Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN: 9780134580999
Author: Elaine N. Marieb, Katja N. Hoehn
Publisher: PEARSON
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- A larger proton gradient is required to forma single ATP in chloroplasts than in mitochondria. Suggest a reason why. Hint: Ions can move across the thylakoid membrane moreeasily than across the inner mitochondrial membrane.arrow_forwardd. A given molecule of ATP can be broken down to ADP + P close to 1500 times in a day (“ATP cycle"). This is occurring in order to List a few examples of cellular work. for cellular work. e. Where does the energy to make ATP come from? It doesn't make sense to use ATP to make ATP. The energy to make ATP comes from specifically these types of macromolecules: andarrow_forwardATP hydrolysis is exergonic or endergonicarrow_forward
- *Explain the term chemiosmosis and include a detailed description of this process of creating ATP (ADP - ATP - ADP).arrow_forwardSelect the BEST answer for the following question. The oxygen in our atmosphere is a product of. * O cyclic electron flow only O Non-cyclic electron flow only O Both cyclic and non-cyclic electron flow The splitting of carbon dioxide during the Calvin Cycle O None of the answers are correctarrow_forwardA mitochondrial matrix protein is maintained in its unfolded state by a chaperone protein before transport across the mitochondrial membrane true falsearrow_forward
- V-class proton pumps run backward relative to the F-class ATP synthase. Consider the cartoon, which shows the conformations of the beta-subunits and ATPIADP + Pj of the F-class synthase. Which of the following associations between the conformation of the beta subunit and ATP/ADP + P¡ is correct for V- Binding Change Mechanism loose binding ADP+P ATP ATP class pumps? C repeat ADP + P, ADP АТР tight binding АТР +P оpen АТР O The open conformation releases ATP. Hydrolysis of ATP to ADP + P¡ drives the change from tight to loose. O Binding of ADP + P¡ drives change from open to loose. Hydrolysis of ATP to ADP + Pj drives the change from open to loose.arrow_forwardIf each NADH generates 3 ATP molecules and each FADH2 generates 2 ATP molecules, calculate the number of ATP molecules generated from one saturated 10-carbon fatty acid. number of ATP molecules: ATParrow_forwardIllustrate the ATP hydrolysis reaction, its regeneration and the AG for both reactions. Show where energy is released in each reaction In the boxes below, Illustrate and describe THREE WAYS IN WHICH ATP HYDROLYSIS provides energy in biological systemsarrow_forward
- explain why the statement is correct. Within the eukaryotic cell, most of the energy stored in ATP is produced through the: mitochondrion completing the oxidation of pyruvate (3 carbon chains)arrow_forwardActivity: Label A through H Cytosol Mitochondrion- Glycolysi B CKrebs Cycle Electron Transport F Chain H. ATP ATP ATParrow_forwardATP synthesis resulting from electron transport occurs in the mitochondria of bacteria. true or falsearrow_forward
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