What is the fundamental frequency of the tube

Assignment Help Physics
Reference no: EM13964561

1. For a particular tube there are six harmonic frequencies below 1000 Hz. Four of these are 300Hz, 600Hz, 750Hz, and 900Hz. You can see that one end of the tube is open, but you can not see the other end. Is it open or closed? Explain your answer.

2. In the tube described above, what two frequencies are missing?

3. When a musical note is played on a large church pipe organ, the sound originates from blowing puffs of air into a tube of a fixed length. Does this puff of air have to have only the particular frequency of the final note? If so, how do you think the organ creates the puff with this frequency? If it does not, why you you think you only hear a singe frequency?

4. The audible frequency range for normal hearing is from about 20Hz to 20 kHz. What are the wavelengths of sound waves at these frequencies?

5. A small loudspeaker driven by an audio oscillator and amplifier, adjustable in frequency. Nearby is a tube of cylindrical sheet-metal pipe 45.7 cm long, with a diameter of 2.3 cm and which is open at both ends. If the room temperature is 20 degrees Celsius, at what frequencies will resonance occur in the pipe when the frequency emitted by the speaker is varied from 1000 to 2000 Hz.

250_Untitled.png

6. a) What is the fundamental frequency of the tube in the previous problem?

b) What would be the fundamental frequency if we doubled the diameter of the to 4.6cm?

c) What would be the fundamental frequency if we doubled the length of the tube to 91.4cm?

d) What would be the fundamental frequency if we decreased the velocity of sound in air to 320 m/sec?

Reference no: EM13964561

Questions Cloud

What is the social security retirement system : What is the Social Security retirement system. The percent of total health care costs in the United States paid for by governments is approximately.
Will you agree or disagree to patent this invention : As a patent agent, an inventor comes to you claiming that he has invented a self-powered engine that requires no fuel to run.
Find the speed of the wave along the string : Suppose you place a speaker in front the open end of a tube which is closed at the other end, and vary the frequency of a pure sound (sine wave) produced by the speaker. You find that there are resonances at 300 Hz and 500 Hz, among many others.
Calculate the volumetric change in the cylinder due to heat : Calculate the volumetric change in the cylinder due to heating. If the air in the cylinder had an initial volume of 0.0005 m3
What is the fundamental frequency of the tube : When a musical note is played on a large church pipe organ, the sound originates from blowing puffs of air into a tube of a fixed length. Does this puff of air have to have only the particular frequency of the final note? If so, how do you think t..
How western european economies has higher living standards : How the western European economies, especially of France, has higher living standards than we do. Therefore they can afford their great benefits.
Estimate the price for google : 1. Use the information below to estimate the price for Google. EPS is earnings per share, PE is the ratio of price to earnings (P/E ratio), PEG is the P/E ratio divided by the five-year expected growth rate, and PS is the price to sales ratio (the ..
Distinguish between reversible and irreversible processes : Given that A is independent of r, show that in steady state the heat transported away from the hot end is proportional to r^(3/2).
Find a formula for the harmonic frequencies : Find a formula for the harmonic frequencies (fn) for a pipe open at only one end based on v=f*lamda and the formula we got for the harmonic wavelengths and For a pipe of length 0.40m, find the first five harmonic wavelengths and frequencies.

Reviews

Write a Review

 

Physics Questions & Answers

  Find final velocity for both classical and relativistic case

An object of mass m is moving at a velocity u. This object collides with another object of mass m, find the final velocity for both the classical and relativistic case

  What was the original speed of the bullet

A 10.2-g bullet is fired into a stationary block of wood having mass m = 5.01 kg. The bullet imbeds into the block. The speed of the bullet-plus-wood combination immediately after the collision is 0.590 m/s. What was the original speed of the bullet?..

  Estimate the density of the nucleus of an atom

The nucleus of an atom can be modeled as several protons and neutrons closely packed together. Estimate the density of the nucleus of an atom

  What is the maximum angle through which it may be scattered

When an x-ray photon with wavelength = 0.070nm strikes an electron at rest, What is the maximum angle through which it may be scattered

  What is the acceleration of the puck and the angle of the

two players hit an air hockey puck simultaneously. one player hits the puck with a force 4.75 at an angle 23.9. the

  Calculate the wavelength of the waves

An FM radio station broadcasts electromagnetic waves at a frequency of 550 kHz. Calculate the wavelength of the waves.

  The plate is a thin square of thickness t and sides d

The plate is a thin square of thickness t and sides d. The left half of the plate has (uniform) mass density p1 and the right half (uniform) mass density p2. Place the XY-axis with every axis parallel to the sides of the square and origin at the geom..

  Explain how massive a person would make the ladder slip

A uniform 7.6 ladder is leaning against a frictionless vertical wall, with which it makes a 15 angle. how massive a person would make the ladder slip

  What is the total energy of this motion

Suppose that a particle of mass 0.24 kg acted upon by a spring undergoes simple harmonic motion. What is the total energy of this motion

  Find the focal length and refractive power

A farsighted person wears glasses that enable him to read a book held at a distance of 25cm from his eyes. Find the focal length and refractive power of his lenses to place the image of the book at the near point

  What is the increase in temperature of the bullet

A 6.80 g lead bullet traveling at 460 m/s is stopped by a large tree. If half the kinetic energy of the bullet is transformed into internal energy and remains with the bullet while the other half is transmitted to the tree, what is the increase in te..

  Illustrate what average thermal power is produced as rock

The coefficient of kinetic friction between the rock and the surface is 0.300. Illustrate what average thermal power is produced as the rock stops?

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd