Glycerol (from fatty acids) can be entered into Glycolysis at its 3Carbon stage
If cellular respiration begins with two molecules of glucose, a total of about 76 molecules of ATP can be generated through the process of glycolysis, the citric acid cycle, and oxidative phosphorylation. This is because each molecule of glucose yields approximately 38 molecules of ATP through the complete process of cellular respiration.
in aerobic respiration: glucose + oxygen --> carbon dioxide + water + energy In anaerobic respiration: glucose --> lactic acid + energy
Photosynthesis makes glucose molecules, but cellular respiration breaks them down.
Glucose.There are only three products.CO2 ,water and glucose are produced
2 atp molecules
Yes, other molecules besides glucose can be used in cellular respiration. Fatty acids and amino acids can also be broken down in specific pathways to generate ATP through cellular respiration. Each type of molecule enters cellular respiration at different points in the metabolic pathway.
36 ATP molecules can be produced from a single molecule of glucose through the complete process of cellular respiration.
If cellular respiration begins with two molecules of glucose, a total of about 76 molecules of ATP can be generated through the process of glycolysis, the citric acid cycle, and oxidative phosphorylation. This is because each molecule of glucose yields approximately 38 molecules of ATP through the complete process of cellular respiration.
Photosynthesis makes glucose molecules, but cellular respiration breaks them down.
To break down Glucose molecules into ATP which can then used for energy.
in aerobic respiration: glucose + oxygen --> carbon dioxide + water + energy In anaerobic respiration: glucose --> lactic acid + energy
36 ATP molecules can be produced from a single molecule of glucose through the complete process of cellular respiration.
Photosynthesis makes glucose molecules, but cellular respiration breaks them down.
Glucose.There are only three products.CO2 ,water and glucose are produced
2 atp molecules
At the beginning of cellular respiration, energy is stored in the bonds of glucose molecules. Glucose is broken down through a series of biochemical reactions to release stored energy in the form of ATP.
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.