Question

In: Physics

Two small speakers A and B are driven in step at 730 Hz by the same...

Two small speakers A and B are

Two small speakers A and B are driven in step at 730 Hz by the same audio oscillator. These speakers both start out 4.50 mfrom the listener, but speaker A is slowly moved away. (See the figure (Figure 1) ). The speed of sound in air is 344 m/s .

A. At what distance d will the sound from the speakers first produce destructive interference at the location of the listener?

B. If A keeps moving, at what distance d will the speakers next produce destructive interference at the listener?

C. After A starts moving away, at what distance will the speakers first produce constructive interference at the listener?

Solutions

Expert Solution

A.
Let us find the wavelength 1st
use:
v= f*lambda
344 = 730* lambda
lambda = 0.47 m

first destructive interference occurs when path difference is lambda/2
path difference = d
d = lambda/2
d = 0.47/2
= 0.235 m

B.
2nd destructive interference occurs when path difference is 3*lambda/2
path difference = d
d =3* lambda/2
d = 3* 0.47/2
= 0.705 m

C.
first constructive interference occurs when path difference is lambda
path difference = d
d = lambda
d = 0.47 m


Related Solutions

Two small speakers A and B are driven in step at 720Hz by the same audio oscillator
Two small speakers A and B are driven in step at 720Hz by the same audio oscillator. These speakers both start out 4.50m from the listener, but speaker Ais slowly moved away.Part A:At what distance d will the sound from the speakers first produce destructive interference at the location of the listener?Part B:If A keeps moving, at what distance d will the speakers next produce destructive interference at the listener?Part C:After A starts moving away, at what distance will the...
Two speakers 5 m apart, are driven in phase by the same amplifier, at a frequency...
Two speakers 5 m apart, are driven in phase by the same amplifier, at a frequency of 775 Hz. The speed of sound is 340 m/s. An observer starts 5m away from one of the speakers at a point along the perpendicular to the line connecting the two speakers, and moves away from the speakers along that line. a) How much distance separates the second and the third interference minima they hear? b) Do you expect the intensity at the...
Two speakers, A and B, are at the same point on an x-axis and each emits...
Two speakers, A and B, are at the same point on an x-axis and each emits sound with a wavelength of 0.25 m. Speaker B's phase constant is 260 degrees larger than speaker A's phase constant and each produces an amplitude of 10 Pa. What amplitude occurs along the x-axis in front of these speakers (Pa)? b. What is the minimum distance you can move speaker A to achieve constructive interference along the x-axis? Give a positive answer regardless of...
The string shown in the figure below is driven at a frequency of 5.00 Hz. The...
The string shown in the figure below is driven at a frequency of 5.00 Hz. The amplitude of the motion is 15.0 cm and the wave speed is 19.5 m/s. Furthermore, the wave is such that y = 0 at x = 0 and t = 0. (a) Determine the angular frequency for this wave. ? = rad/s (b) Determine the wave number for this wave. k = rad/m (c) Write an expression for the wave function. (Use the following...
Two point source three meter apart are driven by the same oscillator at a frequency of...
Two point source three meter apart are driven by the same oscillator at a frequency of 800 hz. The sources emit energy in the form of spherical waves. An observer initially hears a maximum at a distance 10 m along the perpendicular bisector of the line joining the two sources. What distance (in m) must observer move along a line parallel to the line joining the two sources before reaching a minimum intensity? (Assume the speed of sound is 343...
(numbers 20-21) Two speakers emit the same pure tone (sound of a single frequency) and are...
(numbers 20-21) Two speakers emit the same pure tone (sound of a single frequency) and are in phase. 20. An observer begins at the center point between the speakers and slowly moves toward one of the speakers. The second very quiet spot encountered (completely destructive interference) is 1.5 m from the center. What is the wavelength of the sound? a) 1.0 m b) 1.5 m c) 2.0 m d) 2.5 m e) 3.0 m 21. If the distance between the...
2 identical speakers are in phase with eachother, at the same position on the x-axis, and...
2 identical speakers are in phase with eachother, at the same position on the x-axis, and both have a wavelength of 3 meters. They are seperated from eachother on the y-axis by a distance of 6 meters. While an observer maintains a constant position on the y-axis, determine the locations on the x-axis where the observer could relocate theirself where the sound intensity is at a minimum. The provided answers are 11.25 meters and 1.75 meters; however, I am unsure...
The two speakers are placed 37.2 cm apart. A single oscillator makes the speakers vibrate in...
The two speakers are placed 37.2 cm apart. A single oscillator makes the speakers vibrate in phase at a frequency of 2.02 kHz. At what angles, measured from the perpendicular bisector of the line joining the speakers, would a distant observer hear maximum sound intensity? Minimum sound intensity? (Take the speed of sound to be 340 m/s.) maximum intensities: (List smallest angle first.) θ1max =  ° θ2max =  ° θ3max =  ° minimum intensities: (List smallest angle first.) θ1min =  ° θ2min =  °
Two bonds A and B have the same credit rating, the same par value, and the...
Two bonds A and B have the same credit rating, the same par value, and the same coupon rate. Bond A has 30 years to maturity and bond B has five (5) years to maturity. Please demonstrate your understanding of interest rates risk by answering the following questions: Discuss which bond will trade at a higher price in the market Discuss what happens to the market price of each bond if the interest rates in the economy go up. Which...
Two oligopolies (Firm A and Firm B) have access to the same the same technology and...
Two oligopolies (Firm A and Firm B) have access to the same the same technology and have similar costs. FC = 0 MC = AVC = ATC = $100 Assume the demand of the product is given below: P=1000-Q Remember Q= q_A+ q_B Where q_(A ) is production by firm A and q_B-is production by firm B c) Now assume that the firms compete by setting quantities and they both move at the same time. Assume that the reaction functions...
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT