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Results 1 to 25 of 862

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Electrowetting-induced capillary flow in a parallel-plate channelCHEN, Jiann H; HSIEH, Wen H.Journal of colloid and interface science. 2006, Vol 296, Num 1, pp 276-283, issn 0021-9797, 8 p.Article

Advancing and receding angles - Dynamic contact angle measurements on mixed alkyl monolayersPOLSTER, David; GRAAF, Harald.Applied surface science. 2013, Vol 265, pp 88-93, issn 0169-4332, 6 p.Article

Synergistic effects of geometry, inertia, and dynamic contact angle on wetting and dewetting of capillaries of varying cross sectionsQIULING WANG; GRABER, Ellen R; WALLACH, Rony et al.Journal of colloid and interface science. 2013, Vol 396, pp 270-277, issn 0021-9797, 8 p.Article

Investigations of drop impact on dry walls with a lattice-Boltzmann modelMUKHERJEE, Shiladitya; ABRAHAM, John.Journal of colloid and interface science. 2007, Vol 312, Num 2, pp 341-354, issn 0021-9797, 14 p.Article

A refractive tilting-plate technique for measurement of dynamic contact anglesSMEDLEY, Gregory T; COLES, Donald E.Journal of colloid and interface science. 2005, Vol 286, Num 1, pp 310-318, issn 0021-9797, 9 p.Article

Entrainment of air by a solid surface plunging into a non-Newtonian liquidCOHU, O; BENKREIRA, H.AIChE journal. 1998, Vol 44, Num 11, pp 2360-2368, issn 0001-1541Article

The capillary race : Optimal surface tensions for fastest penetrationLAVI, Becky; MARMUR, Abraham.Colloids and surfaces. A, Physicochemical and engineering aspects. 2006, Vol 282-83, pp 263-271, issn 0927-7757, 9 p.Article

Further developments in determining the dynamic contact lawDOYLE, J. F.Experimental mechanics. 1984, Vol 24, Num 4, pp 265-270, issn 0014-4851Conference Paper

Three minimum wet thickness regions of slot die coatingCHANG, Yu-Rong; CHANG, Hsien-Ming; LIN, Chi-Feng et al.Journal of colloid and interface science. 2007, Vol 308, Num 1, pp 222-230, issn 0021-9797, 9 p.Article

An experimental method for determining the dynamic contact lawDOYLE, J. F.Experimental mechanics. 1984, Vol 24, Num 1, pp 10-16, issn 0014-4851Article

Contact line dynamics of a superhydrophobic surface: application for immersion lithographyGNANAPPA, Arun Kumar; GOGOLIDES, Evangelos; EVANGELISTA, Fabrizio et al.Microfluidics and nanofluidics (Print). 2011, Vol 10, Num 6, pp 1351-1357, issn 1613-4982, 7 p.Article

Effects of dynamic contact angle on numerical modeling of electrowetting in parallel plate microchannelsKESHAVARZ-MOTAMED, Zahra; KADEM, Lyes; DOLATABADI, Ali et al.Microfluidics and nanofluidics (Print). 2010, Vol 8, Num 1, pp 47-56, issn 1613-4982, 10 p.Article

A study of capillary flow from a pendant dropletRADIOM, Milad; WENG KONG CHAN; CHUN YANG et al.Microfluidics and nanofluidics (Print). 2009, Vol 7, Num 5, pp 697-707, issn 1613-4982, 11 p.Article

Flow rate analysis of an EWOD-based device: how important are wetting-line pinning and velocity effects?SHABANI, Roxana; CHO, Hyoung J.Microfluidics and nanofluidics (Print). 2013, Vol 15, Num 5, pp 587-597, issn 1613-4982, 11 p.Article

Numerical simulation of dynamic contact angle using a force based formulationDEGANELLO, D; CROFT, T. N; WILLIAMS, A. J et al.Journal of non-newtonian fluid mechanics. 2011, Vol 166, Num 16, pp 900-907, issn 0377-0257, 8 p.Conference Paper

Impact of fluid memory on wetting approaching the air entrainment limitWEI, Y; GAROFF, S; WALKER, L. M et al.Journal of colloid and interface science. 2009, Vol 337, Num 2, pp 619-621, issn 0021-9797, 3 p.Article

Dynamic contact angle and spreading rate measurements for the characterization of the effect of dentin surface treatmentsWEGE, Hartmut Alexander; AGUILAR, José Arturo; RODRIGUEZ-VALVERDE, Miguel Angel et al.Journal of colloid and interface science. 2003, Vol 263, Num 1, pp 162-169, issn 0021-9797, 8 p.Article

ANALYSIS OF THE INITIAL CONTACT HEIGHT WHEN A CURVED BODY APPROACHES A ROUGH FLAT SURFACEISHIGAKI H; KAWAGUCHI I.1979; WEAR; NLD; DA. 1979; VOL. 54; NO 2; PP. 273-289; BIBL. 5 REF.Article

Charakterisierung der Grenzflächeneigenschaften von Papieroberflächen mit Hilfe der dynamischen Randwinkelmethode = Characterization of the surface properties of paper with the aid of the dynamic contact angle methodSTEIN, S; SCHWINGER, K.Wochenblatt für Papierfabrikation. 1998, Vol 126, Num 16, pp 725-728, issn 0043-7131Article

General contact-angle conditions with and without kineticsANGENENT, S; GURTIN, M. E.Quarterly of applied mathematics. 1996, Vol 54, Num 3, pp 557-569, issn 0033-569XArticle

Dynamic analysis of structures with unilateral constraints : numerical integration and reduction of structural equationsRIMANTAS BARAUSKAS.International journal for numerical methods in engineering. 1994, Vol 37, Num 2, pp 323-342, issn 0029-5981Article

Interpretation of aperiodic time series : a new view of dry frictionBARRON, R; WOJEWODA, J; BRINDLEY, J et al.Journal of sound and vibration. 1993, Vol 162, Num 2, pp 369-375, issn 0022-460XArticle

The flow of a fluid with a free boundary and dynamic contact angleKRÖNER, D.Zeitschrift für angewandte Mathematik und Mechanik. 1987, Vol 67, Num 5, pp T304-T306, issn 0044-2267Article

Response of a periodically driven impact oscillatorFANG, W; WICKERT, J. A.Journal of sound and vibration. 1994, Vol 170, Num 3, pp 397-409, issn 0022-460XArticle

An extending dynamic elastica : impact with a surfaceSTOLTE, J; BENSON, R. C.Journal of vibration and acoustics. 1993, Vol 115, Num 3, pp 308-313, issn 1048-9002Article

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