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The speed of sound in an ideal gas depends only on its temperature and composition. The speed has a weak dependence on frequency and pressure in ordinary air, deviating slightly from ideal behavior. In colloquial speech, speed of sound refers to the speed of sound waves in air.
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This explains why sound travels faster through hotter air compared to colder air. The speed of sound at 20 degrees Celsius is about 343 meters per second, but the speed of sound at zero degrees Celsius is only about 331 meters per second.
- 3 min
- David SantoPietro
- When a sound wave meets a change in medium, it splits. Some of it goes through, some is reflected back. Your brain is weird sometimes. If you hear...
- As the humidity increases, the speed of sound will increase.
- They are totally different types of waves. There's no reason to expect an electromagnetic wave that requires no medium to behave the same as a mech...
- The speed depends on both pressure AND density but the effects cancel out, and for an ideal gas you cannot increase pressure without also increasin...
- Some of it gets reflected just like how when a water wave reaches land some of the water gets reflected back to the center of the waves. So you mig...
- This has more to do with the interaction of macroscopic mechanical properties of the material being considered. Sound waves propogate via vibration...
- It's not Newton- Laplace equation .its only Newtons equation because Newton Laplace equation has a "gamma" in the numerator called Adiabatic elasti...
- It's not only density. It also can involve a metric called the bulk modulus, which is related to density, for a gas. And for a solid or liquid it a...
- an iron girder is rigid because it is difficult to bend. rigid is opposite to flexible gold is dense because it has a lot of mass in a small volume
Sep 12, 2022 · Determine the speed of sound in different media. Derive the equation for the speed of sound in air. Determine the speed of sound in air for a given temperature. Sound, like all waves, travels at a certain speed and has the properties of frequency and wavelength.
This chapter analyzes the physics of sound and hearing in water and air. It describes the different aspects of sound, the ability of air and water to transmit sounds, and the opportunities and challenges that living in the two media presents to the organism. It first discusses sound detection through sound frequency, wavelength, and amplitude.
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