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Q.(i) Write IUPAC name of dicarboxylic acid used in formation of Nylon-6,6.

(ii) Explain reason: (A) Acetic acid is weak acid as compared to formic acid. (B) Boiling point of carboxylic acids is more than aldehydes having comparable molecular masses.
(iii) Draw the orbital diagram of carbonyl group. (1+2+1=4) OR
(i) Write the name of ester used as food preservative.
(ii) Explain the following terms: (A) Rosenmund reduction (B) Cannizzaro reaction.
(iii) Draw the tetrahedral intermediate formed by nucleophilic attack on carbonyl carbon in nucleophilic addition reaction.
Rajasthan RbseRajasthan Board Senior Secondary Examination 2022Subjective· 4mImportance★★★★★
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Figure — Orbital diagram of the carbonyl group C=O. Show an sp2-hybridised carbon with THREE sigma bonds in a
Figure — Orbital diagram of the carbonyl group C=O. Show an sp2-hybridised carbon with THREE sigma bonds in a

Nylon-6,6 is made from hexanedioic acid (adipic acid); acetic acid is a weaker acid than formic acid because of the electron-donating methyl group, and carboxylic acids boil higher than aldehydes of similar mass because of hydrogen-bonded dimer formation; the carbonyl group is sp2 hybridised with a sigma framework plus one pi bond.

(i) IUPAC name of the dicarboxylic acid used in Nylon-6,6:

Nylon-6,6 is formed by the condensation polymerisation of hexamethylenediamine [H2N(CH2)6NH2] with adipic acid [HOOC(CH2)4COOH]. The IUPAC name of adipic acid is hexanedioic acid.

(ii)(A) Acetic acid is a weaker acid than formic acid:

In acetic acid (CH3COOH), the -CH3 group attached to the -COOH is electron-donating (+I inductive effect). This pushes electron density towards the -COO- group of the conjugate base (acetate ion), which destabilises the negative charge and makes it less willing to lose H+ - so acetic acid is a weaker acid.

In formic acid (HCOOH), there is only an H atom (no alkyl group, no +I effect) attached to -COOH, so its conjugate base (formate ion, HCOO-) is comparatively more stable (no destabilising electron push), making formic acid a stronger acid than acetic acid.

(ii)(B) Boiling point of carboxylic acids is more than aldehydes of comparable molecular mass:

Carboxylic acids have a -COOH group that can act as both a hydrogen-bond donor (via O-H) and acceptor (via C=O), and typically exist as hydrogen-bonded DIMERS in the liquid/vapour state, held together by TWO strong intermolecular hydrogen bonds between pairs of molecules.

Aldehydes have a C=O group but NO O-H bond, so they cannot form such hydrogen bonds with each other - only weaker dipole-dipole and van der Waals forces act between aldehyde molecules.

Because breaking the strong hydrogen-bonded dimers of a carboxylic acid requires much more energy than overcoming the weaker dipole-dipole forces of a comparable aldehyde, carboxylic acids have significantly higher boiling points than aldehydes of similar molecular mass.

(iii) Orbital diagram of the carbonyl group (C=O): …

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