Question

A sound produced by a tube with one closed end has a third harmonic with a...

A sound produced by a tube with one closed end has a third harmonic with a wavelength of 70.5 cm. What is the length of the tube?

0 0
Add a comment Improve this question Transcribed image text
Know the answer?
Add Answer to:
A sound produced by a tube with one closed end has a third harmonic with a...
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for? Ask your own homework help question. Our experts will answer your question WITHIN MINUTES for Free.
Similar Homework Help Questions
  • A tuba may be treated like a tube closed at one end. If a tuba has...

    A tuba may be treated like a tube closed at one end. If a tuba has a fundamental frequency of 90.9 Hz, determine the first three overtones. Use 343 m/s as the speed of sound in air. first overtone        How is the length of a tube closed at one end related to the resonant wavelengths that can be established in the tube? How are the frequency, wavelength, and speed of sound related? How are the harmonics related to the...

  • The third harmonic Of an organ pipe of length L open at one end has nodes...

    The third harmonic Of an organ pipe of length L open at one end has nodes at the closed end, 2L/5 from the closed end, and 4L/5 from the closed end. The open end is an antinode. What expression describes this wave? Take the speed of sound to be 336 m/s, the length of the pipe to be 2.0 m, and let x be the distance from the closed end. 46) The third harmonic of an organ pipe of length...

  • xV 1b f(ms) -0.5 -1.08 The diagram shows the representation of a sound produced in a...

    xV 1b f(ms) -0.5 -1.08 The diagram shows the representation of a sound produced in a closed-ended tube, whose length is 24 cm. Remember that the length of the tube is % of the wavelength, the period is the total time divided by the number of wawes or cycles, the frequency is the inverse of the period, and the equation to be used is y rif A) Determine the fundamental frequency B) Determine the wavelength C) Determine the speed of...

  • Question 1 Atube with one end open and one end closed creates two consecutive harmonic frequencies...

    Question 1 Atube with one end open and one end closed creates two consecutive harmonic frequencies at 300 Hz and 330 Hz. If the speed of sound in air is 343 m/s, answer the following questions. a. What is the fundamental frequency of the tube? b. What is the length of the tube? c. If mith frequency is 300 Hz, find 91. 5+5+5

  • 4) A tube with one open end and one closed end has á resonant frequency of...

    4) A tube with one open end and one closed end has á resonant frequency of 71.0 Hz. Find the length of the tube- and find the first three overtones. Use 343 m/s for the speed of sound.

  • Question 13: A tube with both ends open has fundamental frequency of 300 Hz. The second...

    Question 13: A tube with both ends open has fundamental frequency of 300 Hz. The second harmonic of this tube and the third harmonic of another tube which is closed at one end have the same frequency. What is the length of each of these tubes? (Speed of sound 343 m s, ignore end corrections)

  • ITT LUU UU.) VIIY 15 le fundamental frequency of the closed tube lower than it was...

    ITT LUU UU.) VIIY 15 le fundamental frequency of the closed tube lower than it was for the open tube? 2. Increase the frequency and try to find any other harmonics. Why does a tube open at both ends play all the harmonics, but a tube with one end closed only plays the odd harmonics (1, 3, 5, etc.). What is the relationship between the tube length and the wavelength for the third harmonic of a closed tube? QUESTIONS 1....

  • 4. A tuning fork is set up near the end of an air-filled tube of variable...

    4. A tuning fork is set up near the end of an air-filled tube of variable length as shown. As the length of the air column is changed, we hear resonances as we match the length to the wavelength of the harmonics. By changing the tube length by 10.0 cm, we go from one harmonic to the next for this sound wave. (See Sample Problem 14-17 for a similar question.) amr o Y oine variable isgo a) What is the...

  • One a day when the outside temperature is 30C, and open sound tube produces 1st harmonic...

    One a day when the outside temperature is 30C, and open sound tube produces 1st harmonic sound waves that are heard by a bike rider traveling at 12m/s toward the sound tube. The rider hears a frequency of 483Hz. What is the length of the sound tube?

  • .An organ pipe can be considered a resonating tube with one open end and one closed...

    .An organ pipe can be considered a resonating tube with one open end and one closed end. . What is the length of an organ pipe if its fundamental frequency is a middle C What is the frequency of the second harmonic of this organ pipe?

ADVERTISEMENT
Free Homework Help App
Download From Google Play
Scan Your Homework
to Get Instant Free Answers
Need Online Homework Help?
Ask a Question
Get Answers For Free
Most questions answered within 3 hours.
ADVERTISEMENT
ADVERTISEMENT
ADVERTISEMENT