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SECTION VIII: MACROSCOPIC PROPERTIES

NMR Study of Flow and Viscoelastic Properties of PBLG/m-Cresol Lyotropic Liquid Crystal

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Pages 499-507 | Published online: 04 Oct 2006

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Kyle G. Wilmsmeyer, Xiuli Li & Louis A. Madsen. (2018) Anisotropic viscoelasticity and molecular diffusion in nematic wormlike micelles. Liquid Crystals 45:6, pages 844-856.
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Sebastien Viale, Eduardo Mendes & StephenJ. Picken. (2005) A Direct Observation by XRD of Reorientation in a Supramolecular Liquid Crystal Polymer Induced by Magnetic Field. Molecular Crystals and Liquid Crystals 437:1, pages 43/[1287]-52/[1296].
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Articles from other publishers (5)

A.F. Martins & A. Véron. (2008) The role of defects and boundary and volume inhomogeneities in the field-induced director reorientation in nematic liquid crystals confined between parallel plates. Thin Solid Films 517:4, pages 1387-1393.
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A. Véron & A.F. Martins. (2008) Dynamics of confined nematic liquid crystals: Computer simulation of field-induced band formation in the presence of defects anchored on solid boundary surfaces. Thin Solid Films 517:4, pages 1380-1386.
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J P Casquilho, A Véron & A F Martins. (2006) NMR spectra simulation of the magnetic reorientation of a lyotropic nematic polymer cell in the Freedericksz and a non-Freedericksz twist geometry. Modelling and Simulation in Materials Science and Engineering 14:2, pages 299-312.
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C. J. Dunn, D. Ionescu, N. Kunimatsu, G. R. Luckhurst, L. Orian & A. Polimeno. (2000) A Novel Magnetohydrodynamic Experiment:  Step-Rotation of a Nematic Subject to a Magnetic Field. The Journal of Physical Chemistry B 104:47, pages 10989-11000.
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Assis F. Martins, Alexandre E. Gomes, Antonino Polimeno & Laura Orian. (2000) Simulations of flow-induced director structures in nematic liquid crystals through Leslie-Ericksen equations. II. Interpretation of NMR experiments in liquid crystal polymers. Physical Review E 62:2, pages 2301-2309.
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