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Surface tension dominated impact
Published 2007“…At early times we find a similarity solution for the interfacial deformation and show how the resulting surface tension force slows the fall of the mass. We compute the motion beyond early times using a boundary integral method, and find conditions on the weight and impact speed of the mass that determine whether it sinks or is trapped by the interface. …”
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Well-posedness of the free-boundary compressible 3-D Euler equations with surface tension and the zero surface tension limit
Published 2012“…We prove that the 3-D compressible Euler equations with surface tension along the moving free-boundary are well-posed. …”
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THE SURFACE-TENSION-DRIVEN RETRACTION OF A VISCIDA
Published 2009“…We consider the surface-tension-driven evolution of a thin two-dimensional sheet of viscous fluid whose ends are held a fixed distance apart. …”
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Tumour dynamics and necrosis: surface tension and stability.
Published 2001“…For small surface tension the spheroid grows linearly in time developing a large necrotic region, while for larger surface tension the growth can be halted. …”
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On the thin-film asymptotics of surface-tension-driven microfluidics
Published 2020“…This new mathematical framework has the potential to increase the use of surface tension driven microfluidics across a wide range of disciplines as it allows alternate designs to be rapidly assessed.…”
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Surface tension measurement and calculation of model biomolecular condensates
Published 2023“…The surface tension of liquid-like protein-rich biomolecular condensates is an emerging physical principle governing the mesoscopic interior organisation of biological cells. …”
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Rapid method for measurement of surface tension in multiwell plates.
Published 2004“…We describe an optical method for quantifying surface tension in 96-well microtitre plates. Absorbance and fluorescence measurements in vertical beam systems as in 96-well plate photometers are complicated by the interaction of the light with the curved surface of the liquid. …”
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Macroscopic modelling of the surface tension of polymer-surfactant systems
Published 2007“…In this paper we shouw how an existing model based on the law of mass action can be extended to model the surface tension of weakly-interacting systems, and we also extend it further to produce a model for the surface tension of strongly interacting systems. …”
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The role of surface tension in the crystallization of metal halide perovskites
Published 2017“…Here we theoretically and experimentally elucidate the role of surface tension in the rapid synthesis of perovskite single crystals by inverse temperature crystallization (ITC). …”
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Curvature-dependent surface tension of a growing droplet.
Published 2003“…It is shown that the surface tension decreases approximately linearly with the supersaturation ratio and that it vanishes at the spinodal. …”
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Drop formation by thermal fluctuations at an ultralow surface tension.
Published 2006“…We present experimental evidence that drop breakup is caused by thermal noise in a system with a surface tension that is more than 10(6) times smaller than that of water. …”
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Macroscopic modeling of the surface tension of polymer-surfactant systems.
Published 2007“…In this paper we show how an existing model based on the law of mass action can be extended to model the surface tension of weakly interacting systems, and we also extend it further to produce a model for the surface tension of strongly interacting systems. …”
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Two-dimensional Stokes flow with suction and small surface tension
Published 1999“…This solution is analysed in the limit of small surface tension. An apparent 'stability paradox' (where two equivalent flow geometries are found, one of which is 'stable' and the other unstable) is resolved by allowing the coefficients to take complex values.…”
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On the experimental values of the water surface tension used in some textbooks
Published 2002“…A critical review of data for the surface tension of water found in some textbooks is given. …”
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Density profiles and surface tension of polymers near colloidal surfaces
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