Results 171 to 180 of about 1,542 (225)
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Electrohydrodynamic direct-writing

Nanoscale, 2013
The electrohydrodynamic (EHD) direct-writing technique can be used to print solid/liquid straight/serpentine nanofibers onto a large-area substrate, in a direct, continuous, and controllable manner. It is a high-efficiency and cost-effective solution-processable technique to satisfy increasing demands of large-area micro/nano-manufacturing.
YongAn, Huang   +6 more
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Fluctuations In Electrohydrodynamic Instability

AIP Conference Proceedings, 2005
Electrohydrodynamic Convection in Liquid Crystals (EHC) is a good system for the experimental study of spatio‐temporal chaos. Particularly interesting is the behavior of the Nematic in presence of weak turbulence where ordered and disordered states are mixed.
F. BIANCO   +4 more
openaire   +1 more source

Magnetohydrodynamics and Electrohydrodynamics

The Physics of Fluids, 1962
A close analogy is found and mathematically investigated between the dynamic behavior of a plasma in a magnetic field and that of a unipolarly charged fluid in an electric field. The general equations and some of their broad consequences are discussed. Unidirectional flow, small disturbances, and stability are compared for the two systems.
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Global attractors in electrohydrodynamics

International Journal of Engineering Science, 1997
zbMATH Open Web Interface contents unavailable due to conflicting licenses.
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Electrohydrodynamics

1997
Abstract In many lab-on-a-chip applications the motions of the liquids or the solutes are controlled electrically. Therefore it is highly relevant to study electrohydrodynamics, i.e. the coupling of electromagnetism and hydrodynamics.
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POLARITY INVERSION IN ELECTROHYDRODYNAMIC SPRAYING

Combustion Science and Technology, 2004
An experimental study of polarity inversion effects in electrohydrodynamic spraying is developed by characterizing the several atomization regimes that can be observed by varying liquid flow rate and applied voltage. n-Heptane, doped with an antistatic additive, is atomized in a classical needle-to-plate system.
Ragucci R, Bellofiore A, Cavaliere A
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Electrohydrodynamic and Magnetohydrodynamic Convection

1992
As (Rosensweig, 1985) points out, the interaction of electromagnetic fields and fluids has been attracting increasing attention due to applications in many diverse areas. He writes that the subject may be divided into three main categories: 1. Electrohydrodynamics (EHD), the branch of fluid mechanics concerned with electric force effects;
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Electrohydrodynamic Precipitator

Review of Scientific Instruments, 1962
A contaminated fluid is charged and pumped into an electrodeless collection space, where particulates are precipitated. An approximate theory of precipitation is given; it is supported by experimental evidence. The method is especially suited for cleaning insulating liquids.
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The electrohydrodynamics paradoxes

Proceedings of 1993 IEEE 11th International Conference on Conduction and Breakdown in Dielectric Liquids (ICDL '93), 2002
Strange hydrodynamic and electrical effects in dielectric liquids in an electric field are considered. Attention is given to the paradox of high level ion injection, quasi-stationary DC and electroconvection in a system of open/closed electrodes, the paradox of electroconvection in a plane capacitor (where stable charge distribution creates the ...
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Electrohydrodynamics

IEEE Transactions on Dielectrics and Electrical Insulation, 2003
null Jen-Shih Chang, G. Touchard
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