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The speed of sound at 0oC is 330 meter per sec. (m/s)

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What is the speed of sound at zero degrees Celsius?

The speed of sound at zero degrees Celsius is approximately 331.5 meters per second (m/s) in air. This speed can vary depending on factors such as humidity, pressure, and the composition of the medium through which the sound is traveling.


What is the speed of sound at the absolute zero?

The speed of sound in air is 331.3 m/s at a temperature of 0°C.The speed of sound changes clearly with temperature, a little bit with humidity - but not with air pressure (atmospheric pressure).Mechanical vibrations that can be interpreted as sound are able to travel through all forms of matter: gases, liquids, solids, and plasmas. The matter that supports the sound is called the medium. Sound cannot travel through a vacuum.Look at the link: "The Speed of Sound in Air and the effective Temperature".


What is the speed of sound in air at 0 degrees Celsius?

The speed of sound in air at 0 degrees Celsius is 331.29 meters per second.


What is the speed of sound at 30 degrees celsius?

The speed of sound at 30 degrees Celsius is approximately 343 meters per second in dry air. However, the speed of sound can vary depending on factors such as humidity and air pressure.


What would happen to the speed of sound if the air temperature dropped below 0 degrees celsius?

The speed of sound is given by the formula v = 331.5 + .6T, where T is the temperature of the air in degrees Celsius. If T were negative, then you would simply have a speed of sound less than 331.5 m/s. For example, if T = -5 degrees Celsius, thenv = 331.5 + .6*-5 = 328.5 m/sThere really isn't anything magic about an air temperature of 0 degrees Celsius. Zero degrees Celsius is the temperature at which water freezes, but nothing particularly interesting happens to _air_ at that temperature.


What is the speed of sound in air at 0 degrees Celsius and absolute pressure of Bar?

The speed of sound in air at 0 degrees Celsius is approximately 331.5 meters per second. The speed of sound in air is also influenced by factors such as humidity and pressure. At standard atmospheric pressure (1 bar), the speed of sound is around 331 m/s.


What is the equivalent estimate to the speed of sound?

The speed of sound is 331 metres per second at zero degree centigrade and at sea level (air pressure and temperature affect the speed of sound).


What is the speed of sound in air at 20 degrees celsius?

Notice: The speed of sound changes with temperature and a little bit with humidity − but not with air pressure (atmospheric pressure). The words "sound pressure at sea level" are incorrect and misleading. The temperature indication, however, is absolutely necessary. The speed of sound at 25 degrees Celsius (77 degrees Fahrenheit) is 346 meters per second. That is 1136.113 feet per second.


What is the speed of sound in air when the air has a temperature of 20 degrees Celsius?

Speed of sound in air is c ≈ 331 + 0.6 × T. T = Temperature in °C. Speed of sound in air at 20°C is c ≈ 331 + 0.6 × 20 = 343 m/s.


What is the difference in the speed of sound at 0 degrees C and the speed of sound at 25 degrees C?

At 0 degrees C, the speed of sound is about 331 m/s, while at 25 degrees C, the speed of sound is around 344 m/s. The speed of sound increases with temperature because sound waves travel faster in warmer air due to increased molecular motion.


What is the speed of sound in dry air at 7 degrees celsius?

Speed of sound in air is c ≈ 331 + 0.6 × T. T = Temperature. Speed of sound in air at 7 °C is c ≈ 331 + 0.6 × 7 = 335.2 m/s.


Proper speed of sound?

Notice: The speed of sound changes with temperatureanda little bit with humidity − but not with air pressure (atmospheric pressure).The words "sound pressure at sea level" are incorrect and misleading.The temperature indication, however, is absolutely necessary. The speed of sound in air at 20 degrees Celsius (68 degrees Fahrenheit) is 343 metres per second. That is 1126.547 feet per second. The speed of sound speed in air is determined by the air itself. It is not dependent upon the sound amplitude, frequency or wavelength.