Simulations tie the deep-mantle primordial neon reservoir to an initial embryo mass of ~0.3 Earth masses assembled during solar-nebula dispersal.
Sci- ence338(6110), 1052 (2012)
3 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
fields
astro-ph.EP 3verdicts
UNVERDICTED 3roles
background 2polarities
background 2representative citing papers
A review of SPH modeling for global-scale impacts, emphasizing material properties across size regimes and links to Solar System observations.
A review chapter summarizing data, processes, and open questions on sulfur in Venus's atmosphere, surface, and interior.
citing papers explorer
-
Constructing Earth Formation History Using Deep Mantle Noble Gas Reservoirs
Simulations tie the deep-mantle primordial neon reservoir to an initial embryo mass of ~0.3 Earth masses assembled during solar-nebula dispersal.
-
Recent advances in modelling of global-scale collisions using smoothed particle hydrodynamics
A review of SPH modeling for global-scale impacts, emphasizing material properties across size regimes and links to Solar System observations.
-
Sulfur on Venus: Atmospheric, Surface, and Interior Processes
A review chapter summarizing data, processes, and open questions on sulfur in Venus's atmosphere, surface, and interior.