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Original Articles

Rotational Viscosity Coefficients γ1 for Mixtures of Nematic Liquid Crystals

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Pages 219-229 | Received 31 Jan 1983, Published online: 17 Oct 2011

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H.L. Owen, J. Newton, P. Hodge & H.J. Coles. (1995) Comparison of Mesomorphic Behaviour and Electro-Optic Properties of Ferroelectric Mesogens With and Without Disiloxane End-Groups. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 265:1, pages 563-575.
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A.S. Sailaja, K. Venu & V.S. S. Sastry. (1994) Rotational Viscosity (γ1) Study of Nematic Phases in Binary Liquid Crystal Mixtures of 60CB and 8OCB. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals 250:1, pages 177-183.
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A.M. Velho & A.C. Diogo. (1989) Viscosity of nematic mixtures: A free-volume approach. Liquid Crystals 5:1, pages 349-357.
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C. Escher, T. Geelhaar & E. Bohm. (1988) Measurement of the rotational viscosity of ferroelectric liquid crystals based on a simple dynamical model. Liquid Crystals 3:4, pages 469-484.
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F.-J. Bock, H. Kneppe & F. Schneider. (1986) Rotational viscosity of nematic liquid crystals and their shear viscosity under flow alignment. Liquid Crystals 1:3, pages 239-251.
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F.M. Leslie & C.M. Waters. (1985) Light Scattering From a Nematic Liquid Crystal in the Presence of an Electric Field. Molecular Crystals and Liquid Crystals 123:1, pages 101-117.
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H.J. Coles & J. Tipping. (1985) Transient Electro-Optic Raman Scattering: A New Approach to the Freedericksz Transition. Molecular Crystals and Liquid Crystals Letters 2:1-2, pages 23-28.
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H. J. Coles & M. S. Sefton. (1985) Determination of Twist Elastic and Viscotic Constants using Electric Field Dynamic Light Scattering. Molecular Crystals and Liquid Crystals Letters 1:5, pages 151-157.
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Articles from other publishers (11)

Fumiaki Kobayashi, Yuji Sasaki, Shuji Fujii, Hiroshi Orihara & Tomoyuki Nagaya. (2020) Negative viscosity of liquid crystals in the presence of turbulence: Conductivity dependence, phase diagram, and self-oscillation. Physical Review E 101:2.
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El-Sayed Ibrahim El-Desoky, Mohamed Ahmed Abozeid & Abdel-Rahman Hassan Abdel-Rahman. (2019) Quinacetophenone: A simple precursor to privileged organic motifs. Arabian Journal of Chemistry 12:8, pages 3380-3405.
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Herbert Kneppe & Frank Schneider. 2014. Handbook of Liquid Crystals. Handbook of Liquid Crystals 1 37 .
Sergey V. Pasechnik, Vladimir G. Chigrinov & Dina V. Shmeliova. 2009. Liquid Crystals. Liquid Crystals 179 281 .
D. Demus, J. Goodby, G. W. Gray, H.‐W. Spiess & V. VillHerbert Kneppe & Frank Schneider. 1998. Handbook of Liquid Crystals. Handbook of Liquid Crystals 142 169 .
D. Demus, J. Goodby, G. W. Gray, H.‐W. Spiess & V. VillHerbert Kneppe & Frank Schneider. 1998. Handbook of Liquid Crystals Set. Handbook of Liquid Crystals Set 142 169 .
H. W. Heuer, H. Kneppe & F. Schneider. (2010) Determination of interdiffusion coefficients in nematic liquid crystals by an optical method. Berichte der Bunsengesellschaft für physikalische Chemie 100:11, pages 1818-1824.
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V. Vill. 1995. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups. Transition Temperatures and Related Properties of Three-Ring Systems with Two Bridging Groups 587 612 .
L. M. Blinov & V. G. ChigrinovL. M. Blinov & V. G. Chigrinov. 1994. Electrooptic Effects in Liquid Crystal Materials. Electrooptic Effects in Liquid Crystal Materials 47 96 .
G. Christoph, W. Stille & G. Strobl. (1993) Dependence of the rotational viscosity of nematic mixtures on the rotational diffusion constants of their components. The Journal of Chemical Physics 99:4, pages 3075-3081.
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M. P. Fontana, B. Rosi, N. Kirov & I. Dozov. (1986) Molecular orientational motions in liquid crystals: A study by Raman and infrared band-shape analysis. Physical Review A 33:6, pages 4132-4142.
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