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Ender, Irina Alekseevna

Statistics Math-Net.Ru
Total publications: 27
Scientific articles: 27

Number of views:
This page:627
Abstract pages:7821
Full texts:3825
Speciality: 01.02.05 (Mechanics of fluids, gases and plasmas)

https://www.mathnet.ru/eng/person29276
https://wiki.spbu.ru/Ender_Irina_Alekseevna
List of publications on Google Scholar
https://mathscinet.ams.org/mathscinet/MRAuthorID/197290
https://elibrary.ru/author_items.asp?authorid=11159

Publications in Math-Net.Ru Citations
2018
1. Ë. À. Bakaleynikov, È. A. Tropp, E. Yu. Flegontova, I. A. Ender, “Kernels of the direct collision integral of the nonlinear Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 88:10 (2018),  1492–1501  mathnet  elib; Tech. Phys., 63:10 (2018), 1445–1454 2
2017
2. I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, A. B. Gerasimenko, “Isotropic matrix elements of the collision integral for the Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 87:9 (2017),  1297–1302  mathnet  elib; Tech. Phys., 62:9 (2017), 1307–1312 1
3. I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, A. B. Gerasimenko, “Recurrent procedure for constructing nonisotropic matrix elements of the collision integral of the nonlinear Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 87:8 (2017),  1136–1143  mathnet  elib; Tech. Phys., 62:8 (2017), 1148–1155 3
2016
4. A. I. Ender, I. A. Ender, A. B. Gerasimenko, “Kinetics of ion admixture in a native gas in an external harmonic electric field”, Zhurnal Tekhnicheskoi Fiziki, 86:11 (2016),  35–42  mathnet  elib; Tech. Phys., 61:11 (2016), 1638–1646 2
5. Ë. À. Bakaleynikov, E. Yu. Flegontova, A. I. Ender, I. A. Ender, “Recurrence procedure for calculating kernels of the nonlinear collision integral of the Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 86:4 (2016),  10–20  mathnet  elib; Tech. Phys., 61:4 (2016), 486–497 3
2015
6. A. I. Ender, I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, “Protokernel of the inverse collision integral of the Boltzmann equation for an isotropic scattering cross section”, Zhurnal Tekhnicheskoi Fiziki, 85:12 (2015),  12–20  mathnet; Tech. Phys., 60:12 (2015), 1744–1752
7. A. I. Ender, I. A. Ender, A. B. Gerasimenko, “Evolution of an ion admixture in an AC RF electric field”, Zhurnal Tekhnicheskoi Fiziki, 85:1 (2015),  15–25  mathnet  elib; Tech. Phys., 60:1 (2015), 14–25 1
8. Ë. À. Bakaleynikov, È. A. Tropp, E. Yu. Flegontova, A. I. Ender, I. A. Ender, “The collision integral kernels of the scalar nonlinear Boltzmann equation for pseudopower potentials”, Zhurnal Tekhnicheskoi Fiziki, 85:1 (2015),  10–14  mathnet  elib; Tech. Phys., 60:1 (2015), 8–13 7
2014
9. Ë. À. Bakaleynikov, E. Yu. Flegontova, A. I. Ender, I. A. Ender, “Construction of the collision integral kernel for the nonlinear Boltzmann equation from its matrix elements”, Zhurnal Tekhnicheskoi Fiziki, 84:6 (2014),  10–20  mathnet  elib; Tech. Phys., 59:6 (2014), 796–807
2013
10. A. I. Ender, I. A. Ender, A. B. Gerasimenko, “Evolution of the ion velocity distribution after sudden turn-on of a periodic electric field: A charge exchange model”, Zhurnal Tekhnicheskoi Fiziki, 83:7 (2013),  6–15  mathnet  elib; Tech. Phys., 58:7 (2013), 936–945 2
2012
11. A. I. Ender, I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, “Construction of kernels of the nonlinear collision integral in the Boltzmann equation using laplace transformation”, Zhurnal Tekhnicheskoi Fiziki, 82:6 (2012),  1–8  mathnet  elib; Tech. Phys., 57:6 (2012), 735–742 6
12. A. I. Ender, I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, “Construction of kernels $G^l_{l,0}$ of the nonlinear collision integral in the Boltzmann equation for arbitrary $l$”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 38:15 (2012),  40–48  mathnet  elib; Tech. Phys. Lett., 38:8 (2012), 706–710 4
2011
13. A. I. Ender, I. A. Ender, Ë. À. Bakaleynikov, E. Yu. Flegontova, “Matrix elements and kernels of the collision integral in the Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 81:4 (2011),  24–34  mathnet  elib; Tech. Phys., 56:4 (2011), 452–463 8
14. A. I. Ender, I. A. Ender, “Analytical representation of linear kernels in collision integral of Boltzmann equation for maxwellian molecules”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 37:5 (2011),  9–14  mathnet  elib; Tech. Phys. Lett., 37:3 (2011), 197–199 4
2010
15. A. I. Ender, I. A. Ender, Ë. À. Bakaleynikov, “Some general properties of the nonlinear collision integral in the Boltzmann equation”, Zhurnal Tekhnicheskoi Fiziki, 80:10 (2010),  12–21  mathnet  elib; Tech. Phys., 55:10 (2010), 1400–1410 12
16. A. I. Ender, I. A. Ender, A. B. Gerasimenko, “Kinetics of ions in a neutral gas upon abrupt application of an electric field. II: Various models of interaction”, Zhurnal Tekhnicheskoi Fiziki, 80:2 (2010),  18–28  mathnet  elib; Tech. Phys., 55:2 (2010), 176–187 8
17. A. I. Ender, I. A. Ender, “Kinetics of ions in a neutral gas upon abrupt application of an electric field. I. CEM model”, Zhurnal Tekhnicheskoi Fiziki, 80:2 (2010),  8–17  mathnet  elib; Tech. Phys., 55:2 (2010), 166–175 7
2009
18. Ë. À. Bakaleynikov, E. Yu. Flegontova, A. I. Ender, I. A. Ender, “Calculation of the linear kernel of the collision integral for the hard-sphere potential”, Zhurnal Tekhnicheskoi Fiziki, 79:2 (2009),  22–35  mathnet  elib; Tech. Phys., 54:2 (2009), 182–196 5
2006
19. Ë. À. Bakaleynikov, A. I. Ender, I. A. Ender, “Calculation of the collision integral linear kernel for Maxwellian molecules in the isotropic case”, Zhurnal Tekhnicheskoi Fiziki, 76:9 (2006),  6–15  mathnet  elib; Tech. Phys., 51:9 (2006), 1110–1120 3
2003
20. A. I. Ender, I. A. Ender, “Some general properties of collision integral. Oriented particles”, Mat. Model., 15:7 (2003),  93–97  mathnet  zmath
21. A. I. Ender, I. A. Ender, “Investigation of a collision integral for oriented particles”, Sib. Zh. Ind. Mat., 6:3 (2003),  154–160  mathnet  mathscinet  zmath
22. A. I. Ender, I. A. Ender, “Matrix elements and kernels of nonlinear collision integral”, Sib. Zh. Ind. Mat., 6:2 (2003),  156–164  mathnet  zmath 7
2002
23. A. I. Ender, I. A. Ender, M. B. Lutenko, “Development of the nonlinear moment method for solving the Boltzmann equation in axially symmetric case”, Mat. Model., 14:12 (2002),  98–104  mathnet  zmath 1
1999
24. A. I. Ender, I. A. Ender, M. B. Lutenko, “Development of the nonlinear moment method for solving relaxation problems”, Mat. Model., 11:3 (1999),  39–44  mathnet 1
1988
25. I. N. Kolyshkin, A. I. Ender, I. A. Ender, “Numerical solution of isotropic relaxation problems by the method of Maxwellian expansion”, Zh. Vychisl. Mat. Mat. Fiz., 28:6 (1988),  901–916  mathnet  mathscinet  zmath; U.S.S.R. Comput. Math. Math. Phys., 28:3 (1988), 187–198 3
1984
26. A. I. Ender, I. A. Ender, “FORMATION OF DISTRIBUTION-FUNCTIONS IN TEMPERATURE RELAXATION PROBLEMS”, Zhurnal Tekhnicheskoi Fiziki, 54:9 (1984),  1671–1680  mathnet
1970
27. I. A. Ender, A. I. Ender, “On a representation of Boltzmann equation”, Dokl. Akad. Nauk SSSR, 193:1 (1970),  61–64  mathnet 2

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