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absorption acoustic impedance amplitude angle applied approximately assumed attenuation axis beam becomes circuit coefficient component compression considered constant corresponding crystal curve damping density diaphragm direction displacement distance effect elastic electrical electromagnetic electron energy equal equation excess pressure expression field fluid follows force function given harmonic Hence incident increase intensity kc/s length liquid longitudinal waves loudspeaker magnetic mass maximum measured mechanical medium microphone modes modulus motion noise normal obtained optical oscillations particle displacement particle velocity phase phonons pipe piston plane wave position radiation ratio Rayleigh reflected refractive resonance respectively result reverberation shear shock front shock wave shown in Fig solid sound waves string surface temperature tion tone transducer tube ultrasonic vector velocity of propagation velocity of sound velocity potential vibration viscosity voltage volume walls wave-front waveguide wavelength Young's Modulus zero