Concept explainers
a.
To determine:
The ATP produced from
Introduction:
ATP is generated in various
b.
To determine:
The ATP produced from
Introduction:
ATP is generated in various metabolic reactions and respiration. ATP generation is required as the energy source. Every molecule taking part in various metabolic reactions generates some amount of energy in the form of ATP.
c.
To determine:
The ATP molecules produced from
Introduction:
ATP is generated in various metabolic reactions and respiration. ATP generation is required as the energy source. Every molecule taking part in various metabolic reactions generates some amount of energy in the form of ATP.
d.
To determine:
The ATP molecules produced from
Introduction:
ATP is generated in various metabolic reactions and respiration. ATP generation is required as the energy source. Every molecule taking part in various metabolic reactions generates some amount of energy in the form of ATP.
Want to see the full answer?
Check out a sample textbook solutionChapter 12 Solutions
EBK LABORATORY MANUAL FOR GENERAL, ORGA
- The first step of the metabolic process known as glycolysis is the conversion of glucose to glucose- 6-phosphate. This process has a positive value for rG' Glucose + Pi Glucose-6-phosphate + H2O rG' = +13.8 kJ/mol-rxn This reaction is coupled to the hydrolysis of ATP ATP + H2O ADP + Pi rG' = -30.5 kJ/mol-rxn What is the sum of these two equations and the value of rG' for the coupled reaction? Is the coupled reaction product-favored at equilibrium?arrow_forwardBelow is the overall net equation for the complete oxidation of pyruvate. Calculate the number of ATP molecules that can be produced from the complete oxidation of 6 molecules of pyruvate. Pyruvate + 4NAD+ + FAD + GDP + Pi + 2H₂O → 3CO2 + 4NADH + 4H+ + FADH2 + GTP (Given: The oxidation of one NADH yields 2.5 ATP; the oxidation of one FADH2 yields 1.5 ATP; and one GDP yields 1 ATP.) O 75 ATP O 60 ATP O 12.5 ATP O 32 ATParrow_forwardrank in order that releases most to least amount of energyarrow_forward
- Determine the number of ATP molecules that can be formed from the complete oxidation of 10 molecules of acetyl CoA. The overall net equation for the complete oxidation of acetyl CoA is provided below. Acetyl CoA + 3NAD+ + FAD + GDP + Pi + 2H₂O → 2CO2 + HS-CoA + 3NADH + 3H+ + FADH2 + GTP (Given: The oxidation of one NADH yields 2.5 ATP; the oxidation of one FADH2 yields 1.5 ATP; and one GDP yields 1 ATP.) O 10 ATP O 7,5 ATP O 100 ATP O 75 ATParrow_forwardTrypanosomes living in the bloodstream obtain all their free energy from glycolysis. They take up glucose from the host’s blood and excrete pyruvate as a waste product. In this part of their life cycle, trypanosomes do not carry out any oxidative phosphorylation, but they do use another oxygen-dependent pathway, which is absent in mammals, to oxidize NADH. Would this pathway be necessary if the trypanosome excreted lactate rather than pyruvate? Explain.arrow_forwardDraw the ATP - ADP Cycle and describe how each molecule (ATP, ADP, Phosphocreatine,carbohydrates) functions in this cycle. Part 2: Molecular Flowchart and RolesThere are four molecules: creatine, phosphocreatine, ATP, and ADP. Create a linear sequenceflowchart or pathway that illustrates how these molecules are interconnected during exercise.Describe the role of each molecule in the energy transfer process and explain how theycontribute to the generation and utilization of energy during exercise. Part 3: Effects of Hard Exercise Describe how vigorous exercise changes the levels of ATP, ADP, AMP, phosphocreatine,creatine, Pi (inorganic phosphate), IMP (inosine monophosphate), and ammonium in muscles.arrow_forward
- Mark any/all processes that are reductions. O FADH2 → FAD O hydrogenation of fats FAD FADH2 NAD* NADH NADH NAD*arrow_forwardThere are eight chemical reactions that occur in the citric acid cycle process. The reactions of the citric acid cycle are shown in the figure below. You were introduced to several classes of organic reactions. These classes include esterification, decarboxylation, hydration reactions, dehydration of alcohols, oxidation of alcohols, oxidation of aldehydes, reduction of aldehydes, and reduction of ketones. Find at least one of these reaction classes in the citric acid cycle. List the reaction number and the reaction. Write a sentence or two on how you were able to make the classification.arrow_forwardFor a given acid HA, it was determined that at pH 6.0 the concentration of the conjugate base [A] was 0.075 M and the acid [HA] was 0.025 M. What percent of this acid is ionized at pH 6.0? What is the pKa of this acid? What pH would this acid be 50% lonized?arrow_forward
- The image below shows the reactions of the citric acid cycle. Label the reaction types on the diagram. COO CH-OH CH₂ COO 8-5-9-8 HC H₂O NADH +H+ NAD+- FADH2 "7 FAD COO C=O CH₂ COO™ COO CH3-C-COA + H₂O acetyl-CoA COA COO™ Ī CH₂ HỌ—C—COO CH₂ COO™ COO HO-C-H COO™ COO™ CH₂ CH-COO NAD+ NAD+ + COA Attempt 2 NADH + H+ + CO2 NADH + H+ + CO2 COO™ CH₂ CH₂ C=O COO™arrow_forwardIn the citric acid cycle, a - ketoglutarate dehydrogenase catalyzes the reaction from a - ketoglutarate to Succinyl CoA. Given this reaction, calculate for the enthalpy of formation of the product using (a) Hess's Law, (b) standard enthalpies of formation and (c) mean bond enthalpies. Show your complete solution. COA-S OOC CH2 CH2 + NAD++ COA + CO2 + NADH CH2 a-ketoglutarate CH2 dehydrogenase COO a-ketoglutarate COO Succinyl CoAarrow_forwardWhat class of enzymes to these two belong to?arrow_forward
- Organic And Biological ChemistryChemistryISBN:9781305081079Author:STOKER, H. Stephen (howard Stephen)Publisher:Cengage Learning,General, Organic, and Biological ChemistryChemistryISBN:9781285853918Author:H. Stephen StokerPublisher:Cengage LearningChemistry for Today: General, Organic, and Bioche...ChemistryISBN:9781305960060Author:Spencer L. Seager, Michael R. Slabaugh, Maren S. HansenPublisher:Cengage Learning
- Chemistry: The Molecular ScienceChemistryISBN:9781285199047Author:John W. Moore, Conrad L. StanitskiPublisher:Cengage LearningChemistry & Chemical ReactivityChemistryISBN:9781337399074Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage LearningChemistry & Chemical ReactivityChemistryISBN:9781133949640Author:John C. Kotz, Paul M. Treichel, John Townsend, David TreichelPublisher:Cengage Learning