"The acoustic properties of highly concentrated H2SO4 are investigated performing visible and ultraviolet. Brillouin scattering measurements. We analyzed the isotropic and anisotropic spectra of this. molecular liquid in a wide temperature and exchanged wavector range in order to study the evolution. of its sound velocity and viscosity. This allows us to extract the parameters required to describe. its viscoelastic relaxation behavior. We found that the behavior of the hydrodynamic parameters of. this molecular liquid shares some similarities with that of water indicating a rather high increase of. sound velocity if compared to that measured by ultrasonics. © 2011 American Institute of Physics."

Sound dispersion and attenuation in concentrated H2SO4 by visible and ultraviolet Brillouin spectroscopy

BENASSI, PAOLA;NARDONE, MICHELE;
2011-01-01

Abstract

"The acoustic properties of highly concentrated H2SO4 are investigated performing visible and ultraviolet. Brillouin scattering measurements. We analyzed the isotropic and anisotropic spectra of this. molecular liquid in a wide temperature and exchanged wavector range in order to study the evolution. of its sound velocity and viscosity. This allows us to extract the parameters required to describe. its viscoelastic relaxation behavior. We found that the behavior of the hydrodynamic parameters of. this molecular liquid shares some similarities with that of water indicating a rather high increase of. sound velocity if compared to that measured by ultrasonics. © 2011 American Institute of Physics."
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11697/88707
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