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Multiple Choice
If the basilar membranes in the ears were equal in width and flexibility along their length, how would this affect a person's sense of hearing?
A
The person would be totally deaf.
B
The person could not distinguish loud sounds from quiet sounds.
C
The person would hear normally.
D
The person could distinguish a greater range of pitches than a normal human.
E
The person could not distinguish different pitches.
Verified step by step guidance
1
Understand the role of the basilar membrane: The basilar membrane in the cochlea of the ear is crucial for distinguishing different pitches of sound. It varies in width and stiffness along its length, which allows it to resonate at different frequencies.
Recognize the importance of variation: The variation in width and flexibility of the basilar membrane is what enables it to respond to different frequencies of sound. This variation allows different parts of the membrane to vibrate in response to different pitches.
Consider the scenario of uniformity: If the basilar membrane were uniform in width and flexibility, it would not be able to differentiate between different frequencies. This is because the entire membrane would respond similarly to all frequencies, rather than specific parts resonating with specific frequencies.
Relate to hearing ability: Without the ability to differentiate frequencies, a person would not be able to distinguish different pitches. This means that while they might still hear sounds, they would not be able to perceive the differences in pitch that are essential for understanding speech and music.
Conclude the effect: Therefore, if the basilar membrane were equal in width and flexibility along its length, the person would not be able to distinguish different pitches, affecting their ability to perceive the nuances of sound.