Calculate Max Wavelength of Sound Emitted by Loudspeakers

In summary, the maximum wavelength of sound emitted by the loudspeakers is 8 m. This is determined by the presence of a standing wave pattern between the speakers, with the wavelength of the traveling waves being twice as long as the standing wave pattern. The book may have assumed prior knowledge of standing waves in its calculation.
  • #1
Peter G.
442
0
Hi,

Two loudspeakers are connected to the same audio oscillator. An observer walks in between them. At a point M, halfway between the speakers he hears a loud sound. By the time he gets to a point P 2m away from M he hears no sound at all. Calculate the maximum wavelength of sound emitted by the loudspeakers.

This is what I did:
If 2 m there is no sound at all, there is destructive interference, hence: (n + 1/2) λ = 2.

The maximum wavelength would be equal to 4, but the book says 8 m. How?

Thanks,
Peter G.
 
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  • #2
Peter G. said:
Hi,

Two loudspeakers are connected to the same audio oscillator. An observer walks in between them. At a point M, halfway between the speakers he hears a loud sound. By the time he gets to a point P 2m away from M he hears no sound at all. Calculate the maximum wavelength of sound emitted by the loudspeakers.

This is what I did:
If 2 m there is no sound at all, there is destructive interference, hence: (n + 1/2) λ = 2.

The maximum wavelength would be equal to 4, but the book says 8 m. How?

Thanks,
Peter G.

In between the speakers, you have a standing wave pattern, and indeed the 4m is the wavelength of the standing wave pattern, however the wavelength of the traveling waves that caused the Standing wave pattern is twice as long as the standing wave.
 
  • #3
Oh, ok. I haven't studied Standing Waves yet and the exercise is before that part, but maybe the book assumed I had that knowledge.
 

Related to Calculate Max Wavelength of Sound Emitted by Loudspeakers

1. What is the formula for calculating the maximum wavelength of sound emitted by loudspeakers?

The formula for calculating the maximum wavelength of sound emitted by loudspeakers is λ = v/f, where λ is the wavelength, v is the speed of sound (343 m/s at room temperature), and f is the frequency of the sound in hertz (Hz).

2. How do I determine the frequency of the sound emitted by a loudspeaker?

The frequency of the sound emitted by a loudspeaker can be determined by using an oscilloscope or a frequency meter. Alternatively, you can also find the frequency by dividing the speed of sound by the wavelength of the sound wave.

3. Can the maximum wavelength of sound emitted by loudspeakers vary?

Yes, the maximum wavelength of sound emitted by loudspeakers can vary depending on the design and size of the loudspeaker, as well as the material it is made of. However, the speed of sound and the frequency of the sound wave will also affect the maximum wavelength.

4. Why is it important to calculate the maximum wavelength of sound emitted by loudspeakers?

Calculating the maximum wavelength of sound emitted by loudspeakers is important because it helps us understand the characteristics and limitations of the loudspeaker. It also helps in determining the optimal placement and distance of the loudspeaker for optimal sound quality.

5. How does the maximum wavelength of sound emitted by loudspeakers affect the quality of sound?

The maximum wavelength of sound emitted by loudspeakers can affect the quality of sound in several ways. A longer wavelength can result in lower frequencies, which can cause distortion and affect the clarity of the sound. On the other hand, a shorter wavelength can result in higher frequencies, which can cause shrill or harsh sounds. Therefore, it is important to calculate and consider the maximum wavelength when designing and using loudspeakers for optimal sound quality.

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