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1. A Quantitative Comparison of Opacities Calculated Using the Distorted- Wave and $\boldsymbol{R}$-Matrix Methods

2. IPOPv2 online service for the generation of opacity tables

3. Collision strengths and transition probabilities for Co II infrared forbidden lines

4. Ipopv2: Photoionization of Ni XIV -- a test case

5. Comparison of Fe and Ni opacity calculations for a better understanding of pulsating stellar envelopes

6. Iron and Nickel spectral opacity calculations in conditions relevant for pulsating stellar envelopes and experiments

7. Radiative properties of stellar plasmas and open challenges

8. Theoretical and experimental activities on opacities for a good interpretation of seismic stellar probes

9. Helioseismic Constraints on the Solar Ne/O Ratio and Heavy Element Abundances

10. OPserver: interactive online-computations of opacities and radiative accelerations

11. Up-dated opacities from the Opacity Project

12. Atomic data from the Iron Project.XLIII. Transition probabilities for Fe V

15. A quantitative comparison of opacities calculated using the distorted-wave and R-Matrix methods

17. SUP@VAMDC

18. The virtual atomic and molecular data centre (VAMDC) consortium

19. The virtual atomic and molecular data centre (VAMDC) consortium

20. Oxygen in the Universe

22. Virtual Atomic and Molecular Data Center

23. Radiative properties of stellar plasmas and open challenges

24. Theoretical and experimental activities on opacities for a good interpretation of seismic stellar probes

25. VAMDC—The Virtual Atomic and Molecular Data Centre—A New Way to Disseminate Atomic and Molecular Data—VAMDC Level 1 Release

27. Some O I oscillator strengths and the interstellar abundance of oxygen

30. Collision strengths and transition probabilities for Co II infrared forbidden lines.

31. The reversible H + H(-) yields H2(v, j) + e(-) reaction - A consistent description of the associative detachment and dissociative attachment processes using the resonant scattering theory

32. Updated opacities from the Opacity Project

40. Oscillator strengths and radiative transition probabilities from the IRON Project.

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