Hello by doing Resonance Column experiment, Kundt's tube and Quinkes tube experiment.
The speed of sound depends on the air factors around it
Speed of sound would increase as the temperature of the air increases Speed of sound increases as humidity of air increases Speed of sound is affected by the density of the air. As density increases velocity of sound decreases
Speed of light in air ~ speed of light in vavuum = 3,00 *10^8 m/s speed of sound in air ~ 330 m/s. Speed of light is faster than sound in air
The speed of sound in air is approximately 343 meters per second, while the speed of sound in solids can vary but is generally higher than in air. In solids, sound waves travel faster due to the denser medium and stronger intermolecular bonds.
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The speed of sound depends on the air factors around it
Speed of sound would increase as the temperature of the air increases Speed of sound increases as humidity of air increases Speed of sound is affected by the density of the air. As density increases velocity of sound decreases
Speed of light in air ~ speed of light in vavuum = 3,00 *10^8 m/s speed of sound in air ~ 330 m/s. Speed of light is faster than sound in air
The speed of sound in air is approximately 343 meters per second, while the speed of sound in solids can vary but is generally higher than in air. In solids, sound waves travel faster due to the denser medium and stronger intermolecular bonds.
This is because air is 78% nitrogen.
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No, it is not.
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The loudness of the sound has no effect on its speed.
The speed of sound at 70oC is 371.333m/s. Refer to the related link below for a calculator for the speed of sound in air.
The question is wrong. With rising temperature the speed of sound is also rising. Air temperature affects the speed of sound. The formula to find the speed of sound in air is as follows: c = 331 m/s + 0.6 m/s * T (°C) c is the speed of sound and T is the temperature of the air. One thing to keep in mind is that this formula finds the average speed of sound for any given temperature. The pitch of woodwind instruments goes up, when the temperature goes up.
Temperature is a condition that affects the speed of sound. Heat, like sound, is a form of kinetic energy. Molecules at higher temperatures have more energy, thus they can vibrate faster. Since the molecules vibrate faster, sound waves can travel more quickly. The speed of sound in room temperature air is 346 meters per second. This is faster than 331 meters per second, which is the speed of sound in air at freezing temperatures. The formula to find the speed of sound in air is as follows: v = 331m/s + 0.6m/s/C * T v is the speed of sound and T is the temperature of the air.