(a)
To explain: How the model violates the second law of
Introduction:
Neuroglia cells are supporting cells that are located throughout the nervous system. Astrocytes cells provide support and binds structures together between the neurons and blood vessels. It responds against brain injury and repairs it in the CNS. It regulates concentration of glucose (substances) and potassium (ions) within interstitial spaces and the transmission of substances to neurons from blood vessels. It allows the nourishment of neurons and releases growth factors. Oligodendrocytes cells are arranged in rows along with axons. In the central nervous system, it covers the axons in myelin sheath.
(b)
To determine: The reason for not working of this model for small molecules although it may allow one to catch fish.
Introduction:
Neuroglia cells are supporting cells that are located throughout the nervous system. Astrocytes cells provide support and binds structures together between the neurons and blood vessels. It responds against brain injury and repairs it in the CNS. It regulates concentration of glucose (substances) and potassium (ions) within interstitial spaces and the transmission of substances to neurons from blood vessels. It allows the nourishment of neurons and releases growth factors. Oligodendrocytes cells are arranged in rows along with axons. In the central nervous system, it covers the axons in myelin sheath.
(c)
To explain: Why the fish trap work for fish.
Introduction:
Neuroglia cells are supporting cells that are located throughout the nervous system. Astrocytes cells provide support and binds structures together between the neurons and blood vessels. It responds against brain injury and repairs it in the CNS. It regulates concentration of glucose (substances) and potassium (ions) within interstitial spaces and the transmission of substances to neurons from blood vessels. It allows the nourishment of neurons and releases growth factors. Oligodendrocytes cells are arranged in rows along with axons. In the central nervous system, it covers the axons in myelin sheath.
(d)
To explain: The two plausible mechanisms for the unidirectional transport of dye molecules between the cells that do not violate the second law of thermodynamics.
Introduction:
Neuroglia cells are supporting cells that are located throughout the nervous system. Astrocytes cells provide support and binds structures together between the neurons and blood vessels. It responds against brain injury and repairs it in the CNS. It regulates concentration of glucose (substances) and potassium (ions) within interstitial spaces and the transmission of substances to neurons from blood vessels. It allows the nourishment of neurons and releases growth factors. Oligodendrocytes cells are arranged in rows along with axons. In the central nervous system, it covers the axons in myelin sheath.
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Chapter 13 Solutions
Lehninger Principles Of Biochemistry 7e & Study Guide And Solutions Manual For Lehninger Principles Of Biochemistry 7e
- Balance the following equation and list of coefficients in order from left to right. SF4+H2O+—-> H2SO3+HFarrow_forwardProblem 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_forward
- 1:30 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_forwardProblem 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_forward
- Problem 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_forwardProblem 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_forward
- BiochemistryBiochemistryISBN:9781319114671Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.Publisher:W. H. FreemanLehninger Principles of BiochemistryBiochemistryISBN:9781464126116Author:David L. Nelson, Michael M. CoxPublisher:W. H. FreemanFundamentals of Biochemistry: Life at the Molecul...BiochemistryISBN:9781118918401Author:Donald Voet, Judith G. Voet, Charlotte W. PrattPublisher:WILEY
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