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PART I PHYSICAL PHENOMENA
MATERIAL PARAMETERS AND THERMODYNAMIC EQUILIBRIUM
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absorption acoustic pressure acoustic radiation amplitude angle approximation assumed attenuation average Blackstock boundary conditions Burgers cavitation characteristic coefficient component compression constant coordinates curve defined deformation derived dimensions dispersion distance equation of motion Eulerian finite fluid focal point focusing radiator formulas frequency function given Green's function harmonic Hartmann hydrodynamic hydrodynamic equations integral equation intensity jet-edge jump Lagrangian Lagrangian coordinates linear magnitude mass maximum medium method method of characteristics nondimensional Nonlinear Acoustics nonlinear wave normal noted nozzle obtained parameters partial differential equations particle velocity phase piston plane wave potential propagation radiation pressure radiation resistance Radiation,from rarefaction Rayleigh resonator sawtooth wave second order shock wave sinusoidal siren solution sonic sound field space spatial speed spherical stem-jet surface velocity tensor thermodynamic tion tube units variables vector velocity potential viscosity volume wave number wave train wavelength Whitham's theory zero