1. Glycolysis preparatory reaction.
2. Citric acid cycle.
3. Electron transport chain.
NADH2 donates electrons to the electron transport chain, which helps generate energy in the form of ATP during cellular respiration.
The electrons in the electron transport chain originate from the breakdown of glucose during cellular respiration.
Mitochondria carry out cellular respiration in plants, where glucose is broken down to produce energy for the cell in the form of ATP. This process involves the citric acid cycle and the electron transport chain within the mitochondria.
Electron Transport SystemThe electron transport chain
The final steps of aerobic cellular respiration occur in the mitochondria, specifically in the electron transport chain and oxidative phosphorylation. Here, most of the ATP is produced through the electron transport chain by using the energy carried by electrons from previous stages of respiration.
The electron transport chain.
Electron Transport.
NADH2 donates electrons to the electron transport chain, which helps generate energy in the form of ATP during cellular respiration.
The electron transport chain in cellular respiration is located in the inner mitochondrial membrane of eukaryotic cells and the plasma membrane of prokaryotic cells.
the electron transport chain
Fermentation is not considered a stage of cellular respiration as it does not require oxygen. On the other hand, electron transport is a crucial stage of cellular respiration that involves the transfer of electrons through a series of protein complexes in the inner mitochondrial membrane to generate ATP.
The cellular respiration process has three phases. These stages are glycolysis, the citric acid cycle, and the electron transport chain.
cellular respiration uses oxygen but fermentation does not use oxygen
Glycolisis Kreb cycle Electron transport chain
fermentation
cellular respiration and electron transport chain
The Electron Transport Chain