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1. Did the terrestrial planets of the Solar System form by pebble accretion?

2. Mechanisms and timing of carbonaceous chondrite delivery to the Earth

3. Formation and evolution of a protoplanetary disk: combining observations, simulations and cosmochemical constraints

4. Dust rings trap protoplanets on eccentric orbits and get consumed by them

5. Super-Earth formation with slow migration from a ring in an evolving peaked disk compatible with terrestrial planet formation

6. The Solar System could have formed in a low-viscosity disc: A dynamical study from giant planet migration to the Nice model

7. Forming the Trappist-1 system in two steps during the recession of the disc inner edge

8. The PLATO Mission

9. EL meteorites do date the giant planet instability

10. Forming Mercury from excited initial conditions

11. Generation of Low-Inclination, Neptune-Crossing TNOs by Planet Nine

12. The Collisional Evolution of the Primordial Kuiper Belt, Its Destabilized Population, and the Trojan Asteroids

13. An inflationary disk phase to explain extended protoplanetary dust disks

14. NEOMOD: A New Orbital Distribution Model for Near Earth Objects

15. Identification of a 4.3 billion year old asteroid family and planetesimal population in the Inner Main Belt

16. Early Bombardment of the Moon: Connecting the Lunar Crater Record to the Terrestrial Planet Formation

17. Formation of Rocky Super-Earths From A Narrow Ring of Planetesimals

18. Rocky histories: The effect of high excitations on the formation of rocky planets

19. Formation of Lunar Basins from Impacts of Leftover Planetesimals

20. Planetary Exploration Horizon 2061 Report, Chapter 3: From science questions to Solar System exploration

21. Implications of Jupiter Inward Gas-Driven Migration for the Inner Solar System

22. A Criterion for the Stability of Planets in Chains of Resonances

23. Stochastic accretion of the Earth

24. A Self-Consistent Model for Dust-Gas Coupling in Protoplanetary Disks

25. Planet Formation Theory in the Era of ALMA and Kepler: from Pebbles to Exoplanets

26. Dynamical origin of the Dwarf Planet Ceres

27. Terrestrial planet formation from lost inner solar system material

28. A super-massive Neptune-sized planet

29. Contemporary formation of early solar system planetesimals at two distinct radial locations

30. Planet Formation

31. Constraints on planetesimal accretion inferred from particle-size distribution in CO chondrites

32. Reconstructing the late accretion history of the Moon

33. Are the Moon's nearside-farside asymmetries the result of a giant impact?

34. Probing the impact of varied migration and gas accretion rates for the formation of giant planets in the pebble accretion scenario

35. Effects of early intense bombardment on megaregolith evolution and on lunar (and planetary) surface samples

36. Evolution of the Earth's Atmosphere during Late Veneer Accretion

37. Characterization of Temporarily-Captured Minimoon 2020 CD$_3$ by Keck Time-resolved Spectrophotometry

38. Isotopic evolution of the inner Solar System inferred from molybdenum isotopes in meteorites

39. Formation of Giant Planet Satellites

40. The onset of instability in resonant chains

41. Planet formation by pebble accretion in ringed disks

42. Chemical Diversity of Super-Earths As a Consequence of Formation

43. Planet formation: key mechanisms and global models

44. Debiased albedo distribution for Near Earth Objects

45. Dynamical evidence for an early giant planet instability

46. A record of the final phase of giant planet migration fossilized in the asteroid belt's orbital structure

47. Formation of compact systems of super-Earths via dynamical instabilities and giant impacts

48. Characterization of the Nucleus, Morphology and Activity of Interstellar Comet 2I/Borisov by Optical and Near-Infrared GROWTH, Apache Point, IRTF, ZTF and Keck Observations

49. Geoscience for understanding habitability in the solar system and beyond

50. Quasi-static contraction during runaway gas accretion onto giant planets

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