Liver and cardiac cells produce 38.Other cells produce 36.
36 - 38 ATP from aerobic cellular respiration.
ATP is used for cellular respiration. It is not a product of cellular respiration.
36 ATP molecules can be produced from a single molecule of glucose through the complete process of cellular respiration.
ATP is the energy-storage product of cellular respiration. Aerobic cellular respiration produces around 36 ATP molecules for every glucose molecule broken down. Anaerobic respiration results in a net gain of 2 ATP molecules.
Approximately 34 ATP molecules are generated during the electron transport chain stage of cellular respiration. This is the highest number of ATP molecules produced in the entire process of cellular respiration, making it a crucial step in energy production for the cell.
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.
One molecule of glucose can produce 36 molecules of ATP from aerobic cellular respiration.
The temporary storage of energy in ATP molecules is part of cellular respiration. During cellular respiration, glucose is broken down in a series of steps to produce ATP, which is used as the main energy source for cellular activities.
Theoratically 38 ATP molecules.Bv Many produce 36 ATP molecules.a
Yes, they both create ATP. The difference is, cellular respiration creates 36 ATP molecules and fermentation only creates 2 ATP molecules.
Between 36-38