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University of Colorado Boulder BCHM 4611 Final Exam | Questions with 100% Verified Answers | Latest Update

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University of Colorado Boulder BCHM 4611 Final Exam | Questions with 100% Verified Answers | Latest Update

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University of Colorado Boulder BCHM 4611 Final Exam |
Questions with 100% Verified Answers | Latest Update
Question:
Prokaryotes

Answer:
2 domains: archaea and bacteria, exclusively single cell organisms, no nucleus


Question:
Benefits of being prokaryotic

Answer:
More adaptable to changing environments, species have evolved to colonize extreme environments
due to their simplicity and rapid cell division


Question:
Eukaryotes

Answer:
Multicellular and unicellular organisms, more complex cellular organization with
membrane-enclosed organelles that have specialized functions, DNA stored in nucleus


Question:
Classes of monomers

Answer:
Amino acids, monosaccharides, nucleotides, and lipids


Question:
Classes of polymers

Answer:
Polypeptides, polysaccharides, nucleic acids (no true polymers for lipids - form non- covalent
aggregates)


Question:
Polypeptide/protein

Answer:
Polymer of amino acids linked together by peptide bonds


Question:
Residue

Answer:

,Monomer that has been incorporated into a polymer


Question:
Protein major roles

Answer:
Carry out metabolic reactions, support cellular structures


Question:
Protein minor role

Answer:
Store energy


Question:
Nucleic acid major role

Answer:
Encode information


Question:
Nucleic acid minor roles

Answer:
Carry out metabolic reactions, support cellular structures


Question:
Polysaccharides major roles

Answer:
Store energy, support cellular structures


Question:
Polysaccharides minor role

Answer:
Encode information


Question:
Open system

Answer:
Energy can be transferred between the system and its surroundings


Question:
Closed system

, Answer:
Only exchanges energy with its surroundings, not matter


Question:
Isolated system

Answer:
Does not exchange energy or matter with its surroundings


Question:
Gibbs free energy (G)

Answer:
Thermodynamic quantity whose change indicates the spontaneity of a process. For
spontaneous/favorable processes, ΔG < 0, whereas for a process at equilibrium, ΔG = 0


Question:
Enthalpy (H)

Answer:
Heat content of a biochemical system


Question:
Entropy (S)

Answer:
Degree of randomness or disorder of a system


Question:
Free energy change equation

Answer:
ΔG = ΔH - TΔS


Question:
Coupled reaction

Answer:
Reactions that occur in concert with each other; product of the first reaction is a reactant for the
second reaction; ΔG values are added when reactions are combined


Question:
Why is ΔG independent of path chosen?

Answer:

, Depends only on the initial and final states of the system, without regard to the specific chemical or
mechanical work that occurred in going from one state to the other


Question:
Oxidation

Answer:
Loss of electrons through the addition of oxygen or removal of hydrogen; oxidation of carbon is
thermodynamically favorable so it can be coupled with otherwise unfavorable processes


Question:
Catabolism

Answer:
Breaking down molecules, yielding energy; some of this free energy may be conserved in the
formation of nucleotide triphosphates (NTPs) such as ATP or reduced cofactors such as NADP+ or Q


Question:
Anabolism

Answer:
Building complex molecules at the expense of energy


Question:
H2O structure/geometry

Answer:
Central oxygen atom forms covalent bonds with two hydrogen atoms, leaving two unshared pairs of
electrons; tetrahedral geometry


Question:
How does water's structure affect its properties and interactions with other molecules?

Answer:
It is polar (uneven distribution of charge) which allows it to form hydrogen bonds with other water
molecules, this makes water highly cohesive; has high dielectric constant which means ionic
compounds dissolve in it well; polar compounds also dissolve well due to hydrogen bonding with
water


Question:
Covalent bond

Answer:
Formed when two atoms share electrons

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