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Subgiants in NGC 188 reveal that rotationally induced mixing creates the main sequence Li-Dip. [PDF]
Sun Q +6 more
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Simulation of Dense Star Map in Deep Space Based on Gaia Catalogue. [PDF]
Li P, Bao G, Zhou Z, Gong J.
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Exploring central star variability of planetary nebulae using gaia photometry. [PDF]
NegmEldin MA, Ali A, Hamed GM, Essam A.
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Dose-dependent acute toxicity of chitosan nanoparticles with dual assessment of multisystem toxicopathology and oxidative stress biomarkers in Nile tilapia. [PDF]
Rabea A +5 more
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The drivers of massive star evolution
Science, 2023An elusive population of stripped binary stars is finally ...
Jon, Sundqvist, Hugues, Sana
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The Formation of Massive Stars
Astronomische Nachrichten, 2004B 01 A Massive Accretion Disk in M17 B 02 A VLT/ISAAC Study of the Cluster in M17 B 03 Multi-line Observations of the ON-1 Molecular Cloud/H II Region B 04 VLA 7 mm Observations Toward the Pumping Heart of GGD27 B 05 Stellar Masers in Massive Star Forming Regions B 06 The Decay of Massive Cores of Young Star Clusters
Nielbock, Markus +5 more
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Nucleosynthesis in Massive Stars
Space Science Reviews, 1993We discuss three aspects of the nucleosynthesis in massive and intermediate—mass stars during their early evolutionary phases. These are related to the CNO abundances in giant or supergiant stars, to the 26A1 yield from massive stars via stellar wind, and to the production of the s—process nuclei in massive stars.
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The evolution of massive stars to explosion
Space Science Reviews, 1994We review the possible evolutionary paths from massive stars to explosive endpoints as various types of supernovae associated with Population I and hence with massive stars: Type II-P, Type II-L, Type Ib, Type Ic, and the hybrid events SN 1987K and SN 1993J.
J. C. Wheeler, D. A. Swartz
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