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THE ROLE OF ELECTROSTATIC AND HYDRODYNAMIC FORCES
MOBILITY OF EXCESS ELECTRONS IN MIXTURES
MEASUREMENT OF ELECTRON MOBILITY IN LIQUID
7 other sections not shown
anode applied voltage argon barrier Benzene breakdown voltage bubble calculated capacitor cathode cavity cell characteristics charge density Chem constant current pulse curve cyclohexane decreases dependence detector determined dielectric liquids dissipation factor distribution effect Elec electric field electric strength electrical breakdown electrode electrohydrodynamic electron mobility electrostatic energy equation excess electrons experimental field strength Figure flow froa function growth heat high voltage hydrocarbons IEEE Trans impregnated increase initial instability insulating fluids interface ionization chamber laser layer liquid dielectrics measured mechanism metal deactivator molecular molecules needle negative neopentane observed obtained optical paper parameters partial discharge peak permittivity phase phenomena photocathode Phys polarity positive streamer potential prebreakdown pressure propagation radius regime region shown in Fig shows silicone space charge structure surface temperature thermal tiae transformer oil vapour velocity viscosity water content