On the theory of electrohydrodynamically driven capillary jets
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[1] D. Bogy. Steady draw-down of a liquid jet under surface tension and gravity , 1981, Journal of Fluid Mechanics.
[2] D. A. Saville,et al. ELECTROHYDRODYNAMIC STABILITY: FLUID CYLINDERS IN LONGITUDINAL ELECTRIC FIELDS. , 1970 .
[3] An equilibrium value for the charge-to-mass ratio of droplets produced by electrostatic dispersion , 1964 .
[4] C. Hendricks,et al. Charged droplet experiments , 1962 .
[5] John Zeleny,et al. Instability of Electrified Liquid Surfaces , 1917 .
[6] A. Gañán-Calvo,et al. Zeroth-order, electrohydrostatic solution for electrospraying in cone-jet mode , 1994 .
[7] A. J. Mestel. Electrohydrodynamic stability of a highly viscous jet , 1994, Journal of Fluid Mechanics.
[8] J. Melcher,et al. Electrohydrodynamics of a current-carrying semi-insulating jet , 1971, Journal of Fluid Mechanics.
[9] M. Cloupeau,et al. Electrostatic spraying of liquids in cone-jet mode , 1989 .
[10] I. Hayati,et al. Investigations into the mechanism of electrohydrodynamic spraying of liquids: II. Mechanism of stable jet formation and electrical forces acting on a liquid cone , 1987 .
[11] R. J. Pfeifer,et al. Parametric studies of electrohydrodynamic spraying. , 1966 .
[12] R. J. Pfeifer,et al. Charge‐to‐Mass Relationships for Electrohydrodynamically Sprayed Liquid Droplets , 1967 .
[13] E. M. Lifshitz,et al. Electrodynamics of continuous media , 1961 .
[14] R. C. Weast. CRC Handbook of Chemistry and Physics , 1973 .
[15] M. Cloupeau. RECIPES FOR USE OF EHD SPRAYING IN CONE-JET MODE AND NOTES ON CORONA DISCHARGE EFFECTS , 1994 .
[16] Alfonso M. Gañán-Calvo,et al. Current and droplet size in the electrospraying of liquids. Scaling laws , 1997 .
[17] N. Lindblad,et al. Stability of an Electrified Liquid Jet , 1967 .
[18] P. Kebarle,et al. Effect of the conductivity of the electrosprayed solution on the electrospray current. Factors determining analyte sensitivity in electrospray mass spectrometry , 1991 .
[19] K. C. Thong,et al. The production of charged monodisperse fuel droplets by electrical dispersion , 1971 .
[20] M. Cloupeau,et al. Electrostatic spraying of liquids: Main functioning modes , 1990 .
[21] Ch. H. Müntz. Über den Approximationssatz von Weierstraß , 1914 .
[22] J. Lasheras,et al. THE ELECTROSTATIC SPRAY EMITTED FROM AN ELECTRIFIED CONICAL MENISCUS , 1994 .
[23] H. Chu,et al. Instability and breakup of charged liquid jets , 1971, Journal of Fluid Mechanics.
[24] Masayuki Mutoh,et al. Convergence and disintegration of liquid jets induced by an electrostatic field , 1979 .
[25] R. Turnbull. Self-acceleration of a charged jet , 1989 .
[26] Michel A. Saad,et al. Compressible Fluid Flow , 1985 .
[27] C. Weber. Zum Zerfall eines Flüssigkeitsstrahles , 1931 .
[28] John Zeleny,et al. The Electrical Discharge from Liquid Points, and a Hydrostatic Method of Measuring the Electric Intensity at Their Surfaces , 1914 .
[29] David P. H. Smith,et al. The Electrohydrodynamic Atomization of Liquids , 1986, IEEE Transactions on Industry Applications.
[30] A. Gomez,et al. On the structure of an electrostatic spray of monodisperse droplets , 1994 .