NAD+ is the first electron acceptor in cellular respiration (O2 is the final acceptor).
oxygen
The electron transport chain. Oxygen is the last electron acceptor.
In aerobic respiration, the final electron acceptor is molecular oxygen O2. With anaerobic respiration, the final electron acceptor is a molecule other than oxygen, such as an organic substance.
Oxygen is considered the ultimate electron acceptor in aerobic respiration. It accepts electrons at the end of the electron transport chain, forming water as a byproduct.
NAD+ is the first electron acceptor in cellular respiration (O2 is the final acceptor).
oxygen
oxygen
O2 ADDED: Not O2, but one atom of oxygen.
Aerobic respiration requires oxygen to operate (whereas anaerobic respiration does not), and oxygen is the electron acceptor.
In aerobic respiration it is oxygen.
No, because the electron acceptor is what cates the electrons as the leave the electron transport chain, which is oxygen in aerobic respiration. Since aerobic respiration uses oxygen, and anaerobic fermentation is abest of oxygen, anaerobic fermentation cannot possibly use oxygen as respiration does.
The electron transport chain. Oxygen is the last electron acceptor.
Oxygen is a gaseous reactant that is essential for cellular respiration. It serves as the terminal electron acceptor in the electron transport chain, allowing for the production of ATP in aerobic respiration.
The final electron acceptor in aerobic respiration is oxygen, which turns into H20.
In aerobic respiration, the final electron acceptor is molecular oxygen O2. With anaerobic respiration, the final electron acceptor is a molecule other than oxygen, such as an organic substance.
Oxygen, because it is highly electronegative.