Source: High-mass x-ray binaries: illuminating the passage from massive binaries to merging compact objects. Conference titles: IAU SYMPOSIUM. Unidade: IAG
Subjects: ETA CARINAE, ESTRELAS
ABNT
MADURA, Thomas I e GULL, Theodore e DAMINELI NETO, Augusto. 3D time-dependent hydrodynamical and radiative transfer modeling of Eta Carinae’s innermost fossil colliding wind structures. 2017, Anais.. Cambridge: Cambridge University Press, 2017. Disponível em: https://doi.org/10.1017/S1743921318007949. Acesso em: 01 maio 2026.APA
Madura, T. I., Gull, T., & Damineli Neto, A. (2017). 3D time-dependent hydrodynamical and radiative transfer modeling of Eta Carinae’s innermost fossil colliding wind structures. In High-mass x-ray binaries: illuminating the passage from massive binaries to merging compact objects. Cambridge: Cambridge University Press. doi:10.1017/S1743921318007949NLM
Madura TI, Gull T, Damineli Neto A. 3D time-dependent hydrodynamical and radiative transfer modeling of Eta Carinae’s innermost fossil colliding wind structures [Internet]. High-mass x-ray binaries: illuminating the passage from massive binaries to merging compact objects. 2017 ;[citado 2026 maio 01 ] Available from: https://doi.org/10.1017/S1743921318007949Vancouver
Madura TI, Gull T, Damineli Neto A. 3D time-dependent hydrodynamical and radiative transfer modeling of Eta Carinae’s innermost fossil colliding wind structures [Internet]. High-mass x-ray binaries: illuminating the passage from massive binaries to merging compact objects. 2017 ;[citado 2026 maio 01 ] Available from: https://doi.org/10.1017/S1743921318007949

