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1. DESI 2024 VII: Cosmological Constraints from the Full-Shape Modeling of Clustering Measurements

2. DESI 2024 II: Sample Definitions, Characteristics, and Two-point Clustering Statistics

3. DESI 2024 V: Full-Shape Galaxy Clustering from Galaxies and Quasars

4. The Early Data Release of the Dark Energy Spectroscopic Instrument

5. GD-1 Stellar Stream and Cocoon in the DESI Early Data Release

6. DESI 2024 VI: Cosmological Constraints from the Measurements of Baryon Acoustic Oscillations

7. DESI 2024 IV: Baryon Acoustic Oscillations from the Lyman Alpha Forest

8. DESI 2024 III: Baryon Acoustic Oscillations from Galaxies and Quasars

9. Validation of the Scientific Program for the Dark Energy Spectroscopic Instrument

10. The Early Data Release of the Dark Energy Spectroscopic Instrument

11. Validation of the Scientific Program for the Dark Energy Spectroscopic Instrument

12. Overview of the DESI Milky Way Survey

13. Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument

14. The Robotic Multi-Object Focal Plane System of the Dark Energy Spectroscopic Instrument (DESI)

15. Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument

16. Overview of the Instrumentation for the Dark Energy Spectroscopic Instrument

17. The HST See Change Program: I. Survey Design, Pipeline, and Supernova Discoveries

18. Installation of the Dark Energy Spectroscopic Instrument at the Mayall 4-meter telescope

19. The HST See Change Program. I. Survey Design, Pipeline, and Supernova Discoveries* *Based on observations with the NASA/ESA Hubble Space Telescope, obtained at the Space Telescope Science Institute, which is operated by AURA, Inc., under NASA contract NAS 5-26555, under programs 13677, 14327.

20. SUGAR: An improved empirical model of Type Ia Supernovae based on spectral features

21. Strong dependence of Type Ia supernova standardization on the local specific star formation rate⋆

22. SUGAR: An improved empirical model of Type Ia supernovae based on spectral features

23. SNEMO: Improved Empirical Models for Type Ia Supernovae

24. Dark Energy Spectroscopic Instrument (DESI) Fiber Positioner Thermal and Wind Disturbance Test

25. Strong Dependence of Type Ia Supernova Standardization on the Local Specific Star Formation Rate

26. Overview of the DESI Legacy Imaging Surveys

27. Correcting for peculiar velocities of Type Ia Supernovae in clusters of galaxies

28. Overview of the DESI Legacy Imaging Surveys

29. Overview of the DESI Legacy Imaging Surveys

30. Understanding Type Ia supernovae through their U-band spectra

31. ProtoDESI: First On-Sky Technology Demonstration for the Dark Energy Spectroscopic Instrument

32. SCALA: In-situ calibration for Integral Field Spectrographs

33. Eddington-Limited Accretion in z~2 WISE-selected Hot, Dust-Obscured Galaxies

34. SNEMO: Improved Empirical Models for Type Ia Supernovae

35. Correcting for peculiar velocities of Type Ia supernovae in clusters of galaxies

36. Understanding type Ia supernovae through their U-band spectra★

37. ProtoDESI: First On-Sky Technology Demonstration for the Dark Energy Spectroscopic Instrument

38. The Extinction Properties of and Distance to the Highly Reddened Type Ia Supernova SN 2012cu

39. The DESI Experiment Part I: Science,Targeting, and Survey Design

40. The DESI Experiment Part II: Instrument Design

41. Eddington-limited Accretion in z ∼ 2 WISE-selected Hot, Dust-obscured Galaxies

42. Correcting for peculiar velocities of Type Ia supernovae in clusters of galaxies

43. Dark Energy Spectroscopic Instrument (DESI) fiber positioner thermal and wind disturbance test

44. SCALA: In situ calibration for integral field spectrographs

45. The Extinction Properties of and Distance to the Highly Reddened Type IA Supernova 2012cu

46. Improving Cosmological Distance Measurements Using Twin Type Ia Supernovae

47. The Massive and Distant Clusters of WISE Survey: MOO J1142+1527, A 10$^{15}$ M$_\odot$ Galaxy Cluster at z=1.19

48. UNITY: Confronting Supernova Cosmology's Statistical and Systematic Uncertainties in a Unified Bayesian Framework

49. The DESI Experiment Part I: Science,Targeting, and Survey Design

50. The DESI Experiment Part II: Instrument Design

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