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The stable cone regime spray is usually obtained by adding methanol or ethanol to the electrosprayed dipolar fluid, with the role of reducing fluid surface tension.
Effect of physical properties of the fluid (surface tension, ionic strength, liquid viscosity) and that of the non-Newtonian behavior on mixing time was studied.
Specifically, the effects on reduction of fluid surface tension and oil viscosity, and on increase in emulsification activity for crude oil were evaluated.
As the charges balanced the fluid surface tension of the polymer solution, the droplet was converted to a Taylor's cone with a semivertical angle of approximately 30° [25].
A slightly lower surface tension (compared to water) has been observed in the fluid of Sarracenia pitcher plants [17] and was suspected to be part of the trapping in Nepenthes by Juniper and co-authors [3] but to our knowledge, no measure of fluid surface tension has been conducted on any species of Nepenthes pitcher plants.
At the site of an opening in a container of fluid, surface tension creates a holding pressure in a static fluid or fluids with a low Reynolds, Weber, and Froude numbers.
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- Interfacial properties, including solid-solid, solid-fluid, and fluid-fluid interfaces; surface tension; interfacial profiles; interfacial transport; and wetting.
The viscous number is defined by μf/[ρfσ√σ/(gΔρ)]1/2 where μf, ρf, σ, g and Δρ are, respectively, fluid viscosity, fluid density, surface tension, gravitational acceleration and density difference between phases.
The experimental results indicate that the drag coefficient increases with the increase of the fluid viscosity, surface tension and bubble diameters, while the solution density has little effect on the drag coefficient.
The different sources of error in the viscometer calibration, mainly due to the contribution by the kinetic energy of the fluid stream, surface tension variations and, finally, buoyancy are considered.
The surface also achieved a high American Association of Textile Chemists and Colorists (AATCC) Test Method 193 rating of 8 and AATCC Test Method 118 rating of 5 indicating that the surface could repel a fluid with surface tension as low as 25 dyn/cm.
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