As the drawing shows, one microphone is located at the origin, and a second microphone is located on the +y axis. The microphones are separated by a distance of D = 1.46 m. A source of sound is located on the +x axis, its distances from microphones 1 and 2 being L₁ and L2, respectively. The speed of sound is 345 m/s. The sound reaches microphone 1 first, and then, 1.71 ms later, it reaches microphone 2. Find the distances (in m) (a) L₁ and (b) L2.

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As the drawing shows, one microphone is located at the origin, and a second microphone is located on the +y axis. The microphones are
separated by a distance of D = 1.46 m. A source of sound is located on the +x axis, its distances from microphones 1 and 2 being L₁ and
L2, respectively. The speed of sound is 345 m/s. The sound reaches microphone 1 first, and then, 1.71 ms later, it reaches microphone 2.
Find the distances (in m) (a) L₁ and (b) L₂.
(a) Number
(b) Number
I
p.
Microphone 2
Microphone 1
Units
Units
L1
>
Sound
source
+X
Transcribed Image Text:As the drawing shows, one microphone is located at the origin, and a second microphone is located on the +y axis. The microphones are separated by a distance of D = 1.46 m. A source of sound is located on the +x axis, its distances from microphones 1 and 2 being L₁ and L2, respectively. The speed of sound is 345 m/s. The sound reaches microphone 1 first, and then, 1.71 ms later, it reaches microphone 2. Find the distances (in m) (a) L₁ and (b) L₂. (a) Number (b) Number I p. Microphone 2 Microphone 1 Units Units L1 > Sound source +X
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