FUNDAMENTALS OF BIOCHEMISTRY-ACCESS
5th Edition
ISBN: 9781119498742
Author: Voet
Publisher: WILEY
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Chapter 14, Problem 31CQ
Summary Introduction
To determine: The oxidized compound.
Concept introduction: Oxidation is a simple
Summary Introduction
To determine: The reduced compound.
Concept introduction: Oxidation is a simple chemical reaction that involves the gain of oxygen or loss of hydrogen. It also involves loss of electrons from the reactant. In a reduction reaction, loss of oxygen or gain of hydrogen occurs. This reaction also involves the gain of electrons.
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Chapter 14 Solutions
FUNDAMENTALS OF BIOCHEMISTRY-ACCESS
Ch. 14 - Prob. 1ECh. 14 - 2. Methanogens are prokaryotes that produce...Ch. 14 - Prob. 3ECh. 14 - Prob. 4ECh. 14 - Prob. 5ECh. 14 - 6. In the partial reactions shown below, is the...Ch. 14 - Prob. 7ECh. 14 - 8. Choose the best definition for a near...Ch. 14 - Prob. 9ECh. 14 - 10. Nearly all enzymes that require a nicotinamide...
Ch. 14 - 11. Assuming 100% efficiency of energy...Ch. 14 - 12. Assuming 100% efficiency of energy...Ch. 14 - Prob. 13ECh. 14 - 14. The reaction catalyzed by malate...Ch. 14 - TABLE 14-4 Standard Reduction Potentials of Some...Ch. 14 - Prob. 16ECh. 14 - 17. Under standard conditions, will the following...Ch. 14 - 18. Under standard conditions, will the following...Ch. 14 - Prob. 19ECh. 14 - 20. Why do DNA chips often contain segments...Ch. 14 - Prob. 21ECh. 14 - Prob. 22ECh. 14 - 23. A certain metabolic reaction takes the form A...Ch. 14 - 24. Cells carry out anabolic as well as catabolic...Ch. 14 - Prob. 25CQCh. 14 - Prob. 26CQCh. 14 - Prob. 27CQCh. 14 - Prob. 28CQCh. 14 - Prob. 29CQCh. 14 - 30. The thioester described in Problem 29 reacts...Ch. 14 - Prob. 31CQCh. 14 - 32. Aerobic organisms transfer electrons from...Ch. 14 - Prob. 33CQCh. 14 - Prob. 34CQCh. 14 - 35. A hypothetical three-step metabolic pathway...Ch. 14 - 36. A certain metabolic pathway can be diagrammed...Ch. 14 - Prob. 1MTE
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- Problem 15 of 15 Submit Using the following reaction data points, construct Lineweaver-Burk plots for an enzyme with and without an inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. Using the information from this plot, determine the type of inhibitor present. 1 mM-1 1 s mM -1 [S]' V' with 10 μg per 20 54 10 36 20 5 27 2.5 23 1.25 20 Answer: |||arrow_forward12:33 CO Problem 4 of 15 4G 54% Done On the following Lineweaver-Burk -1 plot, identify the by dragging the Km point to the appropriate value. 1/V 40 35- 30- 25 20 15 10- T Км -15 10 -5 0 5 ||| 10 15 №20 25 25 30 1/[S] Г powered by desmosarrow_forward1:30 5G 47% Problem 10 of 15 Submit Using the following reaction data points, construct a Lineweaver-Burk plot for an enzyme with and without a competitive inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. 1 -1 1 mM [S]' s mM¹ with 10 mg pe 20 V' 54 10 36 > ст 5 27 2.5 23 1.25 20 Answer: |||arrow_forward
- Problem 14 of 15 Submit Using the following reaction data points, construct Lineweaver-Burk plots for an enzyme with and without an inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. Using the information from this plot, determine the type of inhibitor present. 1 mM-1 1 s mM -1 [S]' V' with 10 μg per 20 54 10 36 20 5 27 2.5 23 1.25 20 Answer: |||arrow_forward12:36 CO Problem 9 of 15 4G. 53% Submit Using the following reaction data points, construct a Lineweaver-Burk plot by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. Based on the plot, determine the value of the catalytic efficiency (specificity constant) given that the enzyme concentration in this experiment is 5.0 μ.Μ. 1 [S] ¨‚ μM-1 1 V sμM-1 100.0 0.100 75.0 0.080 50.0 0.060 15.0 0.030 10.0 0.025 5.0 0.020 Answer: ||| O Гarrow_forwardProblem 11 of 15 Submit Using the following reaction data points, construct a Lineweaver-Burk plot for an enzyme with and without a noncompetitive inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. 1 -1 1 mM [S]' 20 V' s mM¹ with 10 μg per 54 10 36 > ст 5 27 2.5 23 1.25 20 Answer: |||arrow_forward
- Problem 13 of 15 Submit Using the following reaction data points, construct Lineweaver-Burk plots for an enzyme with and without an inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. Using the information from this plot, determine the type of inhibitor present. 1 mM-1 1 s mM -1 [S]' V' with 10 μg per 20 54 10 36 20 5 27 2.5 23 1.25 20 Answer: |||arrow_forward12:33 CO Problem 8 of 15 4G. 53% Submit Using the following reaction data points, construct a Lineweaver-Burk plot by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. Based on the plot, determine the value of kcat given that the enzyme concentration in this experiment is 5.0 μM. 1 [S] , мм -1 1 V₁ s μM 1 100.0 0.100 75.0 0.080 50.0 0.060 15.0 0.030 10.0 0.025 5.0 0.020 Answer: ||| Гarrow_forward1:33 5G. 46% Problem 12 of 15 Submit Using the following reaction data points, construct a Lineweaver-Burk plot for an enzyme with and without an uncompetitive inhibitor by dragging the points to their relevant coordinates on the graph and drawing a line of best fit. 1 -1 1 mM [S]' 20 V' s mM¹ with 10 μg per 54 10 36 > ст 5 27 2.5 23 1.25 20 Answer: |||arrow_forward
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