EP CAMPBELL BIO.IN FOCUS AP-MOD.MASTER.
3rd Edition
ISBN: 9780137453092
Author: Urry
Publisher: SAVVAS L
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Chapter 6.2, Problem 1CC
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Chapter 6 Solutions
EP CAMPBELL BIO.IN FOCUS AP-MOD.MASTER.
Ch. 6.1 - MAKE CONNECTIONS How does the second law of...Ch. 6.1 - Describe the forms of energy found in an apple as...Ch. 6.2 - Cellular respiration uses glucose and oxygen,...Ch. 6.2 - Prob. 2CCCh. 6.2 - Prob. 3CCCh. 6.3 - How does ATP typically transfer energy from...Ch. 6.3 - Prob. 2CCCh. 6.3 - MAKE CONNECTIONS Does Figure 6.10a show passive or...Ch. 6.4 - Many spontaneous reactions occur very slowly. Why...Ch. 6.4 - Why do enzymes act only on very specific...
Ch. 6.4 - WHAT IF? Malonate is an inhibitor of the enzyme...Ch. 6.4 - A mature lysosome has an internal pH of around...Ch. 6.5 - How do an activator and an inhibitor have...Ch. 6.5 - Prob. 2CCCh. 6 - Choose the pair of terms that correctly completes...Ch. 6 - Prob. 2TYUCh. 6 - Which of the following metabolic processes can...Ch. 6 - If an enzyme in solution is saturated with...Ch. 6 - Some bacteria are metabolically active in hot...Ch. 6 - If an enzyme is added to a solution where its...Ch. 6 - DRAW IT Using a series of arrows, draw the...Ch. 6 - Prob. 8TYUCh. 6 - SCIENCE, TECHNOLOGY, AND SOCIETY Organophosphates...Ch. 6 - FOCUS ON EVOLUTION A recent revival of the...Ch. 6 - FOCUS ON ENERGY AND MATTER Life requires energy....Ch. 6 - SYNTHESIZE YOUR KNOWLEDGE Explain what is...
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- In a mitochondrion, where are the electron transport systems and enzymes required for ATP formation located?arrow_forwardWhich is NOT a characteristic of mitochondria? They: A) have two membranes. B) are the site of cellular aerobic respiration. C) have a true nucleus. D) contain their own DNA and ribosomes. E) the material inside their inner membrane (the cellular matrix) is their own cytoplasm.arrow_forwardWhy are electron carriers (NAD+/NADH and FAD/FADH2) so important in the process of cellular respiration? A)NADH and FADH2 are major components of the ETC, so without them, there would be no ETC in the cell. B)They deliver electrons to the ETC, which in turn sets up chemiosmosis, where most of the ATP is generated. C)They separate the electrons from the protons so that the protons can be moved out of the mitochondrion. D)The electrons that they carry are able to directly phosphorylate ADP in order to generate the bulk of ATP in the cell. E) They transport protons across the mitochondrial membrane. 14.arrow_forward
- Which of the following processes do NOT require oxygen? 1) glycolysis 2) cellular respiration 3) ATP production in the mitochondria 4) CO2 productionarrow_forwardDuring cellular respiration, which of the following diffuses through ATP synthase? A)Phosphates B)Electrons C)Carbon dioxide (CO2) D)Protons (H+ ions) E)ATP 15arrow_forwardwhat would happen during cellular respiration if all the mitochondria in a cell lost their outer membranes? be specific and explain how this would alter each part of cellular respiration.arrow_forward
- During aerobic respiration, high energy electrons are taken from glucose and transferred to electron carriers. The cell then uses the energy from these electrons to: O A) produce carbon dioxide B) produce oxygen C) pump hydrogen ions across the inner mitochondrial membrane D) reduce electron carriers E) make glucosearrow_forwardthe end products of aerobic cellular respiration are ?arrow_forwardWhat kind of cellular transport is needed for cellular respiration, how does it occur?arrow_forward
- The products of cellular respiration are used in which other chemical process?arrow_forwardWhich is not a characteristic of mitochondria? They .. A) Have 2 membranes B) Are the site of cellular aerobic respiration C) Contain their own DNA and Ribosomes D) They have organelles that conduct their own protein synthesis E) The material inside their inner membrane ( cellular matrix) is their own cytoplasm? And explain whyarrow_forwardCells can make ATP through aerobic respiration, anaerobic respiration, or fermentation. Which of the following pathways do all three forms of cellular catabolism share? breaking down pyruvate into CO2 through a series of steps reducing pyruvate into lactic acid or acetaldehyde to regenerate NAD+ breaking down a molecule of glucose or other organic fuel into two molecules of pyruvate passing electrons through a chain of proteins to an electronegative molecule to oxidize NADHarrow_forward
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