Intermembrane Space Protein Complex of Electron Carriers H' ATP Synthase Cyt C NADH NAD FADH FAD 2H + ,0, H,O Mitochondrial Matrix ADP+(P AТР Electron Transport Chain Chemiosmosis Oxidative Phosphorylation 19- Cyanide inhibits cytochrome c oxidase, a component of the electron transport chain. If cyanide poisoning occurs, would you expect the pH of the intermembrane space to increase or decrease? What effect would cyanide have on ATP synthesis? 20. Because they lose their mitochondria during development, red blood cells cannot perform aerobic respiration; however, they do perform glycolysis in the cytoplasm. Why do all| cells need an energy source, and what would happen if glycolysis were blocked in a red blood cell? 21. What is the primary difference between a circular pathway and a linear pathway? 22. How do the roles of ubiquinone and cytochrome c differ from the roles of the other components of the electron transport chain? 23. What accounts for the different number of ATP molecules that are formed through cellular respiration? 24. What is the primary difference between fermentation and anaerobic respiration? solve it all please

Biology 2e
2nd Edition
ISBN:9781947172517
Author:Matthew Douglas, Jung Choi, Mary Ann Clark
Publisher:Matthew Douglas, Jung Choi, Mary Ann Clark
Chapter7: Cellular Respiration
Section: Chapter Questions
Problem 2VCQ: Figure 7.12 Cyanide inhibits cytochrome c oxidase, a component of the electron transport chain. If...
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Intermembrane Space
Protein
Complex
of Electron H
Carriers
ATP
Synthase
Cyt C
NADH
NAD
FADH
FAD
2H + ,0,
H,0
Mitochondrial
Matrix
ADP+
ATP
Electron Transport Chain
Chemiosmosis
Oxidative Phosphorylation
19- Cyanide inhibits cytochrome c oxidase, a
component of the electron transport chain. If cyanide
poisoning occurs, would you expect the pH of the
intermembrane space to increase or decrease? What
effect would cyanide have on ATP synthesis?
20. Because they lose their mitochondria
during development, red blood cells cannot
perform aerobic respiration; however, they do
perform glycolysis in the cytoplasm. Why do all
cells need an energy source, and what would
happen if glycolysis were blocked in a red
blood cell?
21. What is the primary difference between a
circular pathway and a linear pathway?
22. How do the roles of ubiquinone and
cytochrome c differ from the roles of the other
components of the electron transport chain?
23. What accounts for the different number of
ATP molecules that are formed through cellular
respiration?
24. What is the primary difference between
fermentation and anaerobic respiration?
solve it all please
Transcribed Image Text:Intermembrane Space Protein Complex of Electron H Carriers ATP Synthase Cyt C NADH NAD FADH FAD 2H + ,0, H,0 Mitochondrial Matrix ADP+ ATP Electron Transport Chain Chemiosmosis Oxidative Phosphorylation 19- Cyanide inhibits cytochrome c oxidase, a component of the electron transport chain. If cyanide poisoning occurs, would you expect the pH of the intermembrane space to increase or decrease? What effect would cyanide have on ATP synthesis? 20. Because they lose their mitochondria during development, red blood cells cannot perform aerobic respiration; however, they do perform glycolysis in the cytoplasm. Why do all cells need an energy source, and what would happen if glycolysis were blocked in a red blood cell? 21. What is the primary difference between a circular pathway and a linear pathway? 22. How do the roles of ubiquinone and cytochrome c differ from the roles of the other components of the electron transport chain? 23. What accounts for the different number of ATP molecules that are formed through cellular respiration? 24. What is the primary difference between fermentation and anaerobic respiration? solve it all please
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