Academic literature on the topic 'Epitropia'

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Journal articles on the topic "Epitropia"

1

Mikhailenko, V. I., and A. Yu Popovskii. "Thermodynamic properties of epitropic liquid crystals." Physics of Aerodisperse Systems, no. 54 (December 14, 2017): 51–57. http://dx.doi.org/10.18524/0367-1631.2017.54.132727.

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In this paper we used developed theoretical model earlier (called “two-component”) for numerical calculation of temperature dependencies of equilibrium ELC layer thickness hs(T), its specific heat Cp(T) and latent molar heat of phase transition ELC-bulk liquid q(T) with further comparison with experiment. This model postulates the existence of both monomers and dimers in the wall-adjacent layer, and the appearance of ELC layer is caused by the orientational interaction between these liquid particles and the solid substrate. The calculations were compared with results of experimental investigation of thin nitrobenzene interlayer symmetrically bounded by quartz substrates.
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Altoiz, B. A., A. Yu Popovskii, and A. F. Butenko. "The structure of overlapped epitropic LC." Physics of Aerodisperse Systems, no. 61 (December 9, 2023): 63–69. http://dx.doi.org/10.18524/0367-1631.2023.61.291101.

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The proposed model of the structure of the wall-adjacent epitropic liquid crystalline layer considers it as an oligomeric system of thread-like associates in a non-associated liquid. The results of ELC studies of layers of aliphatic hydrocarbon - n-hexadecane are analyzed. The study of the ELC phase in n-alkanes is important both for the modification of the quantitative physical theory of this phenomenon, and in a practical sense, as it allows to solve practical problems related to the control of boundary friction in mechanisms and parts of machines. Previously, the results of rheological and structural-optical studies of the properties of these systems were considered separately, and the results obtained in the molecular-statistical model were not correlated in detail with the results of rheological measurements for the case of overlapped near-surface layers. To interpret the results of studies (by rheological and optical methods) of such a layer in interlayers of n-hexadecane, symmetrically limited by conductive substrates, it is proposed to take into account the increase in the concentration of the ordered component ("pile") under the condition that the wall layers of epitropic liquid crystals in the interlayer overlap. It will also allow to take into account the results obtained in the molecular statistical model in the processing of rheological data.
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Altoiz, B. A., A. Yu Popovskii, and A. F. Butenko. "Equilibrium parameters of a structured n-hexadecane layer." Physics of Aerodisperse Systems, no. 54 (December 14, 2017): 35–44. http://dx.doi.org/10.18524/0367-1631.2017.54.132718.

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The temperature dependences of the structural characteristics of the quasi-liquidcrystalline n-hexadecane layers − their equilibrium thickness and the degree of orientational order were determined by such optical methods as measurements of admixture dichroism and the anisotropy of heterophase interlayers. The values of these epitropic liquid-crystalline layer parameters were compared with those established earlier in rheological experiments.
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Levchenko, V. A. "Epitropic liquid crystals — a new liquid phase." Journal of Molecular Liquids 85, no. 1-2 (April 2000): 197–210. http://dx.doi.org/10.1016/s0167-7322(99)00178-6.

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Popovskii, A. Yu, and V. I. Mikhailenko. "Properties of Wall-Adjacent Epitropic Liquid Crystalline Layers." Ukrainian Journal of Physics 57, no. 2 (February 15, 2012): 224. http://dx.doi.org/10.15407/ujpe57.2.224.

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A two-component theoretical model of orientational ordering in wall-adjacent layers of a nonmesogenic liquid (consisting of monomers and dimers) with anisotropic intermolecular interaction has been developed. In the framework of the model, a number of experimental results such as the isotherms of disjoing pressure and some peculiarities in the behavior of heat capacity and dielectric permittivity of the liquid interlayers have been explained.
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Lyakhova, E. "Ising model of the epitropic liquid crystalline phase." Journal of Molecular Liquids 93, no. 1-3 (September 2001): 203–6. http://dx.doi.org/10.1016/s0167-7322(01)00231-8.

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Altoiz, B. A., V. N. Bondarev, E. A. Shatagina, and S. V. Kiriyan. "Model of organization of the epitropic liquid phase." Technical Physics 59, no. 7 (July 2014): 1003–6. http://dx.doi.org/10.1134/s1063784214070020.

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8

Derjaguin, B. V., B. A. Altoiz, and I. I. Nikitenko. "Epitropic liquid crystal layers of nonmesogens on quartz substrate." Journal of Colloid and Interface Science 145, no. 2 (September 1991): 441–46. http://dx.doi.org/10.1016/0021-9797(91)90375-i.

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Derjaguin, B. V., B. A. Altoiz, and I. I. Nikitenko. "Epitropic liquid crystal layers of nonmesogens on quartz substrate." Progress in Surface Science 45, no. 1-4 (January 1994): 44–49. http://dx.doi.org/10.1016/0079-6816(94)90030-2.

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Popovskii, A. Yu, and V. I. Mikhailenko. "Thickness Dependence of Refractivity in Wall-Adjacent Epitropic Liquid Crystal." Ukrainian Journal of Physics 59, no. 3 (March 2014): 299–302. http://dx.doi.org/10.15407/ujpe59.03.0299.

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Books on the topic "Epitropia"

1

Pantelidou, Roē D. Hē epitropeia anēlikōn. Athēna: Ekdoseis Ant. N. Sakkoula, 1999.

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2

Petala-Papadopoulou, Lela. Epitropos anēlikou. Athēna: Synchronē Epochē, 1992.

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Smparounēs, Alekos. Hē epitropē: Neoellēnikē meletē : mythistorēma. Athēna: Ekdoseis Nephelē, 2021.

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Tsoumas, Vasilēs. Sōmateia: Syndikalistikes organōseis, hidrymata, eranikes epitropes. Athēna: Nomikē Vivliothēkē, 2010.

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Epitropē tou Dēmou Volou gia ta dikaiōmata tēs gynaikas. Epitropē tou Dēmou Volou gia ta dikaiōmata tēs gynaikas. Volos: [Dēmou Volou, 1994.

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Suleiman, Ezra N., 1941- , author, ed. Eurōpaikē epitropē kai grapheiokratikē autonomia: Hoi prostates tēs Eurōpēs. Thessalonikē: Epikentro, 2013.

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Greece. Tameio Diacheirisēs Pistōseōn gia tēn Ektelesē Archaiologikōn Ergōn. To ergo tōn Epistēmonikōn epitropōn anastēlōsēs, syntērēsēs kai anadeixēs mnēmeiōn. Athena: Hypourgeio Politismou. Tameio Diacheirisēs Pistōseōn gia tēn Ektelesē Archaiologikōn Ergōn, 2006.

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Papaphōtēs, Phōtēs. Praxikopēma-eisvolē: Hē katathesē mou stēn Epitropē Phakellou tēs Kyprou. Lemesos: [s.n.], 2008.

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Sinos, Stefan. Ta mnēmeia tou Mystra: To Ergo tēs Epitropēs Anastēlōsēs Mnēmeiōn Mystra. Athēna: Hypourgeio Politismou, Tameio Diacheirisēs Pistōseōn gia tēn Ektelēsē Archaiologikōn Ergōn, Epitropē Anastēlōsēs Mnēmeiōn Mystra, 2009.

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Dervitsiōtēs, Alkēs N. Hoi exetastikes epitropes tou Arthrou 68 par. 2 tou Syntagmatos 1975-86. Athēna: Ekdoseis Ant. N. Sakkoula, 1994.

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Book chapters on the topic "Epitropia"

1

Gooch, Jan W. "Epitropic Fibers." In Encyclopedic Dictionary of Polymers, 271. New York, NY: Springer New York, 2011. http://dx.doi.org/10.1007/978-1-4419-6247-8_4456.

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Vana, Liliane. "Epitropos ou administrateur de biens : une fonction féminine méconnue aux premiers siècles de notre ère." In Bibliothèque de l'Ecole des Hautes Etudes, Sciences Religieuses, 187–205. Turnhout: Brepols Publishers, 2006. http://dx.doi.org/10.1484/m.behe-eb.4.2017041.

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"Epitropic fibers." In Encyclopedic Dictionary of Polymers, 363. New York, NY: Springer New York, 2007. http://dx.doi.org/10.1007/978-0-387-30160-0_4395.

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"epitropic fiber." In The Fairchild Books Dictionary of Textiles. Fairchild Books, 2021. http://dx.doi.org/10.5040/9781501365072.5598.

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"epitrope, n." In Oxford English Dictionary. 3rd ed. Oxford University Press, 2023. http://dx.doi.org/10.1093/oed/2732631729.

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