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Results 1 to 25 of 172

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Continuum percolation in dipolar fluidsVERICA, F.Journal of physics. Condensed matter (Print). 1989, Vol 1, Num 31, pp 5205-5215, issn 0953-8984, 11 p.Article

Active polar fluid flow in finite dropletsWHITFIELD, Carl A; MARENDUZZO, Davide; VOITURIEZ, Raphaël et al.The European physical journal. E, Soft matter (Print). 2014, Vol 37, Num 2, issn 1292-8941, 37.8.1-37.8.15Article

Generic instabilities in a fluid membrane coupled to a thin layer of ordered active polar fluidSARKAR, Niladri; BASU, Abhik.The European physical journal. E, Soft matter (Print). 2013, Vol 36, Num 8, issn 1292-8941, 86.1-86.11Article

Solution of the SSOZ equation for molecules of arbitrary symmetryMORRISS, G. P; MCGOWAN, D.Molecular physics (Print). 1986, Vol 58, Num 4, pp 745-761, issn 0026-8976Article

Solvation energy of ions and dipoles in a finite number of solvent shellsRICHERT, R.Journal of physics. Condensed matter (Print). 1996, Vol 8, Num 34, pp 6185-6190, issn 0953-8984Article

Strongly dipolar fluids at low densitiesTELO DA GAMA, M. M; TAVARES, J. M.Journal of physics. Condensed matter (Print). 2000, Vol 12, Num 8A, pp A471-A476, issn 0953-8984Conference Paper

Derivation from corresponding-states behaviour for polar fluidsVAN LEEUWEN, M. E.Molecular physics (Print). 1994, Vol 82, Num 2, pp 383-392, issn 0026-8976Article

On the Phase Equilibrium of Polar Fluids Using the Dipolar Yukawa Fluid Molecular ModelSCALISE, Osvaldo H; HENDERSON, Douglas J.Journal of chemical and engineering data (Print). 2009, Vol 54, Num 5, pp 1472-1476, issn 0021-9568, 5 p.Article

Regularity results for the solution of the Cauchy problem to Navier-Stokes equationsNECAS, J.Computational science for the 21st century. Symposium. 1997, pp 23-30, isbn 0-471-97298-3Conference Paper

On the correlation factor of pure polar fluids whose molecules dimerize to nonpolar dimersMOGNASCHI, E. R; LABORANTI, L. M; CHIERICO, A et al.Molecular physics (Print). 1991, Vol 74, Num 1, pp 211-216, issn 0026-8976Article

A uniqueness theorem for incompressible micropolar flowsEASWARAN, C. V; MAJUMDAR, S. R.Quarterly of applied mathematics. 1990, Vol 48, Num 2, pp 201-207, issn 0033-569XArticle

Comment on: A study of laminar flow of polar liquids through circular microtubes by D. J. Phase et alBRUTIN, D; TADRIST, L.Physics of fluids (1994). 2005, Vol 17, Num 1, issn 1070-6631, p. 019101.1Article

Vapour-liquid coexistence in a quasi two-dimensional hard dipolar fluidSCALISE, O. H.Physics and chemistry of liquids Print. 1998, Vol 36, Num 3, pp 179-185, issn 0031-9104Article

Structural, thermodynamic, and electrical properties of polar fluids and ionic solutions on a hypersphere : results of simulationsCAILLOL, J. M; LEVESQUE, D.The Journal of chemical physics. 1992, Vol 96, Num 2, pp 1477-1483, issn 0021-9606Article

The second dielectric virial coefficient of non-ideal polar hard-sphere fluids and polar hard dumb-bell fluidsOHBA, M; NOMURA, H.Molecular physics (Print). 1988, Vol 65, Num 6, pp 1431-1439, issn 0026-8976Article

Thermodynamic properties and vapor pressures of polar fluids from a four parameter corresponding-states methodsWILDING, W. V; JOHNSON, J. K; ROWLEY, R. L et al.International journal of thermophysics. 1987, Vol 8, Num 6, pp 717-735, issn 0195-928XArticle

Horizontal bridges in polar dielectric liquidsWOISETSCHLÄGER, Jakob; WEXLER, Adam D; HOLLER, Gert et al.Experiments in fluids. 2012, Vol 52, Num 1, pp 193-205, issn 0723-4864, 13 p.Article

Applying association theories to polar fluidsVON SOLMS, Nicolas; MICHELSEN, Michael L; KONTOGEORGIS, Georgios M et al.Industrial & engineering chemistry research. 2004, Vol 43, Num 7, pp 1803-1806, issn 0888-5885, 4 p.Article

Dielectric constant and sample's shape in dipolar fluidsALASTUEY, A; BALLENEGGER, V.Journal de physique. IV. 2000, Vol 10, Num 5, pp Pr5.437-Pr5.440, issn 1155-4339Conference Paper

Rheology of suspensions with non-Newtonian solventsTARAN, E. YU; PRIDATCHENKO, YU. V; SELEZOV, I. T et al.Zeitschrift für angewandte Mathematik und Mechanik. 1996, Vol 76, pp 513-514, issn 0044-2267, SUP5Conference Paper

A generalized equation of state for polar and non-polar fluids based on four-parameter corresponding states theoremGOLOBIC, I; GASPERSIC, B.Chemical engineering communications (Print). 1994, Vol 130, pp 105-126, issn 0098-6445Article

A note on effects of couple stresses on the flow through a porous mediumPATIL, P. M; HIREMATH, P. S.Rheologica acta. 1992, Vol 31, Num 2, pp 206-207, issn 0035-4511Article

Spatio-temporal dynamics of an active, polar, viscoelastic ringMARCQ, Philippe.The European physical journal. E, Soft matter (Print). 2014, Vol 37, Num 4, issn 1292-8941, 1.1-1.8Conference Paper

Universal equation of state for engineering application: algorithm and application to non-polar and polar fluidsLIXIN SUN; ELY, James F.Fluid phase equilibria. 2004, Vol 222-23, pp 107-118, issn 0378-3812, 12 p.Conference Paper

Proceeding of experiment about liquid flow through microtubesLI, Zhan-Hua; CUI, Hai-Hang.Colloque d'hydrotechniqueSociété hydrotechnique de France. 2002, pp 73-78, isbn 2-906831-55-7, 6 p.Conference Paper

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