Resonances and stability of extra-solar planetary systems (2005)
- Authors:
- USP affiliated authors: MELLO, SYLVIO FERRAZ DE - IAG ; MICHTCHENKO, TATIANA ALEXANDROVNA - IAG
- Unidade: IAG
- Subjects: PLANETAS; ESTABILIDADE DE SISTEMAS; ASTRONOMIA
- Language: Inglês
- Imprenta:
- Publisher: Cambridge University Press
- Publisher place: Cambridge
- Date published: 2005
- Source:
- Título do periódico: Dynamics of populations of planetary systems. Proceedings
- Conference titles: IAU Colloquium
-
ABNT
BEAUGÉ, C et al. Resonances and stability of extra-solar planetary systems. 2005, Anais.. Cambridge: Cambridge University Press, 2005. . Acesso em: 23 abr. 2024. -
APA
Beaugé, C., Callegari Júnior, N., Ferraz Mello, S., & Michtchenko, T. A. (2005). Resonances and stability of extra-solar planetary systems. In Dynamics of populations of planetary systems. Proceedings. Cambridge: Cambridge University Press. -
NLM
Beaugé C, Callegari Júnior N, Ferraz Mello S, Michtchenko TA. Resonances and stability of extra-solar planetary systems. Dynamics of populations of planetary systems. Proceedings. 2005 ;[citado 2024 abr. 23 ] -
Vancouver
Beaugé C, Callegari Júnior N, Ferraz Mello S, Michtchenko TA. Resonances and stability of extra-solar planetary systems. Dynamics of populations of planetary systems. Proceedings. 2005 ;[citado 2024 abr. 23 ] - Planetary masses and orbital parameters from radial velocity measurements
- Dynamical maps of the inner asteroid belt
- Júpiters, Netunos e super-terras quentes
- Detectability and error estimation in orbital fits of resonant extrasolar planets
- Retrato dinâmico do cinturão asteroidal interior
- Detectability and error estimation in orbital fits of resonant extrasolar planets
- Dynamics of two planets in the 2:1 and 3:2 mean motion resonances
- On the depletion of the Hecuba gap in the asteroidal belt
- Origin of the Basaltic Asteroid 1459 Magnya: A Dynamical and Mineralogical Study of the Outer Main Belt
- Dynamic portrait of the planetary 2/1 mean-motion resonace: II. systems with a more massive inner planet
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