Proteins have complex three-dimensional structures. These polymers are held into these specific shapes with a variety of intermolecular forces, covalent bonds, and ionic bonds. Proteins fold into complex tertiary shapes that are held in place with a variety of attractive forces. H₂C-CH3 CH3 H3C H₂C CH Identify the type of interaction depicted here. A) ion-ion bonds B) disulfide bonds C) hydrogen bonding between functional groups on amino acid residue side chains D) hydrogen bonding between the carbonyl and NH of the backbone of the protein E) hydrophobic attractions (London Dispersion forces) between nonpolar amino acid residue side chains
Proteins have complex three-dimensional structures. These polymers are held into these specific shapes with a variety of intermolecular forces, covalent bonds, and ionic bonds. Proteins fold into complex tertiary shapes that are held in place with a variety of attractive forces. H₂C-CH3 CH3 H3C H₂C CH Identify the type of interaction depicted here. A) ion-ion bonds B) disulfide bonds C) hydrogen bonding between functional groups on amino acid residue side chains D) hydrogen bonding between the carbonyl and NH of the backbone of the protein E) hydrophobic attractions (London Dispersion forces) between nonpolar amino acid residue side chains
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter10: Liquids And Solids
Section: Chapter Questions
Problem 146CP: Rationalize the differences in physical properties in terms of intermolecular forces for the...
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