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Set of waves in air and springs

Function

Intended for study, physics laboratory, physics experiments on: Sound. Sound sources, sound, noise and physiological qualities of sound. What is sound. The frequency of a sound wave, high-pitched sound and low-pitched sound. Auditory intensity, physiological quality associated with the amplitude of sound. Difference between auditory intensity and sound intensity of the wave. The wave carries only energy. Undesirable sounds, industrial noise. Sound reverberation. Echo and minimum distance for an observer to perceive the echo. Sound reverberation and acoustic comfort. Reverberation time. Standing waves in an open sound tube, resonance. Identifying the wave's nostrils and nodes, listening inside the tube. Emitting sound with a frequency and measuring its wavelength. Determining the speed of sound in an open sound tube. Locating nostrils and nodes with cork powder. Emitting sound with a frequency, measuring the wavelength and calculating its speed. Standing sound waves in a closed tube, resonance. Sound, interference and standing waves in a closed sound tube. Identifying the apexes and nodes of the wave by listening inside the tube. Emitting sound at a frequency and measuring the wavelength. Determining the speed of sound in a closed sound tube. The positions of the apexes and nodes indicated by cork dust, etc.

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Key Experiments

  • » Main characteristics of waves in a helical spring. - 1072.011
  • » Determining the average speed of propagation of a pulse in a spring. - 1072.011_1
  • » The phenomenon of reflection and interference in a transverse wave on a spring and the standing wave. - 1072.011_2
  • » Resonance in a mass-leaf spring system. - 1072.032_0B
  • » Sound, a longitudinal mechanical wave. - 1072.059
  • » Sound, phenomena of interference, resonance and beat. - 1072.060
  • » Sound, Doppler effect. - 1072.061
  • » Resonance and speed of sound in a closed sound tube. - 1072.078D
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