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16.

Ландау Л.Д.

,

Лифшиц Е.М.

Теоретическая физика. Т. 8. М.: Наука, 1982. 621 с.

17.

Димитриенко Ю.И.

Универсальные законы механики и электродинамики

сплошной среды / Механика сплошной среды. Т. 2. М.: Изд-во МГТУ

им. Н.Э. Баумана. 2011. 560 с.

REFERENCES

[1] Gefle O.S., Lebedev S.M., Pokholkov Yu.P. Complex permittivity frequency spectra

of composite dielectrics on the basis of polyvinylchloride.

Bulletin of the Tomsk

Polytechnic University

, 2007, vol. 310, no. 1, pp. 82–85.

[2] Emetch Yu.P. Effective permittivity of three-phase composite materials with an

anisotropic structure.

Technical Physics

, 2005, vol. 50, iss. 2, pp. 207–212.

[3] Muradyan V.E., Sokolov E.A., Babenko S.D., Moravskiy A.P. Microwave dielectric

properties of composites modified by carbon nanostructures.

Technical Physics

, 2010,

vol. 50, iss. 2, pp. 242–246.

[4] Kettunen H., Qi J., Wallen H., Sihvola A. Frequency dependence of effective

permittivity of simple dielectric composites.

Proceedings of ACES

. Tampere, Finland,

2010, pp. 248–253.

[5] Bakhvalov N.S., Panasenko G.P. [Homogenisation: Averaging Processes in Periodic

Media. Mathematical Problems in the Mechanics of Composite Materials]. Springer,

1989. 352 p.

[6] Bensoussan A., Lions J.L., Papanicalaou G. Asymptotic analysis for periodic

structures. Amsterdam, N.Y., North-Holland Publ. Co., 1978. 396 p.

[7] Sanchez-Palencia E. Boundary layers and edge effects in composites.

Lecture notes

in Physics

, 1987, no. 272, pp. 121–192.

[8] Shelukhin V.V., Terent’ev S.A. Homogenization of Maxwell equations and the

Maxwell –Wagner dispersion. Doklady Earth Sciences, 2009, vol. 424, no. 1,

pp. 155–159.

[9] Zarubin V.S., Kuvyrkin G.N., Savelyeva

I.Yu

. Effective thermal conductivity of a

composite in case of inclusions shape deviations from spherical ones.

Mathematical

Modeling and Computational Methods

, 2014, no. 4. pp. 3–17 (in Russ.).

[10] Golovin N.N., Zarubin V.S., Kuvyrkin G.N. Estimation of effective of moduli

of materials modified by fullerene.

Composites and nanostructures

, 2011, no. 4,

pp. 21–31.

[11] Dimitrienko Yu.I., Kaskarov A.I

.

Finite-element method for calculation of effective

characteristic of three-dimensional reinforced composites.

Vestn. Mosk. Gos. Tekh.

Univ. im. N.E. Baumana, Estestv. Nauki

[Herald of the Bauman Moscow State Tech.

Univ., Nat. Sci.], 2002, no. 2, pp. 95–108 (in Russ.).

[12] Dimitrienko Yu.I., Gubareva E.A., Sborschikov S.V. Asymptotic theory of

constructive-orthotropic plates with two-periodic structures.

Mathematical Modeling

and Computational Methods

, 2014, no. 1, pp. 36–57 (in Russ.).

[13] Dimitrienko Yu.I., Gubareva E.A., Yakovlev D.O. Asysymptotic theory of viscoelasic

multilayer thin composite plates.

Nauka i obrazovanie

.

MGTU im. N.E. Baumana

[Science & Education of the Bauman MSTU. Electronic Journal], 2012, no. 12,

pp. 359–382. DOI: 10.7463/1014.0730105

[14] Dimitrienko Yu.I., Gubareva E.A., Yurin Yu.V. Asymptotic theory of thermocreep for

multilayer thin plates.

Mathematical Modeling and Computational Methods

, no. 4,

2014, pp. 36–57 (in Russ.). DOI: 10.7463/0113.0531682

[15] Dimitrienko Yu.I., Sokolov A.P., Markevich M.N. Modeling of dielectric properties

of composite materials on the basis of asymptotic averaging.

Nauka i obrazovanie

.

MGTU im. N.E. Baumana

[Science & Education of the Bauman MSTU. Electronic

Journal], 2013, no. 1, pp. 49–64. DOI: 10.7463/0113.0531682

ISSN 1812-3368. Вестник МГТУ им. Н.Э. Баумана. Сер. “Естественные науки”. 2016. № 1

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