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Since glycolysis of one glucose molecule generates two acetyl CoA molecules, the reactions in the glycolytic pathway and citric acid cycle produce six CO2 molecules, 10 NADH molecules, and two FADH2 molecules per glucose molecule
The amount of glucose molecules which can be produced per second in a plant is in: millions.
Cellular respiration can be defined as a series of metabolic reactions that typically occur in living cells, so as to produce energy in the form of adenosine triphosphate (ATP).
Basically, the three (3) main stages involved in cellular respiration include:
- Glycolysis.
- Krebs cycle.
- Electron transport chain.
Glycolysis is the first stage of cellular respiration and it typically takes place in the cytoplasm of both prokaryotic and eukaryotic living cells.
Also, glycolysis is an anaerobic reaction because it doesn’t require the use of oxygen.
The primary role of a glucose molecule is to act as a source of energy for autotrophs (plants).
During photosynthesis, glucose molecules are produced in millions by autotrophs (plants) through the use of light energy (sunlight).
On a related note, glucose is converted into a more usable form called pyruvate (three-carbon sugar) during glycolysis.
In conclusion, millions of glucose molecules are produced per second in a plant.
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