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Q: Why Is Carbon So Important in Biological Molecules?
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Q: what is assimilable organic carbon
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What makes Carbon so important to life? Think organic compounds and the properties of Carbon.
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- Which of the following statements is NOT true of biological organic molecules? None of the other four answers (all are true) They’re usually polymers formed from subunits (monomers) Their atoms are mostly or entirely covalently bonded Monomers are linked (bonded) together by hydrolysis (“water splitting”) Always contain hydrogen and carbonWhich statement about carbon is true? Group of answer choices Carbon has 4 valence electrons. Carbon can form 2 double bonds with other atoms by sharing two pairs of electrons with each. In HCN, carbon shares a single bond with H and a triple bond with N. All previous answers None of these answersWhich statement about functional groups is true? Group of answer choices Functional groups may participate in chemical reactions. The -OH group is called a hydroxyl group. Functional groups attach to carbon skeletons. All previous answers None of these answers
- Organic molecules all contain carbon. Describe the structure and function of each of these organic molecules. carbohydrates, lipids, proteins, nucleic acids.Describe the chemistry of carbon and the difference betweeninorganic and organic compounds.Which macromolecules can be used as an organic fuel for cellular respiration? carbohydrates, proteins, and lipids carbohydrates and lipids only glucose carbohydrates, proteins, lipids, and nucleic acids
- Which of the following statements is NOT true of biological organic molecules? Their atoms are mostly or entirely covalently bonded None of the other four answers (all are true) Monomers are linked (bonded) together by hydrolysis ("water splitting") They're usually polymers formed from subunits (monomers) Always contain hydrogen and carbonwhat is assimilable organic carbonCarbon is able to form an immense diversity of organic molecules because of carbon's O tendency to form covalent bonds. O ability to bond with up to four other atoms. ability to form ionic bonds with other elements ability to bond together to form extensive, branched, or unbranched "carbon skeletons." capacity to form single and double bonds.