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Needleless electrospinning: Electrically driven instability and multiple jetting from the free surface of a spherical liquid layer
T. Miloh, B. Spivak, A. L. Yarin
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peer-review
68
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Dive into the research topics of 'Needleless electrospinning: Electrically driven instability and multiple jetting from the free surface of a spherical liquid layer'. Together they form a unique fingerprint.
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Keyphrases
Electrically Driven
100%
Free Surface
100%
Leaky Dielectric
100%
Needleless Electrospinning
100%
Spherical Liquid Layer
100%
Dielectric Layer
50%
Protrusion
50%
Electric Field (E-field)
50%
Single Surface
50%
Surface Tension
50%
Static Equilibrium
50%
Dielectric Surface
50%
Multiple Jets
50%
Critical Voltage
50%
Spherical Surface
50%
Spherically Symmetric
50%
Equilibrium Situation
50%
Engineering
Electrospinning
100%
Liquid Layer
100%
Free Surface
100%
Dielectrics
50%
Dielectric Layer
50%
Static Equilibrium
50%
Critical Voltage
50%
Equilibrium Situation
50%
Spherical Surface
50%
Electric Field
50%
Material Science
Electrospinning
100%
Surface (Surface Science)
100%
Dielectric Material
50%
Surface Tension
25%