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23 results on '"Gregory A. Feiden"'

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1. The TIME Table: rotation and ages of cool exoplanet host stars

2. TESS Hunt for Young and Maturing Exoplanets (THYME) IX: a 27 Myr extended population of Lower-Centaurus Crux with a transiting two-planet system

3. Gaia Gaps and the Physics of Low-Mass Stars. I. The Fully Convective Boundary

4. A Stringent Test of Magnetic Models of Stellar Evolution

6. Stellar Evolution Models of Young Stars: Progress and Limitations

8. The blue straggler V106 in NGC6791: A prototype progenitor of old single giants masquerading as young

9. Magnetic field induced radius inflation of low-mass stars

10. Magnetic Inhibition of Convection and the Fundamental Properties of Low-Mass Stars. III. A Consistent 10 Myr Age for the Upper Scorpius OB Association

11. Zodiacal Exoplanets in Time (ZEIT) III: A short-period planet orbiting a pre-main-sequence star in the Upper Scorpius OB Association

12. Parallaxes of metal-poor main-sequence stars

13. Stellar diameters and temperatures - VI. High angular resolution measurements of the transiting exoplanet host stars HD 189733 and HD 209458 and implications for models of cool dwarfs

14. Testing Metal-poor Stellar Models and Isochrones withHSTParallaxes of Metal-poor Stars

15. Revised age for CM Draconis and WD 1633+572: Toward a resolution of model-observation radius discrepancies

16. The rotation-lithium depletion correlation in theβPictoris association and the LDB age determination

17. Do Magnetic Fields Actually Inflate Low-Mass Stars?

18. ERRATUM: 'HOW TO CONSTRAIN YOUR M DWARF: MEASURING EFFECTIVE TEMPERATURE, BOLOMETRIC LUMINOSITY, MASS, AND RADIUS' (ApJ, 804, 64)

19. Self-Consistent Magnetic Stellar Evolution Models of the Detached, Solar-Type Eclipsing Binary EF Aquarii

20. Reevaluating the Mass-Radius Relation for Low-Mass, Main Sequence Stars

21. HOW TO CONSTRAIN YOUR M DWARF: MEASURING EFFECTIVE TEMPERATURE, BOLOMETRIC LUMINOSITY, MASS, AND RADIUS

22. BANYAN. IV. FUNDAMENTAL PARAMETERS OF LOW-MASS STAR CANDIDATES IN NEARBY YOUNG STELLAR KINEMATIC GROUPS—ISOCHRONAL AGE DETERMINATION USING MAGNETIC EVOLUTIONARY MODELS

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