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Question: Aspirin is administered in the form of a salt or in the presence of \( NaHC{O_3} \) . This is to avo...

Aspirin is administered in the form of a salt or in the presence of NaHCO3NaHC{O_3} . This is to avoid the side effects of a compound X obtained during hydrolysis. Here X is.
(A) Sulphuric acid
(B) Acetic acid
(C) Phenol
(D) 2-hydroxy benzoic acid

Explanation

Solution

We know that Aspirin is a drug that is used as a medication to reduce pain, fever or inflammation on the skin. Usually, people take aspirin in cases of severe migraine or headache. Originally Aspirin is a chemical compound called acetylsalicylic acid or the ASA. The compound X is a weak acid.

Complete Step by Step answer:
We know that aspirin is chemically the acetylsalicylic acid and is a drug used for medical purposes. The acetylsalicylic acid has the chemical formula C9H8O4{C_9}{H_8}{O_4} . However, it is an aromatic compound with an acetoxy (CH3C(=O)O)\left( {C{H_3} - C\left( { = O} \right) - O} \right) group as the substituent and a carboxylic acid (C(=O)OH)\left( {C( = O)OH} \right) functional group.
Aspirin is formed by a method called the esterification. The esterification involves Salicylic acid and an acetic anhydride as reactants which during esterification causes a chemical reaction that turns the salicylic acid’s hydroxyl (OH)\left( {OH} \right) functional group into an ester group (ROCOCH3)\left( {R - OCOC{H_3}} \right) , thus giving us acetylsalicylic acid (called as aspirin) and acetic acid as a by-product.
Now we know that aspirin when manufactured as a drug are manufactured in the mild presence of sodium bicarbonate (NaHCO3)\left( {NaHC{O_3}} \right) . This is done so because aspirin can undergo hydrolysis in the presence of moisture to decompose as salicylic acid and acetic acid.
Thus, the undesirable compound X is acetic acid.

Note:
The presence of acetic acid can be identified by the vinegar-like smell on your Aspirin tablets. If you experience such smell, then consider not taking them because the acetic acid can cause side effects.