NASA NTRS · 19850015231
Ring-diameter Ratios for Multi-ring Basins Average 2.0(0.5)D
Abstract
The spacing of the concentric rings of planetary impact basins was studied. It is shown that a radial increment of x (sup 0.5) D, where x is about 2.0 and D = ring diameter, separates both (1) adjacent least-squares groups of rings and arcs of multi-ring basins on Mars, Mercury, and the Moon; and (2) adjacent rings of individual basins on the three planets. Statistics for ratios of ring diameters are presented, the first and most-applied parameter of ring spacing. It is found that ratios excluding rings flanking the main ring also have a mean spacing increment of about 2.0. Ratios including such rings, as for the least-squares groups, and (1) above, have a larger increment, averaging 2.1. The F-test indicates, that these spacings of basin ring locations, and mode of ring formation are controlled by the mechanics of the impact event itself, rather than by crustal properties.
Keep this discovery
Explore connections, maps & timelines
Pike, R. J., Spudis, P. D.. 1985-04-01. Ring-diameter Ratios for Multi-ring Basins Average 2.0(0.5)D. https://ntrs.nasa.gov/citations/19850015231
Cite the original work for its findings. Save a collection to share your selection of sources.