13. Two-point sources vibrate in phase at the same frequency. They set up an interference pattern in which a point on the second nodal line is 29.5cm from one source and 25.0 cm from the other. The speed of the waves is 7.5cm/s. a. Calculate the wavelength of the waves b. Calculate the frequency at which the sources are vibrating [2T] [2T]
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- Diagram 1 Diagram 2 3. According to Diagram 2, which observer experiences a lower pitch? A. Observer A experiences a lower pitch because the waves reach this person more often, creating an apparent increase in frequency. B. Observer A experiences a lower pitch because the waves reach this person less often, creating an apparent decrease in frequency. C. Observer B experiences a lower pitch because the waves reach this person more often, creating an apparent increase in frequency. D. Observer B experiences a lower pitch because the waves reach this person less often, creating an apparent decrease in frequency. Education TM, Inc.Cannot be hand-drawn, this physics solution must be typed out, and the explanation in the simplest manner.a). Two waves, Y1 = 5 sin 25t + 10x and Y2 = 5sin 25t -10x; are %3D superimposed on each other in a medium. i). Determine the equation of the new wave generated. ii). From the equation in 2ai), describe the characteristics of a stationary wave. Major Topic/7 Blooms Score Designation/AP 9. b). i. How does Huygens's principle account for wave propagation? ii, Explain echo-location Major Topic/7 Blooms Score Designation/AP II
- 2. Sound waves transfers energy to the surrounding molecules causing them to vibrate. It can penetrate as long as there is a medium. But when you try to record a video or presentation, we would not want to have unnecessary background noise. One example is a recording studio where singers usually utilize to make a clear recording of their song. How does a recording studio work?1. In a liquid with density 1300 kg/m longitudinal waves with frequency 400 Hz are found to have wavelength 8.00 m. Calculate the bulk modulus of the liquid.4. A vibrating string 50.0 cm long is under a tension of 1.00 N. The results from five 4 1.5 cm successive stroboscopic pictures are shown in the figure 1. The strobe rate is set at 5000 flashes per minute, and 1.5 cm 4. 2 observations reveal that the maximum displacement occurred at flashes 1 and 5 with no other maxima in between. (a) Find the period, frequency, and wavelength for the traveling waves on this string. (b) In what normal mode (harmonic) is the string vibrating? (c) What is the speed of the traveling waves on the string? (d) How fast is point P moving when the string is in (i) position 1 and (ii) position 3? (e) What is the mass of this string?
- I need the answer as soon as possibleQuestion 2 Two sinuscidal waves traveting in opposite directions interfere to produce a slanding wave Wth the wave Function u= (3.50 m) sinco.a0x) cos (i0ct) where x is in meters and t ie is in Secanes. Determine the wGIveleneth, Frequency and speed oF the interfering waves.A pulse is traveling towards the boundary from a more dense medium to a less dense medium. Medium 1 Medium2 More Dense Less Dense The partially reflected wave will be with respect to the incident wave. O a. in phase O b. 180° out of phase Ос. 180° in phase O d. 270° out of phase
- 1. Two speakers are 4.5 meters apart, in phase, and produce a single sound wave with wavelength λ = 0.8m. Three points labelled A, B, and C are 4.0m, 8.0m, and 12.0m below the speaker on the left, as shown. Fill in the table with the required information, and indicate whether the point sees Constructive or Destructive interference. (Hint: remember the Pythagorean theorem!) 4.5m A B C AL= L2 14₁-121 www. L₁ L₂ AL 2 C/D SAT SHOZ! To yousupo 4m 4m 4m A B C Hint: Remember the Pythagorean Thorem: c² = a² + b² a b с6Please answer all thank you!