A tetrapeptide has \( -\mathrm{COOH} \) group on alanine. This produces glycine (Gly), valine (V...
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A tetrapeptide has \( -\mathrm{COOH} \) group on alanine. This produces glycine (Gly), valine (Val), phenyl alanine (Phe) and alanine (Ala) on complete hydrolysis. For this tetrapeptide, the number of possible sequences (primary structures) with \( -\mathrm{NH}_{2} \) group attached to a chiral center is
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