Photosynthesis is the process by which green plants and other organisms convert light energy into chemical energy. During photosynthesis, the light energy is captured by an organelle called chloroplast. This is present in these cells and is used to convert water, carbon dioxide and other minerals into ocygen and other organic compounds rich in ...
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The source of this electron (H 2 A) differentiates the oxygenic photosynthesis of plants and cyanobacteria from anoxygenic photosynthesis carried out by other types of bacterial phototrophs (Figure 8.32). In oxygenic photosynthesis, photolysis of H 2 O supplies the electron to the reaction centre. Because oxygen is generated as a byproduct and ...
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well as freeing nutrients in the soil; the plants provide photosynthesis products to fungi. The photosynthetic organisms provide fungus with a source of energy. The fungus pro-vides the alga with water, minerals, and protection. SAMPLE ANSWER: The chemical would kill the fungus that was harming the plants, restoring them to homeostasis.
How does photosynthesis benefit heterotrophs. A. It adds carbon dioxide to the air. B. ... A heterotroph is an organism that cannot make its own food. A. True. B.
Photosynthesis is a chemical reaction that takes place inside a plant, producing food for the plant to survive. Carbon dioxide, water and light are all needed for photosynthesis to take place.
b. contain five phosphate groups. c. can both store energy and provide it for metabolic reactions. d. help a plant produce carbon dioxide. 4. In glycolysis, a. aerobic processes occur. b. four ATP molecules are produced. c. four ADP molecules are produced. d. glucose is produced ...
Glucose is produced by autotrophs during photosynthesis. Both autotrophs and heterotrophs break down the glucose to form ATP during cellular respiration. Energy, therefore, is transferred between the autotrophic and heterotrophic levels. Autotrophs are dependent upon heterotrophs only for CO 2.