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33 results on '"Chiappini, C."'

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1. Beyond Gaia DR3: Tracing the [α/M] – [M/H] bimodality from the inner to the outer Milky Way disc with Gaia-RVS and convolutional neural networks.

2. Light elements Na and Al in 58 bulge spheroid stars from APOGEE.

3. Chemical abundances of the young inner-disc open cluster NGC 6705 observed by APOGEE: sodium-rich and not α-enhanced.

4. Time evolution of Ce as traced by APOGEE using giant stars observed with the Kepler, TESS and K2 missions.

5. Gaia-ESO Survey: Chemical evolution of Mg and Al in the Milky Way with machine learning.

6. Chrono-chemodynamical analysis of the globular cluster NGC 6355: Looking for the fundamental bricks of the Bulge.

7. The Gaia-ESO Survey: Preparing the ground for 4MOST and WEAVE galactic surveys: Chemical evolution of lithium with machine learning.

8. The Milky Way bar and bulge revealed by APOGEE and Gaia EDR3.

9. The RAdial Velocity Experiment (RAVE): Parameterisation of RAVE spectra based on convolutional neural networks.

10. Cool stars in the Galactic center as seen by APOGEE: M giants, AGB stars, and supergiant stars and candidates.

11. PLATO as it is: A legacy mission for Galactic archaeology

12. Masses and ages for metal-poor stars: A pilot programme combining asteroseismology and high-resolution spectroscopic follow-up of RAVE halo stars.

13. Explaining the decrease in ISM lithium at super-solar metallicities in the solar vicinity.

14. Dissecting stellar chemical abundance space with t-SNE.

15. RAVE stars in K2: I. Improving RAVE red giants spectroscopy using asteroseismology from K2 Campaign 1.

16. Red giants observed by CoRoT and APOGEE: The evolution of the Milky Way's radial metallicity gradient.

17. Chemical trends in the Galactic halo from APOGEE data.

18. Galactic Archaeology with CoRoT and APOGEE: Creating mock observations from a chemodynamical model.

19. Asteroseismology's new constraints on stellar models and Galactic Archaeology: Where are we now and where are we going?

20. The role of neutron star mergers in the chemical evolution of the Galactic halo.

21. Explaining the Ba, Y, Sr, and Eu abundance scatter in metal-poor halo stars: constraints to the r-process.

22. Chemodynamics of the Milky Way.

23. LTE or non-LTE, that is the question The NLTE chemical evolution of strontium in extremely metal-poor stars.

24. Galactic archaeology: Understanding the metallicity gradients with chemo-dynamical models.

25. RAVE stars in K2: I. Improving RAVE red giants spectroscopy using asteroseismology from K2 Campaign 1

26. Very metal-poor stars observed by the RAVE survey

27. The Gaia-ESO survey: galactic evolution of lithium from iDR6

28. PLATO as it is: a legacy mission for Galactic archaeology

29. The Gaia-ESO Survey : Separating disk chemical substructures with cluster models. Evidence of a separate evolution in the metal-poor thin disk

30. The Gaia-ESO Survey: revisiting the Li-rich giant problem

31. The role of neutron star mergers in the chemical evolution of the Galactic halo

32. The Gaia-ESO Survey: New constraints on the Galactic disc velocity dispersion and its chemical dependencies

33. Barium lines in high-quality spectra of two metal-poor giants in the Galactic halo

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