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Summary Of: Speed of sound

The speed of sound describes how much distance such a wave travels in a certain amount of time... the speed of sound can be measured in virtually any substance... The speed of sound through the model depends on the stiffness of the springs... Some textbooks mistakenly state that the speed of sound increases with increasing density... Thus the speed of sound increases with the stiffness of the material... the speed of sound may be calculated from the... The speed of sound is variable and depends mainly on the temperature and the properties of the substance through... Since temperature and thus the speed of sound normally decrease with increasing altitude... the speed of sound increases with height due to heating within the... is the speed of sound in an ideal gas... famously considered the speed of sound before most of the development of... The speed of sound varies with temperature... giving the following variations in the speed of sound using the standard atmosphere... and as a result the speed of sound can vary with frequency... The limitations of the concept of speed of sound due to extreme attenuation are also of concern... to the speed of sound in the medium through which it is passing... experiment which can be used to measure the speed of sound in a small volume... the advantage of being able to measure the speed of sound in any gas... Hence the speed of sound in a fluid is given by... The speed of sound in water is of interest to anyone using... Speed of Sound in Pure Water... The speed of sound in seawater depends on pressure... A simple empirical equation for the speed of sound in sea water with reasonable accuracy for the world... the speed of sound is lower than that in the layers above and below... New equation for speed of sound in natural waters... Speed of sound in air and the temperature... How to measure the speed of sound in a laboratory... Speed of sound in water and water steam as function of pressure... Speed of Sound in Pure Water... If the speed of sound was greater just after the big bang...

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Speed of sound (disambiguation) | Sound pressure | Particle velocity | Particle velocity level | Particle displacement | Sound intensity | Sound intensity level | Sound power | Sound power level | Sound energy density | Sound energy flux | Surface | Acoustic impedance | v | d | Sound | elastic | wave | SI Units | °C | °F | m/s | km/h | mph | ft/s | air | U.S. Navy F/A-18 breaking the sound barrier. The white halo is formed by condensed water droplets which are thought to result from a drop in air pressure around the aircraft (see Prandtl-Glauert Singularity). | | F/A-18 | Prandtl-Glauert Singularity | toy model | elastic modulus | density | coefficient of stiffness | density | relativistic | relativistic Euler equations | ultrasonic | kHz | phase velocity | group velocity | optical dispersion | molecular weight | helium | xenon | ideal gas | temperature | pressure | density | van der Waals gas | oxygen | nitrogen | water | Earth's atmosphere | temperature | Details | refracted | acoustic shadow | sound speed gradient | stratosphere | ozone layer | Celsius | Taylor expansion | heat capacity ratio | atm | stratosphere | adiabatic index | pressure | density | ideal gas | Boltzmann constant | adiabatic index | noble gases | kelvins | kilograms | mole | Newton | thermodynamics | isothermal | adiabatic | heat capacity | Celsius | kelvins | Celsius | refracted | acoustic shadow | lapse rate | American Civil War | Battle of Iuka | standard atmosphere | knots | knots | knots | ideal gas | °C | m·s-1 | kg | N | acoustic impedance | first supersonic flight | X-43A | mean free path | helium | deuterium | heat capacity | Mach number | speed | flight instruments | Pitot tube | ideal gas | Bernoulli's equation | Rayleigh | Microsoft Excel | OpenOffice.org Calc | microphones | digital | time | frequency | Kundt's tube | nodes | antinodes | tuning fork | pipe | water | antinodal | isotropic | Young's modulus | Shear modulus | density | steel | beryllium | Young's modulus | plane wave modulus | Young's modulus | Poisson's ratio | bulk modulus | underwater sound | sonar | acoustic communication | acoustical oceanography | Sound speed as a function of depth at a position north of Hawaii in the Pacific Ocean derived from the 2005 World Ocean Atlas.  The SOFAR channel is centered on the minimum in sound speed at ca. 750-m depth. | | Pacific Ocean | World Ocean Atlas | SOFAR channel | salinity | ppt | plasma | here | SOFAR channel | index | refract | optical fiber | Project Mogul | ISBN 0071360972 | ISBN 0071360972 | ISBN 0486645754 | ISBN 0849386470 | ISBN 1842652370 | ISBN 0415267137 | ISBN 1566199131 | ISBN 0807857831 | A B Wood | doi | doi | doi | doi | Second sound | Sound barrier | SOFAR channel | Underwater acoustics | Categories | Sound measurements | Chemical properties | Fluid dynamics | Aerodynamics | Units of velocity |
This article is licensed under the GNU Free Documentation License. It uses material from the Wikipedia article "Speed of sound".