The amino acid cysteine has three acidic protons. The pKa values for cysteine are: pKa1 = 1.7, pKa2 = 8.36, and pKa3 10.74. Determine the predominant form of cysteine at the given pH values. Here H3A represents the fully protonated cysteine molecule, H2A represents the singly deprotonated cysteine molecule (no net charge), HA represents the doubly deprotonated cysteine molecule, and A2- represents the fully deprotonated cysteine molecule. pH = 7.65 pH = 2.42 pH = 10.74 pH = 10.02

Fundamentals Of Analytical Chemistry
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ISBN:9781285640686
Author:Skoog
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Chapter15: Complex Acid/base Systems
Section: Chapter Questions
Problem 15.36QAP
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The amino acid cysteine has three acidic protons. The pK, values for cysteine are: pKa1 = 1.7, pKa2 8.36, and pKa3-10.74. Determine the predominant form of cysteine at the
given pH values. Here H3A* represents the fully protonated cysteine molecule, H2A represents the singly deprotonated cysteine molecule (no net charge), HA represents the
doubly deprotonated cysteine molecule, and A2- represents the fully deprotonated cysteine molecule.
pH-7.65
pH-2.42
pH-10.74
pH = 10.02
Transcribed Image Text:The amino acid cysteine has three acidic protons. The pK, values for cysteine are: pKa1 = 1.7, pKa2 8.36, and pKa3-10.74. Determine the predominant form of cysteine at the given pH values. Here H3A* represents the fully protonated cysteine molecule, H2A represents the singly deprotonated cysteine molecule (no net charge), HA represents the doubly deprotonated cysteine molecule, and A2- represents the fully deprotonated cysteine molecule. pH-7.65 pH-2.42 pH-10.74 pH = 10.02
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