CUSTOMIZED LAB MANUAL FOR BIOLOGY 1407
14th Edition
ISBN: 9781307717440
Author: Mader
Publisher: MCG
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Chapter 7.4, Problem 3CYP
Discuss why there is variation in the number of ATP molecules produced per glucose.
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Consider a 24:1 △cis-9 fatty acid in the mitochondrion.
For each fatty acid given, determine the following.
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How many ATP will be produced in an oxidative level phosphorylation of a molecule of glucose in a eukaryotic cell?
a) Explain how in oxygenated tissue your cells use your MITOCHONDRIA to produce energy: DESCRIBE the processes occurring in your MITOCHONDRIA (intermediate stage, Krebs, and ETC), Make sure to mention where those processes occur.b) How many ATP per glucose are formed in your mitochondria? Where are they formed?
Chapter 7 Solutions
CUSTOMIZED LAB MANUAL FOR BIOLOGY 1407
Ch. 7.1 - Describe the overall equation for cellular...Ch. 7.1 - Prob. 2LOCh. 7.1 - Prob. 3LOCh. 7.1 - Explain the role of NAD+ and FAD in cellular...Ch. 7.1 - Distinguish between the aerobic and anaerobic...Ch. 7.1 - Prob. 3CYPCh. 7.2 - Describe the location and inputs and outputs of...Ch. 7.2 - Explain why ATP is both an input and output of...Ch. 7.2 - Explain why there is an energy-investment phase...Ch. 7.2 - Prob. 2CYP
Ch. 7.3 - Explain how ATP can continue to be produced in the...Ch. 7.3 - Describe the advantages and disadvantages of...Ch. 7.3 - Describe the environmental conditions that would...Ch. 7.3 - Prob. 2CYPCh. 7.4 - Prob. 1LOCh. 7.4 - Summarize the inputs and outputs of the...Ch. 7.4 - Prob. 3LOCh. 7.4 - How might a meal of a cheeseburger and fries be...Ch. 7.4 - Prob. 2QTCCh. 7.4 - Prob. 1CYPCh. 7.4 - Prob. 2CYPCh. 7.4 - Discuss why there is variation in the number of...Ch. 7 - Prob. S2.5BYBCh. 7 - Prob. S3.3BYBCh. 7 - Figure 6.3 How does the ATP cycle resemble a...Ch. 7 - What are the differences between the aerobic and...Ch. 7 - How is the energy of a glucose molecule harvested...Ch. 7 - How are other organic nutrients, such as proteins...Ch. 7 - Prob. 1ACh. 7 - Prob. 2ACh. 7 - Prob. 3ACh. 7 - Prob. 4ACh. 7 - Prob. 5ACh. 7 - Prob. 6ACh. 7 - Prob. 7ACh. 7 - Prob. 8ACh. 7 - Prob. 9ACh. 7 - Prob. 10ACh. 7 - Prob. 11ACh. 7 - Prob. 12ACh. 7 - Prob. 13ACh. 7 - Prob. 14ACh. 7 - Prob. 15ACh. 7 - Bacteria do not have mitochondria, and yet they...Ch. 7 - Rotenone is a broad-spectrum insecticide that...Ch. 7 - Some fat-burning compounds accelerate the movement...
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- Explain how to arrive at the estimate that each glucose molecule theoretically yields 36 ATPs.arrow_forwardBriefly explain the mechanism by which ATP synthase produces ATP.List three locations in which ATP synthases are found.arrow_forwardmatch the cofactor with its function in the citric acid cycle by entering the number corresponding with the function. A given function may be used more than one time or not at all. Use from the following list of functions to fill in the table below: carries O2 carries small carbon-containing molecules carries e- carries small nitrogen-containing molecules Cofactor Function NAD+/NADH FAD/FADH2 CoA thiamine biotinarrow_forward
- List ALL of the substrate-level phosphorylation steps in cellular respiration and the enzymes that perform these SP steps. For your answer, use this format: reactant. poroduct . enzymearrow_forwardBriefly describe the steps in catabolism of glucose; showing the location where each step happens in prokaryotic and eukaryotic cells.arrow_forwardThe phosphorylation catalyzed by hexokinase is essentially an irreversible reaction. Which of the following statements is most likely to be true under cellular conditions? In all cases, note that dephosphorylation specifically refers to hydrolysis in which a phosphate is lost. ATP dephosphorylation is more exergonic than glucose 6-phosphate dephosphorylation. ATP dephosphorylation is less exergonic than glucose 6-phosphate dephosphorylation. There is not enough information to determine which reaction is more exergonic.arrow_forward
- HUW Define metabolism, anabolism, and catabolism. List the ways cells control the flow of molecules through metabolic pathways. Explain the roles of the following molecules in biological energy transfer and storage: ADP, ATP, NADH, FADH2, NADPH. Outline the pathways for aerobic and anaerobic metabolism of glucose and compare the energy yields of the two pathways. Write two equations for aerobic metabolism of one glucose molecule: one using only words and a second using the chemical formula for glucose. Explain how the electron transport system creates the high-energy bond of ATP. Provide a general description of how proteins are made.arrow_forwardDescribe the phosphoenolpyruvate: sugar phosphotransferase systemarrow_forwardPlease explain how the catabolism of ATP supports the anabolism of protein.arrow_forward
- Anaerobic glycolysis of glucose potentially produces a fewer number of ATPs per glucose moleculein red blood cells than in muscle cells, because -Red blood cells contain bisphosphoglycerate mutase -Red blood cells lack phosphoglycerate kinase -Red blood cells do not have mitochondria -Red blood cells do not have a nucleus Which of the following is likely to be correct if all mutases are completely inhibited? -Removal of glucosyl residues from nonreducing ends of glycogen in the liver is compromised;therefore, release of free glucose into blood from the liver would decrease -Glycerol can be efficiently converted into glucose but cannot be efficiently converted into glucosylresidues in glycogen in the liver -Both A and B -Neither A nor Barrow_forwardUsing the answer code on the right, indicate which form of energy production is being described: 1. takes place in the mitochondrial matrix 2. produces H2O as a by-product 3. results in a rich yield of ATP 4. takes place in the cytosol 5. processes acetyl-CoA 6. takes place in the mitochondrial innermembrane cristae 7. converts glucose into two pyruvate molecules 8. uses molecular oxygen 9. accomplished by the electron transport system and ATP synthase (a) glycolysis (b) citric acid cycle (c) oxidative phosphorylationarrow_forwardPlease summarize in detail how a cell is able to extract 38 ATP from a glucose molecule.arrow_forward
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