Glycolysis produces 4 ATPs but it uses 2 in the process so you are left with 2.The electron transport chain produces 36 ATPs.
Approximately 36-38 ATP molecules are produced from one glucose molecule in aerobic cellular respiration. This process occurs in multiple stages, including glycolysis, the Krebs cycle, and oxidative phosphorylation, which collectively generate ATP through the electron transport chain.
Around 36-38 ATP molecules are produced through complete aerobic respiration.
It can vary depending on the species, but on average, a bird has trillions of cells in its body. Each cell plays a specific role in the bird's physiology, contributing to functions such as respiration, digestion, and reproduction.
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Each daughter cell produced by meiosis will have half the number of chromosomes as the original diploid cell. So, if a diploid cell contains 28 chromosomes, each daughter cell will have 14 chromosomes after meiosis.
Between 36-38
Approximately 30-32 ATP molecules are produced through cellular respiration for each glucose molecule burned, depending on factors such as the efficiency of ATP production in the electron transport chain.
Two FADH2 molecules are produced in the preparatory step of cellular respiration.
ATP is used for cellular respiration. It is not a product of cellular respiration.
2 to 36 depending upon oxygen .
During cellular respiration a molecule called Adenine triphosphate or ATP is produced which is used for many different aspects of a cell's functions. Another molecule that is produced that contains potential energy is called NADH. A net total of 2 ATP and 2 NADH is produced during the stages of cellular respiration known as glycolysis and linkage reactions.
Theoratically 38 ATP molecules.Bv Many produce 36 ATP molecules.a
36 ATP molecules can be produced from a single molecule of glucose through the complete process of cellular respiration.
36 ATP molecules can be produced from a single molecule of glucose through the complete process of cellular respiration.
36 - 38 ATP from aerobic cellular respiration.
36 in somatic cells and 38 in liver and heart cells.
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.