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THE DUST-GAS FIREBALL AS A SPECIAL FORM OF THE ELECTRIC EROSIVE DISCHARGE AFTERGLOW S. E. Emelina, A. L. Pirozerskib, N. N. Vassilievb
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Document Date: 2013-04-03 21:26:56


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Company

Sony / /

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Facility

Research Institute of Physics / Petersburg State University / Russia a - Research Institute of Radiophysics / /

IndustryTerm

metal / low energy density / chemical components / structure-energy state / excess energy / dust-gas chemical fireball / alkali metal lines / chemical dust-gas fireball / smallest metal / high gas temperature / nonequilibrium energy input / oxides dissociation energy / metal melting temperature / catalytic energy-release / metal vapor / radiant energy / higher excitation energy / dust-gas / excitation energy / Gas temperature / account dissociation energy / dust-gas fireball / metal plate / cold gas / high energy / even minimal energy / chemical influence / arc discharge products / energy nature / minimal atomic line excitation energy / vibrational energy / Discharge products / chemical energy / gas heating / structure-energy self-organization / dissociation energy / molecule gas / energy accumulation / inner gas dynamics / energy inputs / pointed source energy / atomized gas / dust-gas dynamics / energy / steel / /

MusicGroup

CN / AlO / C2 and CN / CuO / /

NaturalFeature

Te falls / /

Organization

N. N. Vassilievb Saint-Petersburg State University / Institute of Physics / Russia a - Research Institute of Radiophysics / /

Position

author / CaO / /

Technology

radiation / semiconductors / dielectric / /

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