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Kashchenko, Nikolay M.

Statistics Math-Net.Ru
Total publications: 11
Scientific articles: 11

Number of views:
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Abstract pages:2171
Full texts:593
References:364

https://www.mathnet.ru/eng/person51409
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Publications in Math-Net.Ru Citations
2024
1. N. M. Kashchenko, S. A. Ishanov, E. V. Zubkov, L. V. Zinin, “Gradient-drift instability research in the region of developed equatorial plasma bubbles”, Matem. Mod., 36:3 (2024),  87–95  mathnet
2023
2. N. M. Kashchenko, S. A. Ishanov, E. V. Zubkov, L. V. Zinin, “Three-dimensional numerical transfer model using a monotonized Z-scheme”, Zh. Vychisl. Mat. Mat. Fiz., 63:9 (2023),  1553  mathnet  elib; Comput. Math. Math. Phys., 63:9 (2023), 1700–1707
2022
3. N. M. Kashchenko, S. A. Ishanov, E. V. Zubkov, V. N. Khudenko, “Determihation of gradient-drift instability parameters under conditions of multiple plasma bubbles”, Matem. Mod., 34:12 (2022),  116–128  mathnet; Math. Models Comput. Simul., 15:4 (2023), 615–622
2021
4. N. M. Kashchenko, S. A. Ishanov, E. V. Zubkov, “Numerical model of transport in problems of instabilities of the Earth's low-latitude ionosphere using a two-dimensional monotonized Z-scheme”, Computer Research and Modeling, 13:5 (2021),  1011–1023  mathnet 1
2020
5. N. M. Kashchenko, S. A. Ishanov, L. V. Zinin, S. V. Matsievsky, “A numerical method for solving two-dimensional convection equation based on the monotonized z-scheme for Earth ionosphere simulation”, Computer Research and Modeling, 12:1 (2020),  43–58  mathnet 2
6. N. M. Kashchenko, S. A. Ishanov, S. V. Matsievsky, “A numerical study of the gradient-drift instability growth rate at the fronts of the equatorial plasma bubbles”, Matem. Mod., 32:11 (2020),  129–140  mathnet; Math. Models Comput. Simul., 13:4 (2021), 623–630 3
2019
7. N. M. Kashchenko, S. A. Ishanov, S. V. Matsievsky, “Simulation equatorial plasma bubbles started from plasma clouds”, Computer Research and Modeling, 11:3 (2019),  463–476  mathnet 1
2018
8. N. M. Kashchenko, S. A. Ishanov, S. V. Matsievsky, “The Rayleigh–Taylor instability development in the equatorial ionosphere and an initial irregularities geometry”, Matem. Mod., 30:9 (2018),  21–32  mathnet; Math. Models Comput. Simul., 11:3 (2019), 341–348 8
2017
9. N. M. Kashchenko, S. A. Ishanov, S. V. Matsievsky, “Efficient algorithms of numerical simulation of middle-scale irregularities in the low-latitude ionosphere”, Matem. Mod., 29:4 (2017),  113–120  mathnet  elib; Math. Models Comput. Simul., 9:6 (2017), 742–748  scopus 2
2013
10. N. M. Kashchenko, M. A. Nikitin, “Anomalous diffusion simulation of the effects for drainage systems”, Matem. Mod., 25:12 (2013),  44–49  mathnet; Math. Models Comput. Simul., 6:4 (2014), 337–341  scopus
2009
11. O. A. Smirnov, N. M. Kaschenko, “Long-wave processes in subpolyar termosphere in the conditions of magnetosphere storm”, Matem. Mod., 21:10 (2009),  123–128  mathnet

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