A firework charge is detonated many meters above the ground. At a distance of d1 = 500 m from the explosion, the acoustic pressure reaches a maximum of ΔPmax = 10 Pa. Assume the speed of sound is constant at 343 m/s throughout the atmosphere over the region considered, the ground absorbs all the sound falling on it, and the air absorbs sound energy as described by the rate 7.00 dB/km. What is the sound level (in decibels) at a distance of d2 = 4.00x103 m from the explosion?
Properties of sound
A sound wave is a mechanical wave (or mechanical vibration) that transit through media such as gas (air), liquid (water), and solid (wood).
Quality Of Sound
A sound or a sound wave is defined as the energy produced due to the vibrations of particles in a medium. When any medium produces a disturbance or vibrations, it causes a movement in the air particles which produces sound waves. Molecules in the air vibrate about a certain average position and create compressions and rarefactions. This is called pitch which is defined as the frequency of sound. The frequency is defined as the number of oscillations in pressure per second.
Categories of Sound Wave
People perceive sound in different ways, like a medico student takes sound as vibration produced by objects reaching the human eardrum. A physicist perceives sound as vibration produced by an object, which produces disturbances in nearby air molecules that travel further. Both of them describe it as vibration generated by an object, the difference is one talks about how it is received and other deals with how it travels and propagates across various mediums.
A firework charge is detonated many meters above the ground. At a distance of
d1 = 500 m from the explosion, the acoustic pressure reaches a maximum of
ΔPmax = 10 Pa. Assume the speed of sound is constant at 343 m/s throughout the
atmosphere over the region considered, the ground absorbs all the sound falling on
it, and the air absorbs sound energy as described by the rate 7.00 dB/km. What is the
sound level (in decibels) at a distance of d2 = 4.00x103 m from the explosion?
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