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Publications in Math-Net.Ru |
Citations |
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2025 |
| 1. |
M. M. Norkin, L. A. Shakurova, E. V. Kustova, “Numerical solution of Couette problem for monoatomic gas flow in slip regime”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 12:2 (2025), 393–406 |
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2024 |
| 2. |
Z. M. Maksudova, A. S. Savelev, E. V. Kustova, “Prediction of state-to-state dissociation rate coefficients using machine learning algorithms”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 11:4 (2024), 782–793 |
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2023 |
| 3. |
S. A. Batalov, E. V. Kustova, “Modeling of nonequilibrium processes behind a shock wave in a mixture of carbon dioxide and argon”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 10:2 (2023), 277–288 ; Vestn. St. Petersbg. Univ., Math., 10:2 (2023), 277–288 |
3
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2022 |
| 4. |
V. A. Istomin, E. V. Kustova, K. A. Prutko, “Heat and radiative fluxes in strongly nonequilibrium flows behind shock waves”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:4 (2022), 705–719 ; Vestn. St. Petersbg. Univ., Math., 9:4 (2022), 461–470 |
3
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| 5. |
V. I. Gorikhovskii, E. V. Kustova, “Neural network approach in modelling vibrational kinetics of carbon dioxide”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:4 (2022), 665–678 ; Vestn. St. Petersbg. Univ., Math., 9:4 (2022), 434–442 |
8
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| 6. |
D. S. Kravchenko, E. V. Kustova, M. Yu. Melnik, “Modeling of state-to-state oxygen kinetics behind reflected shock waves”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:3 (2022), 426–439 ; Vestn. St. Petersbg. Univ., Math., 9:3 (2022), 426–439 |
9
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| 7. |
L. A. Shakurova, E. V. Kustova, “Boundary conditions for fluid-dynamic parameters of a single-component gas flow with vibrational deactivation on a solid wall”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:2 (2022), 366–377 ; Vestn. St. Petersbg. Univ., Math., 9:2 (2022), 366–377 |
5
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| 8. |
M. А. Bushmakova, E. V. Kustova, “Modeling vibrational relaxation rate using machine learning methods”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:1 (2022), 113–125 ; Vestn. St. Petersbg. Univ., Math., 9:1 (2022), 87–95 |
13
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2020 |
| 9. |
I. V. Alekseev, E. V. Kustova, “Numerical simulations of shock waves in viscous carbon dioxide flows using finite volume method”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 7:3 (2020), 500–510 ; Vestn. St. Petersbg. Univ., Math., 7:3 (2020), 344–350 |
9
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2018 |
| 10. |
A. I. Mishina, E. V. Kustova, “Kinetics of co molecules taking into account resonant VE exchanges in a nonequilibrium nozzle flow”, Zhurnal Tekhnicheskoi Fiziki, 88:3 (2018), 342–349 ; Tech. Phys., 63:3 (2018), 331–338 |
2
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2010 |
| 11. |
Yu. D. Shevelev, N. G. Syzranova, E. V. Kustova, E. A. Nagnibeda, “Numerical simulation of hypersonic flows around space vehicles descending in the Martian atmosphere”, Mat. Model., 22:9 (2010), 23–50 ; Math. Models Comput. Simul., 3:2 (2011), 205–224 |
11
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1999 |
| 12. |
M. Capitelli, G. Colonna, D. Giordano, E. V. Kustova, E. A. Nagnibeda, M. Tuttafesta, D. Bruno, “The influence of state-to-state kinetics on transport properties in a nozzle flow”, Mat. Model., 11:3 (1999), 45–58 |
| 13. |
E. V. Kustova, E. A. Nagnibeda, “State to state kinetics of gas flows”, Mat. Model., 11:2 (1999), 89–104 |
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2023 |
| 14. |
Yu. N. Voroshilova, V. A. Istomin, O. V. Kunova, E. V. Kustova, E. A. Nagnibeda, M. A. Rydalevskaya, “Scientific school of non-equilibrium aeromechanics in Saint Petersburg State University”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 10:3 (2023), 406–456 |
| 15. |
E. V. Kustova, A. I. Nazarov, “Scientific schools of mathematics, mechanics, astronomy of St Petersburg University: on the 300th anniversary of St. Petersburg State University”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 10:2 (2023), 185–186 |
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2021 |
| 16. |
A. M. Sergeev, Yu. Yu. Balega, I. A. Shcherbakov, E. B. Aleksandrov, V. M. Andreev, A. L. Aseev, A. M. Bykov, I. V. Grekhov, V. V. Gusarov, A. V. Dvurechenskii, A. V. Ivanchik, E. L. Ivchenko, N. N. Kazansky, A. A. Kaplyanskii, V. V. Kveder, N. N. Kolachevsky, S. G. Konnikov, P. S. Kop'ev, Z. F. Krasil'nik, A. G. Litvak, S. V. Medvedev, Yu. V. Natochin, V. N. Parmon, E. E. Son, R. A. Suris, V. B. Timofeev, V. V. Ustinov, V. M. Ustinov, S. V. Ivanov, A. N. Aleshin, M. V. Arkhipov, P. N. Brunkov, A. I. Veinger, A. K. Vershovskii, E. A. Volkova, S. A. Gurevich, V. K. Gusev, V. A. Dergachev, A. G. Deryagin, O. V. Dudnik, V. V. Zhdanov, N. L. Istomina, A. M. Kalashnikova, E. S. Kornilova, E. V. Kustova, A.A. Lebedev, E.V. Lipatova, A. V. Nashchekin, R. V. Parfen'ev, M. P. Petrov, G. V. Skornyakov, E. M. Smirnov, G. S. Sokolovskii, A. V. Solomonov, M. G. Sushkova, E. I. Terukov, E. A. Chaban, O. L. Chagunava, A. P. Shergin, E. V. Shestopalova, M. L. Shmatov, A. A. Shmidt, V. L. Shubin, “Андрей Георгиевич Забродский, к 75-летию со дня рождения”, Zhurnal Tekhnicheskoi Fiziki, 91:6 (2021), 893–894 |
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