i meant to say How many Atp molecules are used in the electron transport chain
During oxidative phosphorylation, which is part of the electron transport chain, a total of 6 water molecules are formed when oxygen is reduced to form water at the end of the chain.
The electron transport chain produces a total of 34 ATP molecules through oxidative phosphorylation. This is based on the energy generated from the electron carriers NADH and FADH2 as they transfer electrons along the chain, leading to the production of ATP.
32
There is one electron transport chain in photosynthesis, which is located in the thylakoid membrane of the chloroplast. This electron transport chain is responsible for transferring electrons and generating ATP and NADPH during the light-dependent reactions of photosynthesis.
Cellular Respiration is a cumulative function of three metabolic stages:Glycolysis: Breaks down glucose into two molecules of pyruvate.The citric acid cycle: Completes the breakdown of glucose.Oxidative phosphorylation: Is driven by the electron transport chain that occurs in the Mitochondria.
During oxidative phosphorylation, which is part of the electron transport chain, a total of 6 water molecules are formed when oxygen is reduced to form water at the end of the chain.
Approximately 28-32 ATP molecules are produced from one glucose molecule during the electron transport chain in cellular respiration. This number can vary slightly depending on specific factors such as the efficiency of the electron transport chain and the cell type.
34 :)
The electron transport chain produces a total of 34 ATP molecules through oxidative phosphorylation. This is based on the energy generated from the electron carriers NADH and FADH2 as they transfer electrons along the chain, leading to the production of ATP.
Electron transport chains are located there are many different electron donors and electron acceptors. Reverse electron transport is the most important in prokaryotic electron transport chains.
The electron transport chain produces approximately 34 ATP molecules from one molecule of glucose during cellular respiration. This process occurs in the inner mitochondrial membrane and is the final step in aerobic respiration.
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The Electron Transport Chain produces an estimated 34 ATP molecules per glucose molecule in aerobic respiration. This occurs through oxidative phosphorylation, where ATP is generated as electrons move through the chain, leading to the pumping of protons across the inner mitochondrial membrane.
There is one electron transport chain in photosynthesis, which is located in the thylakoid membrane of the chloroplast. This electron transport chain is responsible for transferring electrons and generating ATP and NADPH during the light-dependent reactions of photosynthesis.
Cellular Respiration is a cumulative function of three metabolic stages:Glycolysis: Breaks down glucose into two molecules of pyruvate.The citric acid cycle: Completes the breakdown of glucose.Oxidative phosphorylation: Is driven by the electron transport chain that occurs in the Mitochondria.
32
Aerobic respiration (using oxygen) is a high energy yielding process. During the process of aerobic respiration as many as 38 molecules of ATP are produced for every molecule of glucose that is utilized. Thus aerobic respiration process breaks down a single glucose molecule to yield 38 units of the energy storing ATP molecules.