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Chemiosmotic Hypothesis, ATP synthesis Video Lecture - NEET

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FAQs on Chemiosmotic Hypothesis, ATP synthesis Video Lecture - NEET

1. What is the chemiosmotic hypothesis?
The chemiosmotic hypothesis is a scientific theory that explains how ATP synthesis occurs in living organisms. It proposes that the synthesis of ATP is driven by the movement of ions across a membrane, specifically the proton gradient generated during cellular respiration or photosynthesis.
2. How does the chemiosmotic hypothesis relate to ATP synthesis?
The chemiosmotic hypothesis suggests that ATP synthesis is coupled to the movement of protons (H+) across a membrane. As protons flow down their concentration gradient, they pass through ATP synthase, an enzyme complex embedded in the membrane. This flow of protons through ATP synthase drives the synthesis of ATP from ADP and inorganic phosphate.
3. What is NEET in relation to ATP synthesis and the chemiosmotic hypothesis?
NEET (National Eligibility cum Entrance Test) is a competitive examination in India for students aspiring to enter medical and dental colleges. In the context of ATP synthesis and the chemiosmotic hypothesis, NEET may include questions related to the understanding and application of this concept in cellular respiration or photosynthesis.
4. How does the chemiosmotic hypothesis explain ATP synthesis in cellular respiration?
In cellular respiration, the chemiosmotic hypothesis explains that the electron transport chain pumps protons (H+) across the inner mitochondrial membrane, creating a proton gradient. This gradient is then utilized by ATP synthase to generate ATP from ADP and inorganic phosphate. The movement of protons through ATP synthase is coupled to the synthesis of ATP.
5. How does the chemiosmotic hypothesis explain ATP synthesis in photosynthesis?
In photosynthesis, the chemiosmotic hypothesis explains that during the light-dependent reactions, protons (H+) are pumped across the thylakoid membrane of chloroplasts, creating a proton gradient. This gradient is then harnessed by ATP synthase to produce ATP from ADP and inorganic phosphate. The flow of protons through ATP synthase is responsible for driving ATP synthesis in photosynthesis.
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