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Published byEarl Owen Modified over 9 years ago
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Cellular Respiration
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Definitions Recall that 6CO 2 + 6H 2 O -> C 6 H 12 O 6 + 6O 2 enzymes, light, chlorophyll
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Cellular Respiration Process where mitochondria break food molecules to = ATP Three stages –Glycolysis –Krebs Cycle –Electron Transport Chain
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Glycolysis Series of chemical reactions in cytoplasm that break down glucose Glucose 6 carbon = 2 pyruvic acid Three carbon compound 2 ATP to start and only 4 are produced = 2 net ATP for every glucose
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Forms NADH Anaerobic Other two stages are aerobic Pyruvic acid loses its CO 2 Becomes Acetyl CoA Also forms NADH + H +
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Glycolysis
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Krebs Cycle Similar to Calvin Cycle Calvin cycle forms glucose, citric acid cycle breaks down glucose Occurs in matrix of mitochondria Results in NADH and FADH 2 One ATP per turn, 2 turns per glucose
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Electron Transport Chain Occurs in cristae of mitochondria Series of carriers accepts electrons from glucose NADH and FADH 2 pass along the chain slowly releasing energy Some hydrogen ions used to make ATP, others to make electrochemical gradient
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Final electron acceptor = oxygen Making this aerobic Makes 32 ATP
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ATP Production For Each Glucose Glycolysis – Net gain of 2 ATP, 2 NADH, and 2 Pyruvic Acid Acetyl-CoA formation – 2 NADH Krebs – 2 ATP, 6 NADH, & 2 FADH 2 ETC – 32 ATP from NADH & FADH 2
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Fermentation Sometimes oxygen is scarce Still need to produce ATP Anaerobic Two major types –Lactic Acid fermentation –Alcoholic fermentation
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Lactic Acid Fermentation Does not go through the electron transport chain 2 pyruvic acids + NADH = 2 lactic acid 2 ATP per glucose Quick burst of energy but goes into oxygen debt and muscle fatigue
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Alcoholic Fermentation Yeast produces CO2 and ethyl alcohol Also produces two ATP CO 2 forms bubbles In bread, that’s why there are air pockets
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Recall Overall Equation C 6 H 12 O 6 + 6O 2 -> 6CO 2 + 6H 2 O + energy –Exergonic reaction
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