The mitochondria
Cellular Respiration produces ATP, while Photosynthesis produces Glucose. However, they both EAT UP LAUREN!
Aerobic respiration is more efficient than fermentation in terms of obtaining energy from glucose because it produces a much higher yield of ATP molecules per glucose molecule. Aerobic respiration produces up to 38 ATP molecules per glucose molecule, while fermentation produces only 2 ATP molecules per glucose molecule.
The phosphagen system produces 1 ATP molecule per one molecule of creatine phosphate. The glycolytic system produces 2 ATP molecules per molecule of glucose. The oxidative system can produce up to 38 ATP molecules per molecule of glucose.
The electron transport chain stage produces the most ATP when glucose is completely oxidized to carbon dioxide and water, generating up to 34 molecules of ATP per glucose molecule.
In plant cells, the chloroplast is an organelle that performs photosynthesis, and he mitochondria is an organelle that produces ATP (energy).
Yes, aerobic respiration produces significantly more ATP than anaerobic respiration. Aerobic respiration produces up to 38 molecules of ATP per molecule of glucose, while anaerobic respiration produces only 2 molecules of ATP per molecule of glucose.
The electron transport chain during aerobic respiration produces the most ATP, generating up to 34 molecules of ATP per molecule of glucose. This process occurs in the inner mitochondrial membrane and involves a series of redox reactions that drive ATP synthesis.
2 ATP are produced in anaerobic respirtaion
Cellular Respiration produces ATP, while Photosynthesis produces Glucose. However, they both EAT UP LAUREN!
Aerobic respiration is more efficient than fermentation in terms of obtaining energy from glucose because it produces a much higher yield of ATP molecules per glucose molecule. Aerobic respiration produces up to 38 ATP molecules per glucose molecule, while fermentation produces only 2 ATP molecules per glucose molecule.
The phosphagen system produces 1 ATP molecule per one molecule of creatine phosphate. The glycolytic system produces 2 ATP molecules per molecule of glucose. The oxidative system can produce up to 38 ATP molecules per molecule of glucose.
Yes, cellular respiration produces significantly more ATP molecules compared to fermentation. Cellular respiration can generate up to 36-38 ATP molecules per glucose molecule, while fermentation typically produces only 2 ATP molecules per glucose molecule. This difference is due to the more efficient energy-harvesting processes involved in cellular respiration.
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The electron transport chain stage produces the most ATP when glucose is completely oxidized to carbon dioxide and water, generating up to 34 molecules of ATP per glucose molecule.
Yes, aerobic respiration is highly efficient in producing ATP compared to other forms of cellular respiration, producing up to 36-38 ATP molecules per glucose molecule. This process involves the complete breakdown of glucose in the presence of oxygen, resulting in a higher yield of ATP through the electron transport chain and oxidative phosphorylation.
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In plant cells, the chloroplast is an organelle that performs photosynthesis, and he mitochondria is an organelle that produces ATP (energy).