to maximize the synthesis of ATP from the entire process of aerobic cellular respiration by storing the energy generated during redox reactions in the form of NADH and FADH2. thus option B is correct.
The second stage of cellular respiration, a three-step process by which living cells break down organic fuel molecules in the presence of oxygen to obtain the energy they require to grow and divide, is known as the tricarboxylic acid cycle, also known as the Krebs cycle and the citric acid cycle.
Pyruvate enters the Kreb's cycle, the second step of aerobic cellular respiration, as acetyl-CoA. The Krebs cycle converts complicated acetyl-CoA oxidation into CO2 and stores the liberated energy as reducing powers NADH and FADH2.
During oxidative phosphorylation, the oxidation of NADH and FADH2 produces a proton motive force, which powers the synthesis of many ATPs.
Learn more about the Kreb cycle here:
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