Two strings are adjusted to vibrate at exactly 230 Hz. Then the tension in one string is increased slightly. Afterward, three beats per second are heard when the strings vibrate at the same time. Part A What is the new frequency of the string that was tightened? Express your answer in hertz to three significant figures. Ha
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- Two organ pipes, open at one end but closed at the other, are each 1.10 m long. One is now lengthened by 1.10 cm. Part A Find the frequency of the beat they produce when playing together in their fundamental. Express your answer in hertz. 15. ΑΣΦ fbeat = Submit Request Answer ? HzYou have a stopped pipe of adjustable length close to a taut 62.0 cm, 7.25 g wire under a tension of 4510 N. You want to adjust the length of the pipe so that, when it produces sound at its fundamental frequency, this sound causes the wire to vibrate in its second overtone with very large amplitude. The speed of sound in air is 344 m/s. Part A How long should the pipe be? Express your answer with the appropriate units. L = 6.8 Submit μA cm 2 ? Previous Answers Request AnswerA loudspeaker on a tall pole broadcasts sound waves equally in all directions. Part A What is the speaker's power output if the sound intensity level is 95.0 dB at a distance of 16 m ? Express your answer with the appropriate units.
- A heavy piece of hanging sculpture is suspended by a 90 cm-long, 5.0 g steel wire. When the wind blows hard, the wire hums at its fundamental frequency of 80 Hz. Part A What is the mass of the sculpture? Express your answer with the appropriate units. M = LO μA Value Units ?Consta A guitar string is 90.0 cm long and has a mass of 3.00 g . From the bridge to the support post (= l) is 60.0 cm and the string is under a tension of 527 N. Part A What are the frequencies of the fundamental and first two overtones? Enter your answers numerically separated by commas. ? f1, f2, f3 = Hz Submit Request AnswerA 25 g string is under 15 N of tension. A pulse travels the length of the string in 50 ms. Part A How long is the string? Express your answer with the appropriate units. ▸ View Available Hint(s) L = Submit μA Value Units ?
- A spool of wire 150 m long has a mass of 0.190 kg when weigh on a scale. This string is used to set up a standing wave laboratory demonstration between two posts 3.0 m apart. Part A If the desired second harmonic frequency is 75 Hz, what should be the required string tension? Express your answer using two significant figures. Fr= hmit Benunst Answer NA hammer taps on the end of a 3.4-m-long metal bar at room temperature. A microphone at the other end of the bar picks up two pulses of sound, one that travels through the metal and one that travels through the air. The pulses are separated in time by 8.20 ms. Part A What is the speed of sound in this metal? Express your answer with the appropriate units. ?During takeoff, the sound intensity level of a jet engine is 160 dB at a distance of 34 m. Part A What is the sound intensity level at a distance of 1.0 km? Express your answer with the appropriate units.
- A 27.0 cm -long wire with a linear density of 20.0 g/m passes across the open end of an 88.0 cm - long open-closed tube of air. If the wire, which is fixed at both ends, vibrates at its fundamental frequency, the sound wave it generates excites the second vibrational mode of the tube of air. What is the tension in the wire? Part A Assume vsound = 340 m/s. Express your answer with the appropriate units. ? HA ValueA cord of mass 0.75 kg is stretched between two supports 6.3 m apart. Part A If the tension in the cord is 110 N , how long will it take a pulse to travel from one support to the other? Express your answer to two significant figures and include the appropriate units. HẢ ? t = Value UnitsA