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Publications in Math-Net.Ru |
Citations |
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2024 |
1. |
A. S. Kuleshov, M. M. Gadzhiev, “Stability of regular precessions of a body with a fixed point bounded by the ellipsoid of revolution in a flow of particles”, Avtomat. i Telemekh., 2024, no. 9, 59–76 |
2. |
A. S. Kuleshov, N. M. Vidov, “The transgression effect in the problem of a ball rolling in a hole”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 11:3 (2024), 549–556 |
3. |
A. S. Kuleshov, A. A. Shishkov, “Integrability by quadratures of the problem of rolling motion of a heavy homogeneous ball on a surface of revolution of the second order”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 11:2 (2024), 347–353 |
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2023 |
4. |
M. M. Gadzhiev, A. S. Kuleshov, “Necessary conditions for existence of an additional integral in the problem on motion of a solid body with a fixed point in the flow of particles bounded by an ellipsoid revolution surface”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2023, no. 2, 40–46 ; Moscow University Mechanics Bulletin, 78:2 (2023), 36–41 |
5. |
A. S. Kuleshov, N. M. Vidov, “Transgression effect in the problem of motion of a rod on a cylinder”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 10:3 (2023), 568–580 |
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2022 |
6. |
M. M. Gadzhiev, A. S. Kuleshov, “Nonintegrability of the Problem of the Motion
of an Ellipsoidal Body with a Fixed Point
in a Flow of Particles”, Rus. J. Nonlin. Dyn., 18:4 (2022), 629–637 |
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7. |
M. M. Gadzhiev, A. S. Kuleshov, “On the motion of a rigid body with a fixed point in a flow of particles”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2022, no. 3, 58–68 ; Moscow University Mechanics Bulletin, 77:3 (2022), 75–86 |
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8. |
A. S. Kuleshov, M. M. Gadzhiev, “The problem of motion of a rigid body with a fixed point in a flow of particles”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:3 (2022), 550–560 ; Vestn. St. Petersbg. Univ., Math., 9:3 (2022), 550–560 |
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9. |
A. S. Kuleshov, E. N. Pikunova, “Analytical research of the hopf bifurcation in the problem of motion of the rattleback”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 9:2 (2022), 305–316 ; Vestn. St. Petersbg. Univ., Math., 9:2 (2022), 305–315 |
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2021 |
10. |
A. S. Kuleshov, “Application of the Kovacic algorithm to the study of the motion of a heavy rigid body with a fixed point in the Hess case”, Itogi Nauki i Tekhniki. Sovrem. Mat. Pril. Temat. Obz., 202 (2021), 10–42 |
11. |
A. S. Kuleshov, D. V. Solomina, “Liouvillian solutions in the problem of rolling of a heavy homogeneous ball on a surface of revolution”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 8:4 (2021), 653–660 ; Vestn. St. Petersbg. Univ., Math., 8:4 (2021), 405–410 |
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2020 |
12. |
A. S. Kuleshov, I. I. Ulyatovskaya, “The transgression effect in the problem of motion of an almost holonomic pendulum”, Vestnik of Saint Petersburg University. Mathematics. Mechanics. Astronomy, 7:2 (2020), 356–361 |
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2018 |
13. |
M. M. Gadzhiev, A. S. Kuleshov, A. I. Bukanov, “Geometric Constraints in the Problem of Motion of a Two-Wheeled Ripstik Skateboard”, Itogi Nauki i Tekhniki. Sovrem. Mat. Pril. Temat. Obz., 148 (2018), 20–24 ; Journal of Mathematical Sciences, 248:4 (2020), 392–396 |
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14. |
A. S. Kuleshov, G. A. Chernyakov, “Investigation of the Motion of a Heavy Body of Revolution on a Perfectly Rough Plane by the Kovacic Algorithm”, Itogi Nauki i Tekhniki. Sovrem. Mat. Pril. Temat. Obz., 145 (2018), 3–85 ; Journal of Mathematical Sciences, 245:4 (2020), 417–497 |
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2017 |
15. |
Alexander V. Karapetyan, Alexander S. Kuleshov, “The Routh theorem for mechanical systems with unknown first integrals”, Theor. Appl. Mech., 44:2 (2017), 169–180 |
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2015 |
16. |
M. O. Itzkovich, A. S. Kuleshov, “Horizontal motion of a body consisting of two symmetric plates”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2015, no. 2, 36–41 ; Moscow University Mechanics Bulletin, 70:2 (2015), 28–33 |
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2013 |
17. |
S. V. Ifraimov, A. S. Kuleshov, “On the Motion of Chaplygin’s Sledge over Convex Surface”, Avtomat. i Telemekh., 2013, no. 8, 80–90 ; Autom. Remote Control, 74:8 (2013), 1297–1306 |
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2011 |
18. |
A. S. Kuleshov, M. Hubbard, D. L. Peterson, G. Gede, “Motion of the oloid on the horizontal plane”, Nelin. Dinam., 7:4 (2011), 825–835 |
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19. |
Alexander S. Kuleshov, D. V. Treschev, T. B. Ivanova, O. S. Naimushina, “A rigid cylinder on a viscoelastic plane”, Nelin. Dinam., 7:3 (2011), 601–625 |
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2008 |
20. |
A. V. Kremnev, A. S. Kuleshov, “Nonlinear dynamics of a skateboard model with three degrees of freedom”, Nelin. Dinam., 4:3 (2008), 341–356 |
21. |
A. V. Kremnev, A. S. Kuleshov, “Nonlinear dynamics of a simplified skateboard model”, Nelin. Dinam., 4:3 (2008), 323–340 |
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2007 |
22. |
A. S. Kuleshov, “Further Development of the Mathematical Model of a Snakeboard”, Regul. Chaotic Dyn., 12:3 (2007), 321–334 |
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2006 |
23. |
A. S. Kuleshov, “Mathematical model of the snakeboard”, Matem. Mod., 18:5 (2006), 37–48 |
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2003 |
24. |
A. S. Kuleshov, “On the first integrals of equations of motion of a symmetric gyrostat on a perfectly rough plane”, Keldysh Institute preprints, 2003, 047, 24 pp. |
25. |
E. I. Kugushev, A. S. Kuleshov, V. A. Mel'dianova, “On invariant manifolds of linear integrals of mechanic systems”, Keldysh Institute preprints, 2003, 015, 20 pp. |
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2002 |
26. |
A. S. Kuleshov, “On the first integrals of equation of motion of a heavy rotational symmetric body on a perfectly rough plane”, Keldysh Institute preprints, 2002, 068 |
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2001 |
27. |
A. S. Kuleshov, “On the Generalized Chaplygin Integral”, Regul. Chaotic Dyn., 6:2 (2001), 227–232 |
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2000 |
28. |
A. S. Kuleshov, “On the Jellett–Chaplygin integral”, Vestnik Moskov. Univ. Ser. 1. Mat. Mekh., 2000, no. 2, 54–56 |
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2002 |
29. |
A. V. Karapetyan, A. S. Kuleshov, “Steady Motions of Nonholonomic Systems”, Regul. Chaotic Dyn., 7:1 (2002), 81–117 |
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Presentations in Math-Net.Ru |
1. |
Application of the Kovacic algorithm to study the problem of the motion of a heavy gyrostat with a fixed point in the integrable Hess case A. S. Kuleshov
Dynamics days in Sirius. On the occasion of academician Dmitry V. Treschev’s anniversary October 29, 2024 15:40
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2. |
Точные решения некоторых задач динамики твердого тела A. S. Kuleshov
Hamiltonian systems and statistical mechanics September 30, 2024 16:30
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3. |
Применение алгоритма Ковачича для исследования задачи о движении тяжелого гиростата с неподвижной точкой в
интегрируемом случае Гесса A. S. Kuleshov
Scientic seminar «Actual problems of geometry and mechanics » named after Prof. V.V. Trofimov April 12, 2024 18:30
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4. |
Нелинейные эффекты вблизи многообразия равновесий неголономных систем A. S. Kuleshov, N. M. Vidov
Hamiltonian systems and statistical mechanics March 18, 2024 16:30
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5. |
О ДВИЖЕНИИ ТЕЛА С НЕПОДВИЖНОЙ ТОЧКОЙ В ПОТОКЕ ЧАСТИЦ A. S. Kuleshov, M. M. Gadzhiev
Hamiltonian systems and statistical mechanics October 9, 2023 16:30
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6. |
Integrability of the problem of motion of a body with a fixed point in a flow of particles M. M. Gadzhiev, A. S. Kuleshov
Cohomological geometry of differential equations May 31, 2023 19:20
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7. |
Нелинейные эффекты вблизи многообразия равновесий неголономных систем A. S. Kuleshov,
Modern geometry methods May 17, 2023 19:00
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8. |
Введение в мини-курс «Интегрируемость гамильтоновых систем» A. S. Kuleshov
School of Young Mechanics and Mathematicians SYMM 2022 October 3, 2022 11:00
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9. |
On the motion of a body with a fixed point in a particle flow A. S. Kuleshov, M. M. Gadzhiev
V.V. Rumyantsev Seminar on Analytical Mechanics and Stability Theory April 20, 2022 17:00
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10. |
О приведении некоторых систем механики к системам Лиувилля A. S. Kuleshov,
Modern geometry methods March 30, 2022 19:00
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11. |
О движении твердого тела с неподвижной точкой в потоке частиц A. S. Kuleshov, M. M. Gadzhiev
Differential geometry and applications December 6, 2021 16:45
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12. |
Existence of Liouvillian solutions in the problem of motion of a heavy rigid body with a fixed point in the Hess case A. S. Kuleshov
Regular and Chaotic Dynamics November 25, 2021 16:50
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13. |
Применение алгоритма Ковачича для исследования движения тяжелого твердого тела с неподвижной точкой в случае Гесса B. S. Bardin, A. S. Kuleshov
Differential geometry and applications November 9, 2020 17:45
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14. |
Применение алгоритма Ковачича для исследования движения тяжелого твердого тела с неподвижной точкой в случае Гесса A. S. Kuleshov
Hamiltonian systems and statistical mechanics October 26, 2020 16:45
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15. |
Исследование задачи о движении тяжёлого тела вращения по шероховатой
плоскости методом Ковачича A. S. Kuleshov
Differential geometry and applications March 16, 2015 16:45
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16. |
Исследование задачи о движении тяжелого тела вращения по шероховатой плоскости методом Ковачича A. S. Kuleshov
Modern geometry methods February 25, 2015 18:30
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