Campbell Biology: Concepts & Connections Plus Mastering Biology with Pearson eText - Access Card Package (9th Edition)
9th Edition
ISBN: 9780134240688
Author: Martha R. Taylor, Eric J. Simon, Jean L. Dickey, Kelly A. Hogan, Jane B. Reece
Publisher: PEARSON
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Textbook Question
Chapter 7, Problem 9TYK
To synthesize one glucose molecule, the Calvin cycle uses _________ molecules of CO2, _____ molecules of ATP, and _____ molecules of NADPH.
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In order to produce one molecule of glucose, the Calvin cycle uses _____ molecules of ATP and ______molecules of NADPH.
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In what form or forms is chemical energy added to intermediates in the Calvin Cycle?
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Chapter 7 Solutions
Campbell Biology: Concepts & Connections Plus Mastering Biology with Pearson eText - Access Card Package (9th Edition)
Ch. 7 - Complete this summary map of photosynthesis.Ch. 7 - In photosynthesis, __________ is oxidized and...Ch. 7 - Which of the following are produced by reactions...Ch. 7 - When light strikes chlorophyll molecules in the...Ch. 7 - The reactions of the Calvin cycle are not directly...Ch. 7 - Which of the following does not occur during the...Ch. 7 - Why is it difficult for C3 plants to carry out...Ch. 7 - How is photosynthesis similar in C4 plants and CAM...Ch. 7 - To synthesize one glucose molecule, the Calvin...Ch. 7 - Compare and describe the roles of CO2 and H2O in...
Ch. 7 - Explain why a poison that inhibits an enzyme of...Ch. 7 - What do plants do with the sugar they produce in...Ch. 7 - Explain what is meant by saying the light...Ch. 7 - The following diagram compares the chemiosmotic...Ch. 7 - Continue your comparison of electron transport and...Ch. 7 - Prob. 16TYKCh. 7 - Most scientific experts agree that climate change...
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- Which of the following substances does not participate in the Calvin-Benson cycle? a. ATP c. NADPH e. PGAL b. O2 d. RuBP f. CO2arrow_forwardWhat is the molecule that leaves the Calvin cycle to be converted into glucose? a. ADP b. G3P c. RuBP d. 3-PGAarrow_forwardIs the following statement true or false? Unlike animals, which make many ATP by aerobic respiration, plants make all of their ATP by photosynthesis.arrow_forward
- Match each term with its most suitable description. ____ PGAL formation a. absorbs light ____CO2 fixation b. converts light to chemical energy ____ autotroph c. self-feeder ____ ATP forms NADPH does not d. electrons cycle back to photosystem ____ photorespiration e. problem in C3 plants ____ photosynthesis f. Calvin-Benson cycle product ____ pigment g. water molecules split ____ photolysis in photosynthesis h. rubisco functionarrow_forwardWhich of the following terms regarding the Calvin cycle are mismatched? a.) rubisco and ATP production b.) PGAL and rearranged from glucose c.) carbon fixation and stromaarrow_forwardWhich correctly describes the tole of rubisco in the Calvin cycle? rubisco uses NADPH to reduce 3-phoshoglycerate toa 3-carbon sugar NOne of the other answers are correct  Rubisco uses ATP to regenerate RuBP Rubisco incorporated CO2 fromteh atmosphere into an organic moleculearrow_forward
- The Calvin cycle requires both ATP and NADPH. Which of these molecules provides the major input of energy needed to synthesize carbohydrates?arrow_forwardWhy is this statement incorrect? The light reactions of photosynthesis will, with continual light, keep producing more and more ATP and NADPH even if the Calvin cycle was shut down.arrow_forwardWhich correctly lists the inputs of the Calvin cycle?  a)   CO2, H2O, ATP, NADPHb)   Glucose, ATPc)   H2O, photons d)   Glyceraldehyde 3-phosphate, ADP, NADP+e)   ATP, NADH, FADH2, CO2arrow_forward
- Can you help me diagram and explain the Calvin cycle (C3) using the following terms: RuBP, PGA, CO2, G3P glucose, rubisco, ATP and NADPH.arrow_forwardHow many times does a calvin cycle need to be run through in order to produce on glucose? (assume three co2 are included with each turn) a. two b. four c. six d. one e. none of the abovearrow_forwardWhich of the following does not occur during the Calvin cycle?(A) carbon fixation(B) oxidation of NADPH(C) release of oxygen(D) regeneration of the CO2 acceptorarrow_forward
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