Explain the various pK₁ values for these derivatives of the naturally occurring amino acid glutamic acid. Say which pk₁ belongs to which functional group and explain why they vary in the different derivatives. H₂NOC HO₂C EtO₂C NH₂ glutamic acid; pks 2.19, 4.25, and 9.67 CO₂H NH₂ glutamine; pks 2.17 and 9.13 CO₂H NH₂ CO₂H monoethyl ester; pKas 2.15 and 9.19 EtO₂C CO₂Et NH₂ diethyl ester; pK₂ 7.04 HO₂C CO₂Et NH₂ monoethyl ester; pk₂s 3.85 and 7.84

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Explain the various pKa values for these derivatives of the naturally occurring amino acid glutamic acid. Say
which pk₁ belongs to which functional group and explain why they vary in the different derivatives.
H₂NOC
HO₂C
EtO₂C
NH₂
glutamine; pks 2.17 and 9.13
NH₂
glutamic acid; pKas 2.19, 4.25, and 9.67
CO₂H
CO₂H
NH₂
CO₂H
monoethyl ester;
pKas 2.15 and 9.19
EtO₂C
CO₂Et
NH₂
diethyl ester; pK₂ 7.04
HO₂C
CO₂Et
NH₂
monoethyl ester;
pKas 3.85 and 7.84
Transcribed Image Text:Explain the various pKa values for these derivatives of the naturally occurring amino acid glutamic acid. Say which pk₁ belongs to which functional group and explain why they vary in the different derivatives. H₂NOC HO₂C EtO₂C NH₂ glutamine; pks 2.17 and 9.13 NH₂ glutamic acid; pKas 2.19, 4.25, and 9.67 CO₂H CO₂H NH₂ CO₂H monoethyl ester; pKas 2.15 and 9.19 EtO₂C CO₂Et NH₂ diethyl ester; pK₂ 7.04 HO₂C CO₂Et NH₂ monoethyl ester; pKas 3.85 and 7.84
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