Exam 13: Principles of Bioenergetics

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Muscle contraction involves the conversion of:

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All of the following contribute to the large,negative,free-energy change upon hydrolysis of "high-energy" compounds except:

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For the reaction A \rightarrow B,the Keq' is 104.If a reaction mixture originally contains 1 mmol of A and no B,which one of the following must be true?

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The reaction A + B \rightarrow C has a Δ\Delta G'° of -20 kJ/mol at 25° C.Starting under standard conditions,one can predict that:

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For the reaction A \rightarrow B,the Keq' is 10-6.If a reaction mixture originally contains 1 mmol of A and 1 mmol of B,which one of the following must be true?

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When a mixture of glucose 6-phosphate and fructose 6-phosphate is incubated with the enzyme phosphohexose isomerase (which catalyzes the interconversion of these two compounds)until equilibrium is reached,the final mixture contains twice as much glucose 6-phosphate as fructose 6-phosphate.Which one of the following statements is best applied to this reaction outlined below? (R = 8.315 J/mol·K;T = 298 K) Glucose 6-phosphate \rightarrow fructose 6-phosphate

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The hydrolysis of ATP has a large negative Δ\Delta G'°;nevertheless it is stable in solution due to:

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Which of the following is not nucleophilic?

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Explain the relationships among the change in the degree of order,the change in entropy,and the change in free energy that occur during a chemical reaction.

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If the Δ\Delta G'° of the reaction A \rightarrow B is -40 kJ/mol,under standard conditions the reaction:

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Explain what is meant by the statement: "Standard free-energy changes are additive." Give an example of the usefulness of this additive property in understanding how cells carry out thermodynamically unfavorable chemical reactions.

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Biological oxidation-reduction reactions always involve:

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The standard free-energy changes for the reactions below are given. Phosphocreatine \rightarrow creatine + Pi Δ\Delta G'° = -43.0 kJ/mol ATP \rightarrow ADP + Pi Δ\Delta G'° = -30.5 kJ/mol What is the overall Δ\Delta G'° for the following reaction? Phosphocreatine + ADP \rightarrow creatine + ATP

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