Sound wave physics
The Nature of Sound – The Physics Hypertextbook
shift in frequency. It occurs when there is movement between the sound source and the observer. For example, a train moves toward you blowing its horn. While moving towards you, you will perceive a higher frequency that is really being emitted because the motion of the train causes the wave crests to be closer together when they arrive at your ear.
[DOCX File]Sound - NJCTL
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Yr 10 Physics Test 2012 ... Yes/No Approximate speed of wave Visible light. T T Y 3 x 108 m/s Sound. L L N 320m/s x-rays. T T Y 3 x 108 m/s (3 marks) 2. Explain what happens to a sound wave as it passes into the following media/situations: Sound passes from a gas into a liquid.
[DOC File]Physics Worksheet – Unit 4
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May 11, 2017 · Sound Waves Practice Problems. PSI Physics. Name_____ In the following problems the speed of sound in air is 340 m/s. What is the wavelength of a sound wave with a frequency of 430 Hz? What is the wavelength of an ultrasonic wave with a frequency of 35 kHz? What is the wavelength of an infrasonic wave with a frequency of 15 Hz? ...
[DOCX File]Sound
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Sound Waves Practice Problems. PSI Physics. Name_____ In the following problems the speed of sound in air is 340 m/s. What is the wavelength of a sound wave with a frequency of 430 Hz? What is the wavelength of an ultrasonic wave with a frequency of 35 kHz? What is the wavelength of an infrasonic wave with a frequency of 15 Hz? ...
[DOCX File]The Physics of Sound
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The compression wave, along with the rarefaction wave that immediately follows it, will be propagated outward at the speed of sound. The speed of sound varies depending on the average elasticity and density of the medium in which the sound is propagated, but a good working figure for air is about 35,000 centimeters per second, or approximately ...
[DOC File]Sound Waves - Applied Physics
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A sound wave is an air pressure disturbance that results from vibration. The vibration can come from a tuning fork, a guitar string, the column of air in an organ pipe, the head (or rim) of a snare drum, steam escaping from a radiator, the reed on a clarinet, the diaphragm of a loudspeaker, the vocal cords, or virtually anything that vibrates in a frequency range that is audible to a listener ...
[DOC File]Yr 10 Science (Physics) Test
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3. A flute will fit half a wave into the length of tube while an organ pipe will fit one-quarter of a wave. Hence wavelength is half that of an organ pipe so frequency is twice that of the organ pipe. 4. 5. Assuming length to be constant, wavelength is constant so frequency is proportional to speed. f = 346 m s–1 438 Hz / 340 m s–1 = 446 Hz.
[DOC File]PHYSICS 100 - San Diego Mesa College
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How are the Speed of a Wave (p456) and Harmonic Series of Standing Waves on a Vibrating String (p495) related? What is the fundamental frequency of a 0.2 m long organ pipe that is closed at one end, when the speed of sound in the pipe is 352 m/s?
[DOCX File]Unit 9: Waves and Sound
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Make a data table and do at least 3 trials. Find the speed of sound using v = d/t. e) Use the ruler to measure the wavelength of this sound wave. Check the speed calculated above using v = fλ. Two-Source Interference: 3. Observe the interference pattern made by the sound waves coming from two speakers. a) Sketch the pattern using shades of gray.
[DOC File]The Physics of Sound
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PHYSICS 100 MECHANICAL WAVES and SOUND. A mechanical wave is a disturbance that propagates in a mechanical medium. Mechanical waves transmit energy. Mechanical waves do not transmit mass. The speed of a mechanical wave depends on the mechanical properties of the medium. A stiffer or more incompressible medium increases wave speed.
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