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Found 551 Documents (Results 1–100)

Quaternion methods and regular models of celestial mechanics and space flight mechanics: the use of Euler (Rodrigues-Hamilton) parameters to describe orbital (trajectory) motion. I: Review and analysis of methods and models and their applications. (English. Russian original) Zbl 07672587

Mech. Solids 57, No. 5, 961-983 (2022); translation from Izv. Ross. Akad. Nauk, Mekh. Tverd. Tela 2022, No. 5, 3-31 (2022).
MSC:  70F15
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On the Painlevé conjecture. (English) Zbl 1515.37003

Jerison, David (ed.) et al., Current developments in mathematics 2020. Papers based on selected lectures given at the current developments mathematics conference, Harvard University, Cambridge, MA, USA, January 2021. Somerville, MA: International Press. 157-206 (2022).
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Non-integrability of the Kepler and the two-body problems on the Heisenberg group. (English) Zbl 1489.37073

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Analytical computations in studying translational-rotational motion of a non-stationary triaxial body in the central gravitational field. (English) Zbl 07635847

Boulier, François (ed.) et al., Computer algebra in scientific computing. 22nd international workshop, CASC 2020, Linz, Austria, September 14–18, 2020. Proceedings. Cham: Springer. Lect. Notes Comput. Sci. 12291, 478-491 (2020).
MSC:  68W30
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Hamiltonian dynamics for the Kepler problem in a deformed phase space. (English) Zbl 1461.70019

Kielanowski, Piotr (ed.) et al., Geometric methods in physics XXXVII. Workshop and summer school, Białowieża, Poland, July 1–7, 2018. Dedicated to Daniel Sternheimer on the occasion of his 80th birthday. Cham: Birkhäuser. Trends Math., 34-48 (2019).
MSC:  70H06 70F05 53D55
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Nonlinear adiabatic evolution of quantum systems. Geometric phase and virtual magnetic monopole. (English) Zbl 1405.81009

Singapore: Springer (ISBN 978-981-13-2642-4/hbk; 978-981-13-2643-1/ebook). ix, 190 p. (2018).
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Testing of adaptive symplectic conservative numerical methods for solving the Kepler problem. (English. Russian original) Zbl 1402.65181

Comput. Math. Math. Phys. 58, No. 6, 863-880 (2018); translation from Zh. Vychisl. Mat. Mat. Fiz. 58, No. 6, 899-913 (2018).
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