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Q.Define carbohydrate. Write one reaction each to confirm the presence of five −OH-OH groups, a −CHO-CHO group and a >C=O>C=O group in the glucose molecule. Write the difference between glucose and sucrose. OR Write the definitions of amino acid and protein. Write the main sources of protein and its functions in the body. Explain the denaturation of protein.

Uttar Pradesh UpmspUP Board (UPMSP) Intermediate 2020Subjective· 5mImportance★★★★★
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Carbohydrates are polyhydroxy aldehydes/ketones; glucose's 5 –OH (pentaacetate), –CHO (Br2Br_2-water → gluconic acid) and carbonyl (HCN → cyanohydrin) are each confirmed by a reaction; glucose is a reducing monosaccharide, sucrose a non-reducing disaccharide. (Main choice of the OR.)

(I answer the main stem of the OR question.)

Definition: Carbohydrates are optically active polyhydroxy aldehydes or polyhydroxy ketones, or substances that give these on hydrolysis. (General formula often Cx(H2O)yC_x(H_2O)_y.)

Confirming the functional groups in glucose (C6H12O6C_6H_{12}O_6):

  1. Five –OH groups: glucose reacts with acetic anhydride to give glucose pentaacetate, showing five hydroxyl groups:

    C6H7O(OH)5+5(CH3CO)2O→C6H7O(OCOCH3)5+5CH3COOHC_6H_7O(OH)_5+5(CH_3CO)_2O\to C_6H_7O(OCOCH_3)_5+5CH_3COOH

  2. –CHO (aldehyde) group: mild oxidation by bromine water gives a six-carbon carboxylic acid, gluconic acid, proving a terminal –CHO:

    CH2OH(CHOH)4CHO+[O]→Br2/H2OCH2OH(CHOH)4COOH (gluconic acid)CH_2OH(CHOH)_4CHO+[O]\xrightarrow{Br_2/H_2O}CH_2OH(CHOH)_4COOH\ (\text{gluconic acid})

    (It also reduces Tollen's/Fehling's reagents — another proof of the aldehyde.)

  3. >C=O (carbonyl) group: glucose adds HCN to form a cyanohydrin, confirming a carbonyl group:

    CH2OH(CHOH)4CHO+HCN→CH2OH(CHOH)4CH(OH)CNCH_2OH(CHOH)_4CHO+HCN\to CH_2OH(CHOH)_4CH(OH)CN

    (It also forms an oxime with NH2OHNH_2OH.)

Difference between glucose and sucrose: …

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