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Zemlyanaya, Elena Valerievna

Statistics Math-Net.Ru
Total publications: 21
Scientific articles: 21

Number of views:
This page:531
Abstract pages:5974
Full texts:2223
References:466
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https://www.mathnet.ru/eng/person27359
List of publications on Google Scholar
List of publications on ZentralBlatt
https://mathscinet.ams.org/mathscinet/MRAuthorID/625433

Publications in Math-Net.Ru Citations
2020
1. A. V. Volokhova, E. V. Zemlyanaya, V. V. Kachalov, V. S. Rikhvitsky, “Simulation of the gas condensate reservoir depletion”, Computer Research and Modeling, 12:5 (2020),  1081–1095  mathnet 1
2019
2. P. Kh. Atanasova, S. A. Panayotova, I. R. Rahmonov, Yu. M. Shukrinov, E. V. Zemlyanaya, M. V. Bashashin, “Periodicity in the appearance of intervals of the reversal of the magnetic moment of a $\phi_0$ Josephson junction”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:11 (2019),  736–740  mathnet  elib; JETP Letters, 110:11 (2019), 722–726  isi  scopus 17
2018
3. A. V. Volokhova, E. V. Zemlyanaya, V. V. Kachalov, V. N. Sokotushchenko, V. S. Rikhvitsky, “Numerical investigation of the gas-condensate mixture flow in a porous medium”, Computer Research and Modeling, 10:2 (2018),  209–219  mathnet 1
2016
4. M. V. Bashashin, E. V. Zemlyanaya, I. R. Rahmonov, Yu. M. Shukrinov, P. Kh. Atanasova, A. V. Volokhova, “Numerical approach and parallel implementation for computer simulation of stacked long josephson junctions”, Computer Research and Modeling, 8:4 (2016),  593–604  mathnet 8
2015
5. E. I. Zhabitskaya, E. V. Zemlyanaya, M. A. Kiselev, “Numerical analysis of SAXS-data from vesicular systems by asynchronous differential evolution method”, Matem. Mod., 27:7 (2015),  58–64  mathnet  mathscinet  elib 3
6. A. V. Volokhova, E. V. Zemlyanaya, V. S. Rikhvitsky, “A parallel optimization method for numerical solving the system of polaron equations using the partitioning algorithm”, Num. Meth. Prog., 16:2 (2015),  281–289  mathnet
2014
7. A. V. Volokhova, E. V. Zemlyanaya, V. D. Lakhno, I. V. Amirkhanov, I. V. Puzynin, T. P. Puzynina, “Numerical investigation of photoexcited polaron states in water”, Computer Research and Modeling, 6:2 (2014),  253–261  mathnet 1
2012
8. E. I. Zhabitskaya, M. V. Zhabitsky, E. V. Zemlyanaya, K. V. Lukyanov, “Calculation of the parameters of microscopic optical potential for pion-nuclei elastic scattering by Asynchronous Differential Evolution algorithm”, Computer Research and Modeling, 4:3 (2012),  585–595  mathnet 2
9. B. Batgerel, E. V. Zemlyanaya, I. V. Puzynin, “NINE: computer code for numerical solution of the boundary problems for nonlinear differential equations on the basis of CANM”, Computer Research and Modeling, 4:2 (2012),  315–324  mathnet
2011
10. N. V. Alekseeva, E. V. Zemlyanaya, “Breathers in a damped–driven nonlinear Schrödinger equation”, TMF, 168:1 (2011),  4–12  mathnet  mathscinet; Theoret. and Math. Phys., 168:1 (2011), 858–864  isi  scopus 2
2010
11. P. Kh. Atanasova, T. L. Boyadjiev, Yu. M. Shukrinov, E. V. Zemlyanaya, “Numerical modeling of long Josephson junctions in the frame of double sine-Gordon equation”, Matem. Mod., 22:11 (2010),  49–64  mathnet; Math. Models Comput. Simul., 3:3 (2011), 389–398  scopus 4
2009
12. E. V. Zemlyanaya, N. V. Alekseeva, “Oscillating solitons of the driven, damped nonlinear Schrödinger equation”, TMF, 159:3 (2009),  536–544  mathnet  mathscinet  zmath; Theoret. and Math. Phys., 159:3 (2009), 870–876  isi  scopus 14
13. I. V. Amirkhanov, E. V. Zemlyanaya, V. D. Lakhno, D. Z. Muzafarov, I. V. Puzynin, T. P. Puzynina, Z. A. Sharipov, “Numerical investigation of the dynamics of polaron states”, Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2009, no. 13,  5–14  mathnet  elib
2005
14. E. V. Zemlyanaya, I. V. Barashenkov, “Numerical study of the travelling solitons in parametrically driven, damped nonlinear Shcrödinger equation”, Matem. Mod., 17:1 (2005),  65–78  mathnet  mathscinet  zmath 3
2004
15. E. V. Zemlyanaya, I. V. Barashenkov, “Numerical study of multisoliton complexes in the damped driven nonlinear Schrödinger equation”, Matem. Mod., 16:10 (2004),  3–14  mathnet  mathscinet  zmath 6
2000
16. I. V. Amirkhanov, E. V. Zemlyanaya, I. V. Puzynin, T. P. Puzynina, “Two-body relativistic equations for the bound-state problem with coulomb and linear potentials”, Matem. Mod., 12:12 (2000),  79–96  mathnet  zmath
1997
17. I. V. Amirkhanov, E. V. Zemlyanaya, I. V. Puzynin, T. P. Puzynina, T. A. Strizh, “On numerical investigation of eigenvalue problems in momentum space”, Matem. Mod., 9:10 (1997),  111–119  mathnet  zmath 1
18. I. V. Amirkhanov, E. V. Zemlyanaya, V. D. Lakhno, I. V. Puzynin, T. P. Puzynina, T. A. Strizh, “Numerical investigation of quantumfield model of strong-coupling binucleon”, Matem. Mod., 9:8 (1997),  51–59  mathnet  zmath 1
19. I. V. Amirkhanov, E. V. Zemlyanaya, V. N. Pervushin, I. V. Puzynin, T. P. Puzynina, T. A. Strizh, “Numerical analysis of a quarkonium model at finite temperature”, Matem. Mod., 9:3 (1997),  73–90  mathnet  zmath 1
1995
20. I. V. Amirkhanov, E. V. Zemlyanaya, I. V. Puzynin, T. P. Puzynina, T. A. Strizh, “On some problems of numerical investigation of the quarkonium model with the coulomb and linear potentials”, Matem. Mod., 7:7 (1995),  34–48  mathnet  zmath 1
1994
21. I. V. Amirkhanov, E. V. Zemlyanaya, V. N. Pervushin, I. V. Puzynin, T. P. Puzynina, N. A. Sarikov, T. A. Strizh, “Numerical investigation of Schwinger–Dyson and Bhete–Salpeter equations with Gauss potential at the framework of the quarkonium model”, Matem. Mod., 6:7 (1994),  55–70  mathnet  zmath 1

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