Electron transport chain i.e. oxidative phosphorylation at inner mitochondrial membrane. excluding ETC the net production of ATP during glycolysis is 2, while during one Kreb's cycle is 1. In ETC each NADH is utilized to form 3 ATPs, and from each FADH 2 ATP are produced. total production of ATP during complete oxidation of one molecule of glucose is 38, out of these 34 produced during ETC. 30 from 10 NADH and 4 from two FADH. during glycolysis 2 NADH are formed, while during one Kreb's cycle 4 NADH forms and form one molecule of glucose Kreb's cycle takes place two times. so tatal is 8 during Kreb's cycle.
carbon dioxideAerobic- Carbon Dioxide and WaterAnaerobic- Carbon Dioxide and Alcohol
carbon dioxide
NADH is produced in the mitochondria during the citric acid cycle and the electron transport chain of cellular respiration. FADH2 is also produced in the mitochondria during the citric acid cycle.
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.
NADH is produced during both the glycolysis and citric acid cycle phases of cellular respiration. In glycolysis, NADH is generated when glucose is broken down into pyruvate. In the citric acid cycle, NADH is produced as acetyl-CoA is further metabolized to generate ATP.
ATP is mainly generated in the mitochondria through the process of cellular respiration. During cellular respiration, glucose is broken down in the presence of oxygen to produce ATP through a series of reactions in the electron transport chain and oxidative phosphorylation. Some ATP is also generated in the cytoplasm through glycolysis.
Yes. Mass quantity of energy in form of ATP is produced during cellular respiration.
carbon dioxideAerobic- Carbon Dioxide and WaterAnaerobic- Carbon Dioxide and Alcohol
ATP is not produced directly by the ETC but instead via the proton gradient generated during electron transport through the ETC.
No
carbon dioxide
Carbon dioxide is produced during the process of cellular respiration During cellular respiration energy is released in the form of ATP. Oxygen is reduced to form water and Carbon of glucose combines with oxygen to produce carbon dioxide. Thus, carbon dioxide, water and energy are produced during cellular respiration.
NADH is produced in the mitochondria during the citric acid cycle and the electron transport chain of cellular respiration. FADH2 is also produced in the mitochondria during the citric acid cycle.
Most of the ATP is produced during the electron transport chain stage of cellular respiration. This is where the majority of ATP molecules are generated through oxidative phosphorylation using energy released from the transfer of electrons along the electron transport chain.
Adenosine triphosphate (ATP) is the energy-rich molecule produced by cellular respiration that directly powers cell work. ATP is generated during the process of glycolysis, the citric acid cycle, and oxidative phosphorylation.
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.
the kreb's cycle