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Ultrasound / Sonoluminescence / Fluid dynamics / Bubbles / Liquid bubble / Cavitation / Mechanism of sonoluminescence / Argon / Noble gas / Physics / Luminescence / Light sources


Document Date: 2011-08-28 10:26:27


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City

Cambridge / Honolulu / /

Country

Netherlands / /

Currency

USD / /

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Event

Product Issues / /

Facility

University of Twente / stable SL / University of Chicago / University of Mississippi / stable SBSL / Harvard University / /

IndustryTerm

given gas concentration / energy focusing / endothermic chemical reaction / gas molecules / noble gas / relative gas concentrations / energy-focusing power / inert gas / pure argon gas / gas concentration / argon gas / hydrodynamic/chemical theory / gas concentrations / chemical nature / gas dynamics / driven gas bubble / pure noble gas / noble gas bubbles / energy / dissolved gas concentration / chemical reactions / energy storage / energy focusing condition / hydrodynamic and chemical stability / inert gas argon / gas temperature / partial gas pressures / stable chemical equilibrium / gas mixture / diffusive and chemical processes / dissolved gas concentrations / dissolved gas concentraRev / /

Organization

UCLA / Harvard University / Division of Engineering and Applied Sciences / Acoustical Society of America / U.S. Securities and Exchange Commission / University of Mississippi / University of Twente / the University of Chicago / American Physical Society / Applied Physics and J. M. Burgers Centre for Fluid Dynamics / Hilgenfeldt and Detlef Lohse* Department of Applied Physics / /

Person

Greenspan / Michael P. Brenner / Larry Crum / Felipe Gaitan / Barber / Eller / Robert Apfel / Seth Putterman / /

Product

sodium chloride / liquids V. Sonoluminescence Light Emission A. Theories / /

ProvinceOrState

Mississippi / Massachusetts / /

PublishedMedium

REVIEWS OF MODERN PHYSICS / /

Technology

radiation / Fluid Dynamics / ultrasound / ATM / heat transfer / thermodynamics / dielectric / simulation / flash / /

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