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Multiple Choice
Which property of carbon is primarily responsible for the large diversity of shapes of biological molecules?
A
Its inability to form double bonds
B
Its high electronegativity
C
Its ability to form four covalent bonds with other atoms
D
Its tendency to form ionic bonds
Verified step by step guidance
1
Understand the role of carbon in biological molecules: Carbon is a fundamental element in organic chemistry and biology because it serves as the backbone for many complex molecules.
Learn about covalent bonding: Carbon has four valence electrons, which allows it to form up to four covalent bonds with other atoms. This property is key to its versatility in forming diverse molecular structures.
Explore molecular diversity: Carbon's ability to form single, double, and even triple bonds, as well as chains, rings, and branched structures, contributes to the wide variety of biological molecules.
Compare bonding properties: Carbon does not typically form ionic bonds, and its electronegativity is moderate, not high. These properties are less relevant to the diversity of biological molecules compared to its ability to form four covalent bonds.
Conclude the primary property: The ability of carbon to form four covalent bonds is the main reason for the large diversity of shapes and structures in biological molecules, enabling the formation of complex macromolecules like proteins, carbohydrates, lipids, and nucleic acids.