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Results 1 to 25 of 4442

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Three-dimensional shear-driven dynamics of polydomain textures and disclination loops in liquid crystalline polymersKLEIN, D. Harley; LEAL, L. Gary; GARCIA-CERVERA, Carlos J et al.Journal of rheology (New York, NY). 2008, Vol 52, Num 3, pp 837-863, issn 0148-6055, 27 p.Article

Poly(propyleneimine) liquid crystal codendrimers bearing laterally and terminally attached promesogenic groupsGROUPS, Promesogenic; MARTIN-RAPUN, Rafael; MARCOS, Mercedes et al.Chemistry of materials. 2004, Vol 16, Num 24, pp 4969-4979, issn 0897-4756, 11 p.Article

Papers from EuroRheo 99-1, May 3-7, 1999, Sophia-Antipolis, FranceSCHMIDT, Claudia; NAVARD, Patrick.Rheologica acta. 1999, Vol 38, Num 6, issn 0035-4511, 129 p.Conference Proceedings

A study of non-flow under-fill flip-chip bonding process for LCP based cof componentsFURUKI, Satoshi; TAKAHASHI, Hiroyuki; HATANO, Chihiro et al.SPIE proceedings series. 2003, pp 87-92, isbn 0-8194-5189-4, 6 p.Conference Paper

Electro-Opto-Mechanical Effects in Swollen Nematic ElastomersURAYAMA, Kenji.Advances in polymer science (Print). 2012, Vol 250, pp 119-146, issn 0065-3195, 28 p.Article

Liquid crystalline polymers: a reviewATHAWALE, V. D; BAILKERI, R. S; ATHAWALE, M. V et al.European coatings journal. 2001, Num 6, pp 70-72, issn 0930-3847Article

Dynamics and rheology of biaxial liquid crystal polymers in shear flowsSIRCAR, Sarthok; QI WANG.Journal of rheology (New York, NY). 2009, Vol 53, Num 4, pp 819-858, issn 0148-6055, 40 p.Article

Liquid Crystals and Liquid Cristalline Polymers for Advanced TechnologiesKOIDE, Naoyuki.Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystals. 1998, Vol 318, issn 1058-725X, 327 p.Conference Proceedings

Polarization sensitive diffuserRUFFIEUX, Patrick; SCHARF, Toralf; HERZIG, Hans Peter et al.Proceedings of SPIE, the International Society for Optical Engineering. 2008, pp 69920N.1-69920N.8, issn 0277-786X, isbn 978-0-8194-7190-1Conference Paper

Static birefringent microlensesSCHARF, Toralf.Optics and lasers in engineering. 2005, Vol 43, Num 3-5, pp 317-327, issn 0143-8166, 11 p.Article

Exploring motion reversal in polymer cholesteric-liquid-crystal devicesKOSC, T. Z; COON, C. J; BABCOCK, G. V et al.Proceedings of SPIE, the International Society for Optical Engineering. 2006, pp 633209.1-633209.9, issn 0277-786X, isbn 0-8194-6411-2, 1VolConference Paper

Defect-mediated creep of structured materialsCOLBY, R. H; NENTWICH, L. M; CLINGMAN, S. R et al.Europhysics letters (Print). 2001, Vol 54, Num 2, pp 269-274, issn 0295-5075Article

Birefringence measurement of liquid single crystal elastomer swollen with low molecular weight liquid crystalYUSUF, Yusril; SUMISAKI, Yusuke; KAI, Shoichi et al.Chemical physics letters. 2003, Vol 382, Num 1-2, pp 198-202, issn 0009-2614, 5 p.Article

Liquid crystalline networksTERENTJEV, E. M.Current opinion in colloid & interface science. 1999, Vol 4, Num 2, pp 101-107, issn 1359-0294Article

The effect of pretreatment on adhesive strength of Cu-plated liquid crystal polymer (LCP)MEISHENG ZHOU; WENLONG ZHANG; DONGYAN DING et al.Applied surface science. 2012, Vol 258, Num 7, pp 2643-2647, issn 0169-4332, 5 p.Article

Holographic lens in azobenzene liquid crystal polymer filmsZHANG JIANGYING; MING HAI; WANG PEI et al.SPIE proceedings series. 2004, pp 614-618, isbn 0-8194-5176-2, 5 p.Conference Paper

Surface anchoring on liquid crystalline polymer brushesLANGE, Harald; SCHMID, Friederike.Computer physics communications. 2002, Vol 147, Num 1-2, pp 276-281, issn 0010-4655, 6 p.Conference Paper

New fabrication method for anisotropic gratings formed in photocrosslinkable polymer liquid crystalsONO, H; EMOTO, A; KAWATSUKI, N et al.Applied physics. A, Materials science & processing (Print). 2004, Vol 79, Num 7, pp 1725-1727, issn 0947-8396, 3 p.Article

The liquid crystal polymer packaging solutionFARRELL, Brian; JAYNES, Paul; JOHNSON, Wayne et al.SPIE proceedings series. 2003, pp 18-23, isbn 0-8194-5189-4, 6 p.Conference Paper

Flüssigkristalline Kunststoffe (LCP) = Liquid-crystal polymers (LCP)HUBER, H.-J.Kunststoffe. 1996, Vol 86, Num 10, pp 1530-1532, issn 0023-5563, 2 p.Article

Spinodal decomposition and nematic coarsening in a rigid-rod solutionGREEN, Micah J; BROWN, Robert A; ARMSTRONG, Robert C et al.Journal of non-newtonian fluid mechanics. 2009, Vol 161, Num 1-3, pp 30-36, issn 0377-0257, 7 p.Article

Computational rheooptics of liquid crystal polymersHWANG, D. K; HAN, W. H; REY, A. D et al.Journal of non-newtonian fluid mechanics. 2007, Vol 143, Num 1, pp 10-21, issn 0377-0257, 12 p.Article

Metallic subentities embedded in micro-periodic composite structureDE SIO, L; CAPUTO, R; CATALDI, U et al.Proceedings of SPIE, the International Society for Optical Engineering. 2011, Vol 8114, issn 0277-786X, isbn 978-0-8194-8724-7, 81140I.1-81140I.7Conference Paper

Creating vortex retarders using photoaligned liquid crystal polymersCELDOWNEY, Scott C. M; SHEMO, David M; CHIPMAN, Russell A et al.Optics letters. 2008, Vol 33, Num 2, pp 134-136, issn 0146-9592, 3 p.Article

Isotropic- to- nematic transition in liquid- crystalline heteropolymers. I. Formalism and main- chain liquid- crystalline polymersWESSELS, Paul P. F; MULDER, Bela M.Journal of physics. Condensed matter (Print). 2006, Vol 18, Num 41, pp 9335-9357, issn 0953-8984, 23 p.Article

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