http://digfir-published.macmillanusa.com/life11e/life11e_ch09_1.htmlChapter Introduction57742271757a2e5d11000000
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_2.htmlkey concept9.1Cells Harvest Chemical Energy from Glucose Oxidation
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_3.htmlHow do cells obtain energy from glucose?
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_4.htmlRedox reactions transfer electrons and energy
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_5.htmlThe coenzyme NAD+ is a key electron carrier in redox reactions
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_6.htmlAn overview: Harvesting energy from glucose
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_8.htmlkey concept9.2In the Presence of Oxygen, Glucose Is Fully Oxidized
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_9.htmlIn the glycolysis pathway, glucose is partially oxidized
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_10.htmlPyruvate oxidation links glycolysis and the citric acid cycle
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_11.htmlThe citric acid cycle completes the oxidation of glucose to CO257742271757a2e5d11000000
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_12.htmlPyruvate oxidation and the citric acid cycle are regulated by the concentrations of starting materials
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_14.htmlkey concept9.3Oxidative Phosphorylation Forms ATP
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_15.htmlWhat are the steps in oxidative phosphorylation?
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_16.htmlThe respiratory chain transfers electrons and protons, and releases energy
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_17.htmlATP is made through chemiosmosis
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_18.htmlExperiments demonstrate chemiosmosis
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_19.htmlSome microorganisms use non-O2 electron acceptors
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_21.htmlkey concept9.4In the Absence of Oxygen, Some Energy Is Harvested from Glucose
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_22.htmlCellular respiration yields much more energy than fermentation
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_23.htmlThe yield of ATP is reduced by the impermeability of mitochondria to NADH
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_25.htmlkey concept9.5Metabolic Pathways Are Interrelated and Regulated
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_26.htmlCatabolism and anabolism are linked
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_27.htmlCatabolism and anabolism are integrated
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_28.htmlMetabolic pathways are regulated systems
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_30.htmlInvestigating Life57742271757a2e5d11000000
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_31.htmlChapter Summary
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http://digfir-published.macmillanusa.com/life11e/life11e_ch09_32.htmlApply What Youâve Learned
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