The solution for the decay of the steady state energy density in a diffuse field is given by, 1 = e(t) = e(t)C 4 Develop the general expression for the time t required for the sound pressure level to decay by X dB in terms of room surface area, volume, absorption coefficient and speed of sound. Consider that diffuse field intensity is defined in terms of, 4W ācs rms 4poc acs 4vt J/m³ e 3
The solution for the decay of the steady state energy density in a diffuse field is given by, 1 = e(t) = e(t)C 4 Develop the general expression for the time t required for the sound pressure level to decay by X dB in terms of room surface area, volume, absorption coefficient and speed of sound. Consider that diffuse field intensity is defined in terms of, 4W ācs rms 4poc acs 4vt J/m³ e 3
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![The solution for the decay of the steady state energy density in a diffuse field is
given by,
4W
ācs.
e(t) =
4V
J/m3
e
ācs
Develop the general expression for the time t required for the sound pressure
level to decay by X dB in terms of room surface area, volume, absorption
coefficient and speed of sound. Consider that diffuse field intensity is defined
in terms of,
e(t)C
I
Prms
4
4poC](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F75f95d4e-4857-448c-b5dc-fa5955d8a325%2Fccd0cb44-ed51-427e-989c-93a1b40b41f9%2Fc5r74v_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The solution for the decay of the steady state energy density in a diffuse field is
given by,
4W
ācs.
e(t) =
4V
J/m3
e
ācs
Develop the general expression for the time t required for the sound pressure
level to decay by X dB in terms of room surface area, volume, absorption
coefficient and speed of sound. Consider that diffuse field intensity is defined
in terms of,
e(t)C
I
Prms
4
4poC
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