reaction is: CH3COOH (acetic acid) + NaOH (sodium hydroxide) -> CH3COONa (sodium acetate) + H2O (water)
The reaction between sodium hydroxide (NaOH) and acetic acid (CH3COOH) forms sodium acetate (CH3COONa) and water (H2O). The balanced chemical equation is: CH3COOH + NaOH -> CH3COONa + H2O.
The reaction between dissolved sodium hydroxide and aqueous hydrogen sulfate forms aqueous sodium sulfate and water vapor. This is a neutralization reaction where sodium hydroxide and hydrogen sulfate ions combine to form sodium sulfate and water. The balanced chemical equation for this reaction is 2NaOH + H2SO4 -> Na2SO4 + 2H2O.
The complete molecular equation for the reaction between acetic acid (CH3COOH) and sodium hydroxide (NaOH) is: CH3COOH (aq) + NaOH (aq) -> CH3COONa (aq) + H2O (l)
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.
The reaction of acetic acid and sodium hydroxide will form sodium acetate and water. The chloroform is not involved in the reaction and will remain unchanged. The balanced chemical equation for the reaction is: CH3COOH (acetic acid) + NaOH (sodium hydroxide) -> CH3COONa (sodium acetate) + H2O (water)
The reaction between sodium hydroxide (NaOH) and acetic acid (CH3COOH) forms sodium acetate (CH3COONa) and water (H2O). The balanced chemical equation is: CH3COOH + NaOH -> CH3COONa + H2O.
The reaction between dissolved sodium hydroxide and aqueous hydrogen sulfate forms aqueous sodium sulfate and water vapor. This is a neutralization reaction where sodium hydroxide and hydrogen sulfate ions combine to form sodium sulfate and water. The balanced chemical equation for this reaction is 2NaOH + H2SO4 -> Na2SO4 + 2H2O.
The complete molecular equation for the reaction between acetic acid (CH3COOH) and sodium hydroxide (NaOH) is: CH3COOH (aq) + NaOH (aq) -> CH3COONa (aq) + H2O (l)
The balanced equation for the saponification of glyceryl tristearate (C57H110O6) with aqueous sodium hydroxide (NaOH) is: C57H110O6 + 3NaOH → 3NaC17H35COO + C3H5(OH)3 (glycerol) This reaction produces sodium stearate (the soap) and glycerol.
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.
The chemical formula for the aqueous solution of sodium hydroxide is NaOH (sodium hydroxide) dissolved in water.
The balanced chemical equation for the reaction between fumaric acid and aqueous sodium hydroxide is: C4H4O4 + 2NaOH → Na2C4H2O4 + 2H2O
H2SO4 + 2NaOH ---> Na2SO4 + 2H20 sulphuric acid + sodium hydroxide ----> sodium sulphate + water
Neutralisation. Sodium hydroxide + Acetic Acid = Sodium Acetate + Water. NaOH + CH3COOH = CH3COONa + H2O NB THe modern IUPAC name for Acetic Acid is Ethanoic Acid/Sodium Ethanoate.
Sodium acetate is typically produced by the reaction of acetic acid with sodium hydroxide or sodium carbonate. This reaction forms sodium acetate and water. The compound can also be obtained from the reaction of sodium hydroxide with acetic anhydride.
The balanced chemical equation for this reaction is 2HBr (aq) + 2NaOH (aq) → 2H2O (l) + 2NaBr (aq). This balanced equation represents the reaction between hydrobromic acid and sodium hydroxide to produce water and sodium bromide. Each side of the equation has the same number of atoms for each element.