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Measurement of the liquid crystal pretilt angle in cells with homogeneous and inhomogeneous liquid crystal director configurationOptical and electro-optical methods of liquid crystal (LC) director pretilt angle measurement

Сопряжение различных моделей двухфазной фильтрации в двумерном случае and incompressible liquids Muskat-Leverett (ML-model) with various phase pressure and models Backley-Leverett (BL

Tensor field of weakly inhomogeneous orientational ordering in the theory of liquid crystalsTensor field of weakly inhomogeneous orientational ordering in the theory of liquid crystals

Consistency of equation for the density of an inhomogeneous system in terms of a binary function of a homogeneous liquidConsistency of equation for the density of an inhomogeneous system in terms of a binary function

FRANKS FREE-ENERGY, GENERALIZED FOR THE CASE OF INHOMOGENEOUS PARAMETER OF ORDERING - SURFACE STRESS AND STRUCTURE OF THE FLAT INTERPHASE REGION ISOTROPIC-LIQUID NEMATIC-LIQUID CRYSTALFRANKS FREE-ENERGY, GENERALIZED FOR THE CASE OF INHOMOGENEOUS PARAMETER OF ORDERING - SURFACE

Phase retardation vs. pretilt angle in liquid crystal cells with homogeneous and inhomogeneous LC director configurationPhase retardation of both extraordinary and ordinary polarized rays passing through a liquid

Building the inhomogeneous finite element model by the data of computed tomography
carried out. The relevance of this study is confirmed by the effect of the distribution of the mechanical

Measurement of the lc pretilt angle and polar anchoring in cells with homogeneous and inhomogeneous lc director configuration and weak anchoring on organosilicon aligning films in LC cells with homogeneous and inhomogeneous LC director distribution. The LC pretilt on both LC

Photon-echo quantum memory with complete use of natural inhomogeneous broadening by a signal light field in the inhomogeneously broadened resonant line. Here, we demonstrate an active

Temperature Dependence of Magnetic Properties of a Ultrathin Yttrium-Iron Garnet Film Grown by Liquid Phase Epitaxy: Effect of a Pt Overlayer© 2018 IEEE. Liquid phase epitaxy of an 18 nm thick yttrium-iron garnet (YIG) film is achieved. Its

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