ch3cooh+hcl=h2o+ch3cocl
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 hydrogen peroxide and acetic acid produces water and oxygen gas as products. This reaction is known as a decomposition 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 reaction between hydrofluoric acid (HF) and ammonia (NH3) produces ammonium fluoride (NH4F). The balanced equation for this reaction is: HF + NH3 → NH4F.
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.
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 hydrogen peroxide and acetic acid produces water and oxygen gas as products. This reaction is known as a decomposition 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 reaction between hydrofluoric acid (HF) and ammonia (NH3) produces ammonium fluoride (NH4F). The balanced equation for this reaction is: HF + NH3 → NH4F.
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.
The reaction between zinc and acetic acid is exothermic. This is because it releases energy in the form of heat during the reaction.
The reaction between hydrofluoric acid (HF) and potassium hydroxide (KOH) will result in the formation of potassium fluoride (KF) and water (H2O). This is a neutralization reaction where the acid and base are reacting to form a salt and water.
The reaction between glycerol and acetic acid forms glycerol acetate and water. This reaction is an esterification process, where the hydroxyl groups of glycerol react with the carboxyl group of acetic acid to form the ester glycerol acetate.
The reaction between acetic acid (CH3COOH) and hydrochloric acid (HCl) results in the formation of water (H2O) and the salt called sodium acetate (CH3COONa). This reaction is a neutralization reaction where the acidic properties of both acids are neutralized.
Acetic acid's systematic name is ethanoic acid (CH3COOH)Hydrofluoric acid's molecular formula is HF a combination of hydrogen and fluroine, which is acidic dissolved in water.
No, hydrofluoric acid is a weak monoprotic acid, meaning it can donate one proton per molecule in a reaction.
This is a chemical reaction (dito change).