Which of the following is the best definition of cellular respiration? a. A sequence of redox reactions with O2 as the final electron acceptor b. A sequence of redox reactions with the final electron acceptor from the environment c. A method of generating ATP d. The complete oxidation of glucose to CO2 and H2O e. A series of reactions in which pyruvic acid is oxidized to CO2 and H2O
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Step 1: Understand that cellular respiration is a metabolic process involving the transfer of electrons through a series of redox reactions to generate energy.
Step 2: Recognize that in aerobic cellular respiration, oxygen (O₂) acts as the final electron acceptor in the electron transport chain.
Step 3: Note that cellular respiration results in the production of ATP, but ATP generation alone does not fully define the process.
Step 4: Consider that cellular respiration involves the complete oxidation of glucose to carbon dioxide (CO₂) and water (H₂O), which encompasses glycolysis, the Krebs cycle, and the electron transport chain.
Step 5: Evaluate each option based on these points to identify the best definition that captures the essence of cellular respiration, focusing on the role of redox reactions and the final electron acceptor.
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Key Concepts
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Cellular Respiration Definition
Cellular respiration is a metabolic process where cells convert biochemical energy from nutrients into ATP, typically involving a series of redox reactions. It usually includes glycolysis, the Krebs cycle, and the electron transport chain, culminating in the production of energy.
In cellular respiration, electrons are transferred through a chain of carriers and finally accepted by a terminal electron acceptor. In aerobic respiration, oxygen (O₂) serves as the final electron acceptor, enabling efficient ATP production. Other organisms may use different acceptors in anaerobic respiration.
Complete oxidation of glucose involves breaking down glucose molecules fully into carbon dioxide (CO₂) and water (H₂O), releasing energy stored in chemical bonds. This process is central to aerobic respiration and is essential for maximizing ATP yield from glucose.