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  1. Adarchenko V., Panov A., Voronin S., Klebanov I. Group classification of dynamics equations of self-gravitating gas // Communications in Nonlinear Science and Numerical Simulation. 2019. V. 76, P. 109–115. DOI: 10.1016/j.cnsns.2019.04.016​, indexing: Scopus Top10%.
  2. Tseilikman V., Dremencov E., Maslennikova E., Ishmatova A., Manukhina E., Downey H.F., Klebanov I., Tseilikman O., Komelkova M., Lapshin M.S., Vasilyeva M.V., Bornstein S.R., Perry S.W., Wong M.L., Licinio J., Ye-huda R., Ullmann E. Post-Traumatic Stress Disorder Chronification via Monoaminooxidase and Cortisol Metabolism // Hormone and Metabolic Research. 2019. 51(9). P. 618-622. DOI: 10.1055/a-0975-9268, indexing: Scopus Q2.
  3. Vasilieva M.V., Glukhova V.A., Grednovskaya E.V., Dydrov A.A., Klebanov I.I., Nikolaeva I.A., Nikolskaya K.Yu., Penner R.V., Tseilikman V.E. The light and the dark sides of the moon: Possibilities of Industry 4.0 for early non-invasive diagnosis of pathology and health-risks // Proceedings of the Joint IMEKO TC1-TC7-TC13-TC18 Symposium 2019, Saint Petersburg, Russia. DOI: 10.1088/1742-6596/1379/1/012070 , indexing Scopus Q4.
  4. Klebanov I., Panov A., Ivanov S., Maslova O. Group analysis of dynamics equations of self-gravitating polytropic gas // Communications in Nonlinear Science and Numerical Simulation. 2018. V. 59, P. 437–443. DOI: 10.1016/j.cnsns.2017.12.004​. (Indexing: Scopus Top10%)
  5. Skaldin O.A., Klebanov I.I., Timirov Yu.I., Basyrova E.R., Delev V.A. Cascade “Melting” of a Linear Disclination in Chiral Nematic Droplets // JETP Letters. 2018. V. 107(11), P. 695-698. DOI: 10.1134/S0021364018110139. (Indexing: Scopus Q2)
  6. .., .., .. // . 2017. № 4. . 215–220. [ PDF]
  7. Klebanov I., Startsun O., Ivanov S. Model of the Newtonian cosmology: Symmetries, invariant and partially invariant solutions // Communications in Nonlinear Science and Numerical Simulation. 2016. V. 39, P. 248 - 251. (DOI: 10.1016/j.cnsns.2016.02.029, indexing: Scopus Top10%)
  8. Klebanov I., Ivanov S. Group theoretical justification of a "simple" cosmological model // International Journal of Pure and Applied Mathematics. 2015. V. 105, No. 3. P. 377 - 381. [ PDF] (Indexing: Scopus)
  9. .., .., .., .. // . 2014. № 24. . 78-86. [ PDF]

1. .., .. . // , 2015, №5 (55). . 22-25

2. .., .., .. - 1 // , 2017, №2 (64). . 113-117

3. .., .., .. - 2 // , 2017, №3 (65). . 135-139

4. .., .., .. - 3 // , 2017, №6, .125-130

5. .., .. - // : . – 2014. 67- . : .. , .. , .. , 2014. . 68-71

6. .., .., .. « » // : . – 2015. 68- . : .. , .. , .. , 2015. . 33-36

7. .., .., .. , // : . – 2016. , 70- .. , .. , .. . -: . .. , 2016. .89-92

8. .., .., .. , // : . . . .. : , , 2017. . 69-71.

9. .., .., .. // , 2017, №4, .215-220

10. .., .., .. // , 1999, 69(7). . 29-32

11. Pershin V.K., Klebanov I.I. Liquid crystals: helical disclinations in a cylindrical capillary with nematic liquid crystals // , 2000, 45 (2), Pp. 340-342

12. Voinkova I.V., Ginchitskii N.N., Klebanov I.I., Pesin L.A., Gribov I.V., Kuznetsov V.L., Moskvina N.A., Evsyukov S.E. A model of radiation-induced degradation of the poly (vinylidene fluoride) surface during xps measurements // Polymer Degradation and Stability, 2005, 89 (3), Pp. 471-477

 




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