This is an ESTERification reaction.
CH3(CH2)6CH2OH + CH3COOH < ==H^+==> CH3COOCH2(CH2)6CH3 + H2O
The products are Octyl ethanoate(acetate) and water.
A little Sulphuric Acid (H^+) is used to speed up the relux reaction.
The balanced equation for the reaction between salicylic acid and acetic anhydride to form aspirin (acetylsalicylic acid) is: salicylic acid + acetic anhydride → aspirin + acetic acid.
The reaction between salicylic acid and acetic anhydride involves the substitution of a hydroxyl group in salicylic acid with an acetyl group from acetic anhydride. This reaction is catalyzed by an acid, typically sulfuric acid, and results in the formation of aspirin and acetic acid as byproducts.
In a chemical reaction involving acetic acid, not all of the acetic acid molecules will dissociate completely, even at equilibrium. This is because acetic acid is a weak acid and only partially dissociates into ions in solution.
No, acetic acid and acetic acid ester are not the same thing. Acetic acid is a simple organic compound with the chemical formula CH3COOH, while acetic acid ester is a compound formed by the reaction of acetic acid with an alcohol. Esterification of acetic acid forms esters, which are often used as fragrances or flavorings.
The reaction between hydrogen peroxide and acetic acid produces water and oxygen gas as products. This reaction is known as a decomposition reaction.
The balanced equation for the reaction between salicylic acid and acetic anhydride to form aspirin (acetylsalicylic acid) is: salicylic acid + acetic anhydride → aspirin + acetic acid.
The reaction between salicylic acid and acetic anhydride involves the substitution of a hydroxyl group in salicylic acid with an acetyl group from acetic anhydride. This reaction is catalyzed by an acid, typically sulfuric acid, and results in the formation of aspirin and acetic acid as byproducts.
When zinc is reacted with acetic anhydride and glacial acetic acid, a complex called zinc acetate is formed. The reaction typically involves the displacement of acetic anhydride by acetic acid to form zinc acetate. The overall reaction is a redox reaction where zinc is oxidized and acetic anhydride is reduced.
In a chemical reaction involving acetic acid, not all of the acetic acid molecules will dissociate completely, even at equilibrium. This is because acetic acid is a weak acid and only partially dissociates into ions in solution.
No, acetic acid and acetic acid ester are not the same thing. Acetic acid is a simple organic compound with the chemical formula CH3COOH, while acetic acid ester is a compound formed by the reaction of acetic acid with an alcohol. Esterification of acetic acid forms esters, which are often used as fragrances or flavorings.
The reaction between hydrogen peroxide and acetic acid produces water and oxygen gas as products. This reaction is known as a decomposition reaction.
Aspirin is made when salicylic acid and acetic anhydride is reacted in the presence of an acid catalyst such as H2SO4. Acetylsalicylic acid (aspirin) and acetic acid is formed. The reaction is an esterification reaction.
The chemical reaction between acetic anhydride and salicylic acid is called esterification. This reaction forms acetylsalicylic acid, which is commonly known as aspirin.
The formation of an ester from acetic acid involves a reaction with an alcohol in the presence of an acid catalyst. This reaction is called Fischer esterification and leads to the formation of an ester and water. The general reaction equation is: Acetic acid + Alcohol → Ester + Water
When acetic acid reacts with hydrofluoric acid, they undergo an acid-base reaction to form water and a salt called sodium acetate. The equation for the reaction is CH3COOH (acetic acid) + HF (hydrofluoric acid) → H2O (water) + NaC2H3O2 (sodium acetate).
Acetic acid can be converted to acetaldehyde using an oxidizing agent such as silver oxide or chromic acid. The reaction involves breaking the carbon-carbon bond in acetic acid to form acetaldehyde as a primary product. This reaction is commonly known as dehydrogenation of acetic acid.
The reaction equation for the synthesis of 1-butanol from acetic acid is: CH3COOH 3H2 CH3CH2CH2CH2OH H2O