212. F. L. Bakharev , St. A. Nazarov (2015) Gaps in the spectrum of a waveguide composed of domains with different limiting dimensions. Siberian Mathematical Journal 56(4):575-592. DOI:10.1134/S0037446615040023 (link) 213. S.A. Nazarov (2015) Scattering anomalies in a resonator above thresholds of the continuous spectrum. Sbornik: Mathematics 206(6):782–-813. DOI:10.1070/SM2015v206n06ABEH004479 (link) 214. A.-S. Bonnet-Ben Dhia, S.A. Nazarov, J. Taskinen (2015) Underwater topography invisible for surface waves at given frequencies. Wave Motion 57:129–142. DOI:10.1016/j.wavemoti.2015.03.008 (link) 215. F. L. Bakharev , S. G. Matveenko, S. A. Nazarov (2015) Spectra of three-dimensional cruciform and lattice quantum waveguides. Doklady Mathematics 92(1):514-518. DOI:10.1134/S1064562415040274 (link) 216. S.A. Nazarov, G.A. Chechkin (2015) Approximation of thin three-dimensional plates with smooth lateral surface by polygonal plates. Journal of Mathematical Sciences 210(4):399-428. DOI:10.1007/s10958-015-2573-4. (link) 217. S.A. Nazarov (2015) Eigenmodes of a thin elastic layer between periodic rigid profiles. Comput. Math. and Math. Physics 55(10):1684–-1697. DOI:10.1134/S0965542515100164 (link) 218. S.A. Nazarov (2015) Localization of longitudinal and transverse oscillations in a thin curved elastic gasket. Doklady Physics 60(10):446–-450. DOI:10.1134/S1028335815100018 (link) 219. F.S. Cal, G.A.S. Dias, S.A. Nazarov, J.H. Videman (2015) Linearised theory for surface and interfacial waves interacting with freely floating bodies in a two-layer fluid. ZAMP 66(2):417–432. DOI:10.1007/s00033-014-0423-8 (link) 220. A.-S. Bonnet-Ben Dhia, L. Chesnel, S.A.. Nazarov (2015) Non-scattering wavenumbers and far field invisibility for a finite set of incident/scattering directions. Inverse Problems 31(4):045006, 24 pp. DOI: 10.1088/0266-5611/31/4/045006 (link) 221. S.A. Nazarov, K.M. Ruotsalainen, M. Silvola (2015) Trapped modes under interaction of elastic and electric fields in a piezoelectric waveguide. Doklady Physics 60(10):451–455. DOI:10.1134/S1028335815100043 (link) 222. J. Martin, S.A. Nazarov, J. Taskinen (2015) Spectrum of the linear water model for a two-layer liquid with cuspidal geometries at the interface. ZAMM 95(8):859–876. DOI: 10.1002/zamm.201300212 (link) 223. S.A. Nazarov, K. Ruotsalainen, P. Uusitalo. (2015) Bound states of waveguides with two right-angled bends. J. Math. Phys. 56(2):021505. 24 p. DOI:10.1063/1.4907559 (link) 224. G. Cardone, S.A. Nazarov, J. Taskinen (2015) Spectra of open waveguides in periodic media. J. Funct. Anal. 269(8):2328–-2364. DOI:10.1016/j.jfa.2015.08.001 (link) 225. S. A. Nazarov (2015) Asymptotics of the eigenvalues of boundary value problems for the Laplace operator in a three-dimensional domain with a thin closed tube. Trans. Moscow Math. Soc. 76:1-53 DOI:10.1090/mosc/243 (link) 226. L. Chesnel, X. Claeys, S.A. Nazarov (2015) Spectrum of a diffusion operator with coefficient changing sign over a small inclusion. ZAMP 66(5):2173–2196. DOI:10.1007/s00033-015-0559-1 (link) 227. S.A. Nazarov (2015) Exfoliation of thin periodic elastic coating due to trapping and propagation of waves. Materials Physics and Mechanics 24(1):50–60. (link) 228. S.A. Nazarov (2015) Gap opening around a given point of the spectrum of a cylindrical waveguide by means of gentle periodic perturbation of walls. Journal of Math. Sci. 206(3):288–-314. DOI:10.1007/s10958-015-2312-x (link) 229. S.A. Nazarov (2015) Asymptotic expansions of eigenvalues of the Steklov problem in singularly perturbed domains. St. Petersburg Math. J. 26(2):273–-318. DOI:10.1090/S1061-0022-2015-01339-3 (link) 230. S.A. Nazarov (2015) Modeling of densely cracked surfaces and the Griffith energy criterion of fracture. Materials Physics and Mechanics 24(4):308–317. (link) 231. S.A. Nazarov, J. Taskinen (2015) Spectral gaps for periodic piezoelectric waveguides. ZAMP 66(6):3017–-3047. DOI:10.1007/s00033-015-0561-7 (link) 232. B. M. Ginzburg , D. Rashidov, Sh. Tuichiev, S. Tabarov (2015) Effect of fullerene C60 and γ radiation on mechanical properties and radiation resistance of low-density polyethylene. Technical Physics. The Russian Journal of Applied Physics 60(1):151-153. DOI:10.1134/S1063784215010119 (link) 233. E.B. Sedakova, Yu.P. Kozyrev (2015) Increase in the Wear Resistance of Polytetraethylene on Filling with Disperse Particles. Russian engineering research 35(5):335-338. DOI:10.3103/S1068798X15050214 (link) 234. E.B. Sedakova, Yu.P. Kozyrev (2015) Wear of Polymer Composites with Short - Fiber Filler. Russian engineering research 35(10):729-732. DOI:10.3103/S1068798X15100184 (link) 235. A.O. Pozdnyakov, A.A. Bogdanov & A.P. Voznyakovskii (2015). Thermo- and photoinduced interaction between the components of a poly(n-butyl methacrylate)–fullerene C60 composite. Technical Physics Letters, 41(12), 1113-1115. doi:10.1134/S1063785015120123 (link) 236. Ginzburg B.M., Shepelevskii A.A., Tuichiev S., Rashidov D., Sodikov F.H., Tabarov S.H. (2015) Step-Wise Concentration Influence of Fullerenes C 60 and C 70 on the Various Parameters of Condensed Systems: Part 1: Step-Wise Behavior at the Melting of Frozen Solutions. Journal of Macromolecular Science. Part B: Physics. 54(5): 533-543. DOI: 10.1080/00222348.2015.1010635 (link) 237. Ginzburg B.M., Tuichiev Sh. (2015)š Step-Wise Concentration Influence of Fullerenes C 60 and C 70 on the Various Parameters of Condensed Systems: Part 2: Step-Wise Behavior at the Melting of Frozen Solutions. Journal of Macromolecular Science. Part B: Physics. 54(5): 544-548. DOI: 10.1080/00222348.2015.1012483 (link) 238. Koltsova, T., Larionova, T., Fadin, Y., Tolochko, O. (2015) Copper-based composite materials reinforced with carbon nanostructures. Medziagotyra (Materials science). 21(3): 364-368. DOI: 10.5755/j01.ms.21.3.7348 (link) 239. R.V. Guchinsky, S.V. Petinov (2015) Two-Dimensional Surface Fatigue Crack Propagation and its Finite Element Simulation. Applied Mechanics and Materials, 725-726:654-660. DOI:10.4028/www.scientific.net/AMM.725-726.654 (link) 240. A.B. Freidin, E.N. Vilchevskaya, I.K. Korolev (2014) Stress-assist chemical reactions front propagation in deformable solids. Int. J. Engineering Science. 83:57-75. DOI:10.1016/j.ijengsci.2014.03.008 (link) 241. E.L. Aero, A.L. Korzhenevskii (2014) The theory of coexisting austenite-martensite phase formation. Materials Physics and Mechanics 21(1):58-70. (link) 242. E.L. Aero, A.L. Korzhenevskii, A.N. Bulygin (2014) Dynamic theory of coexisting austenite-martensite phase formation. Materials Physics and Mechanics 21(3):230-241. (link) 243. L.V. Mirantsev (2014) Novel possible electro-(magneto-)optic effect in smectic-A liquid crystal cell, Phys.Lett. A. 378(1-2):86-89. DOI: 10.1016/j.physleta.2013.10.045 (link) 244. A.V. Porubov (2014) Modeling of strongly nonlinear effects in diatomic lattices. Archive of Applied Mechanics 84(9):1533-1538. DOI: 10.1007/s00419-014-0859-5 (link) 245. A.V. Porubov, I.E. Berinskii (2014) Non-linear plane waves in materials having hexagonal internal structure, Int. J. Non-Linear Mech. 67:27-33. DOI:10.1016/j.ijnonlinmec.2014.07.003 (link) 246. A.A. Grib, Yu.V. Pavlov, V.D. Vertogradov (2014) Geodesics with negative energy in the ergosphere of rotating black holes. Modern Physics Letters A 29(20):1450110 (9 pages). DOI: 10.1142/S0217732314501107 (link) 247. Yu.V. Pavlov (2014) On creation of scalar particles with Gauss-Bonnet type coupling to curvature in Friedmann cosmological models, Gravitation & Cosmology 20(1):21-25. DOI: 10.1134/S0202289314010101 (link) 248. A.L. Korzhenevskii, R. E. Rozas, R. Bausch, R. Schmitz (2014) Periodic layer formation in the growth of dilute binary alloys. Physica A: Statistical Mechanics and its Applications 413:394–399. DOI:10.1016/j.physa.2014.06.029 (link) 249. A.V. Porubov (2014) Description of kink evolution by means of particular analytical solutions. Mathem. and Computers in Simulation (in press) DOI: 10.1016/j.matcom.2013.11.006 (link)ššš —-š NEXTš —-> |