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Multiple Choice
Which of the following adaptations increases the surface area-to-volume ratio in human lungs to enhance gas exchange efficiency?
A
Thickening of the alveolar walls to prevent gas loss.
B
Decreasing the number of capillaries surrounding the alveoli.
C
The presence of millions of alveoli providing a large surface area.
D
Reducing the overall size of the lungs to minimize air space.
Verified step by step guidance
1
Understand the concept of surface area-to-volume ratio: In biological systems, a higher surface area-to-volume ratio allows for more efficient exchange of gases, nutrients, or waste. This is particularly important in structures like the lungs, where oxygen and carbon dioxide need to be exchanged rapidly.
Analyze the structure of the human lungs: The lungs contain millions of tiny air sacs called alveoli. These alveoli are surrounded by capillaries and provide a large surface area for gas exchange to occur.
Evaluate the adaptations mentioned in the problem: Thickening of the alveolar walls would reduce gas exchange efficiency by increasing the diffusion distance. Decreasing the number of capillaries would limit the blood flow available for gas exchange. Reducing the overall size of the lungs would decrease the surface area available for gas exchange.
Identify the correct adaptation: The presence of millions of alveoli significantly increases the surface area of the lungs, enhancing the surface area-to-volume ratio and making gas exchange more efficient.
Conclude: The correct adaptation is the presence of millions of alveoli, as this maximizes the surface area available for oxygen and carbon dioxide exchange, which is critical for respiratory efficiency.