34. A block with a speaker bolted to it is connected to a spring having spring constant k = 49.0 N/m, as shown in Figure 2. The total mass of the block and speaker is 1.00 kg, and the amplitude of the unit's motion is 2.00 m. If the speaker emits sound waves of frequency 200.0 Hz, determine the (a) lowest and (b) highest frequencies heard by the person to the right of the speaker. (Hint: When the speaker is facing the person at maximum speed, the person hears the highest frequency, and when the speaker is moving away from the person at maximum speed, the person hears the lowest frequency. The speed of sound in air is c-340 m/s)

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34. A block with a speaker bolted to it is connected to a spring having spring constant
k = 49.0 N/m, as shown in Figure 2. The total mass of the block and speaker is 1.00 kg,
and the amplitude of the unit's motion is 2.00 m. If the speaker emits sound waves of
frequency 200.0 Hz, determine the (a) lowest and (b) highest frequencies heard by the
person to the right of the speaker. (Hint: When the speaker is facing the person at
maximum speed, the person hears the highest frequency, and when the speaker is
moving away from the person at maximum speed, the person hears the lowest frequency.
The speed of sound in air is c-340 m/s)
1
Figure 2
Transcribed Image Text:34. A block with a speaker bolted to it is connected to a spring having spring constant k = 49.0 N/m, as shown in Figure 2. The total mass of the block and speaker is 1.00 kg, and the amplitude of the unit's motion is 2.00 m. If the speaker emits sound waves of frequency 200.0 Hz, determine the (a) lowest and (b) highest frequencies heard by the person to the right of the speaker. (Hint: When the speaker is facing the person at maximum speed, the person hears the highest frequency, and when the speaker is moving away from the person at maximum speed, the person hears the lowest frequency. The speed of sound in air is c-340 m/s) 1 Figure 2
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