ANATOMY+PHYSIOLOGY
ANATOMY+PHYSIOLOGY
4th Edition
ISBN: 9781260265217
Author: McKinley
Publisher: RENT MCG
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Chapter 18, Problem 11DYKB

How does blood help regulate body temperature?

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7. Aerobic respiration of a protein that breaks down into 12 molecules of malic acid. Assume there is no other carbon source and no acetyl-CoA. NADH FADH2 OP ATP SLP ATP Total ATP Show your work using dimensional analysis here: 3
For each of the following problems calculate the following: (Week 6-3 Video with 6-1 and 6-2) Consult the total catabolic pathways on the last page as a reference for the following questions. A. How much NADH and FADH2 is produced and fed into the electron transport chain (If any)? B. How much ATP is made from oxidative phosphorylation (OP), if any? Feed the NADH and FADH2 into the electron transport chain: 3ATP/NADH, 2ATP/FADH2 C. How much ATP is made by substrate level phosphorylation (SLP)? D. How much total ATP is made? Add the SLP and OP together. 1. Aerobic respiration using 0.5 mole of glucose? NADH FADH2 OP ATP SLP ATP Total ATP Show your work using dimensional analysis here:
Aerobic respiration of one lipid molecule. The lipid is composed of one glycerol molecule connected to two fatty acid tails. One fatty acid is 12 carbons long and the other fatty acid is 18 carbons long in the figure below. Use the information below to determine how much ATP will be produced from the glycerol part of the lipid. Then, in part B, determine how much ATP is produced from the 2 fatty acids of the lipid. Finally put the NADH and ATP yields together from the glycerol and fatty acids (part A and B) to determine your total number of ATP produced per lipid. Assume no other carbon source is available. 18 carbons fatty acids 12 carbons glycerol . Glycerol is broken down to glyceraldehyde 3-phosphate, a glycolysis intermediate via the following pathway shown in the figure below. Notice this process costs one ATP but generates one FADH2. Continue generating ATP with glyceraldehyde-3-phosphate using the standard pathway and aerobic respiration. glycerol glycerol-3- phosphate…

Chapter 18 Solutions

ANATOMY+PHYSIOLOGY

Ch. 18.3 - Prob. 11WDYLCh. 18.3 - Prob. 12WDYLCh. 18.3 - Prob. 13WDYLCh. 18.3 - Prob. 14WDYLCh. 18.3 - Prob. 15WDYLCh. 18.3 - Describe the process of erythropoiesis, beginning...Ch. 18.4 - Prob. 17WDYLCh. 18.4 - Prob. 18WDYLCh. 18.4 - Prob. 19WDYLCh. 18.4 - Prob. 20WDYLCh. 18.4 - At what point in blood loss is the sympathetic...Ch. 18.4 - Prob. 22WDYLCh. 18.5 - Prob. 23WDYLCh. 18.5 - Prob. 24WDYLCh. 18 - Prob. 1DYKBCh. 18 - _____ 2. Which type of leukocyte increases during...Ch. 18 - Prob. 3DYKBCh. 18 - Prob. 4DYKBCh. 18 - Prob. 5DYKBCh. 18 - Prob. 6DYKBCh. 18 - Prob. 7DYKBCh. 18 - _____ 8. During the recycling of components...Ch. 18 - _____ 9. The extrinsic pathway of coagulation is...Ch. 18 - Prob. 10DYKBCh. 18 - How does blood help regulate body temperature?Ch. 18 - What are alpha- and beta-globulins? What do they...Ch. 18 - When blood is centrifuged, a thin, whitish-gray...Ch. 18 - What is the shape of an erythrocyte, and why is...Ch. 18 - How are respiratory gases (oxygen and carbon...Ch. 18 - What are the anatomic characteristics of each type...Ch. 18 - How do the functions of basophils differ from...Ch. 18 - Briefly describe the origin, structure, and...Ch. 18 - Prob. 19DYKBCh. 18 - Describe the three phases of hemostasis, and list...Ch. 18 - Use the following paragraph to answer questions...Ch. 18 - Prob. 2CALCh. 18 - Which sequence or pathway best describes the...Ch. 18 - Prob. 4CALCh. 18 - Prob. 5CALCh. 18 - While taking a clinical laboratory class, Marilyn...Ch. 18 - Abby is a nurse on duty in a hospital emergency...Ch. 18 - Prob. 3CSL
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