We determined variations in bulk density using most recent GRAIL gravity model GL1500 (Park et al., 2015) together with LOLA derived topography (Smith et al., 2017), both available on the Planetary Data System (https://pds.nasa.gov). Using the estimated bulk densities in combination with grain densities estimated from surface composition, the porosity of the upper crust was determined. Each grid point with a spacing of 0.75 deg was calculated using a circular analysis region of 3 deg radius. The grids are equally sampled following the sample theorem of Driscoll and Healy (1994)
This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And ...
The source data is the modeling result regarding the origin of crustal porosity for the Moon. In thi...
A new method of determining the thickness of mare basalts on the Moon is introduced that is made pos...
We determined variations in bulk density using most recent GRAIL gravity model GL1500 (Park et al., ...
We map lateral variations in bulk density of the upper lunar highland crust using the most recent GR...
International audienceNewly obtained gravity and topography data of the Moon, combined with a lithos...
The Gravity Recovery and Interior Laboratory (GRAIL) mission is providing unprecedentedly high-resol...
Newly obtained gravity and topography data of the Moon, combined with a lithospheric flexure model t...
International audienceWe analyzed data from the Gravity Recovery and Interior Laboratory (GRAIL) mis...
We employ Newton’s integral in the spectral domain to solve two geodetic/geophysical tasks for the M...
Lateral variations in bulk density and porosity of the upper lunar highland crust are mapped using a...
Lateral variations in bulk density and porosity of the upper lunar highland crust are mapped using a...
© 2020 Elsevier Ltd We employ Newton's integral in the spectral domain to solve two geodetic/geo...
This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And ...
<p>This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery A...
This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And ...
The source data is the modeling result regarding the origin of crustal porosity for the Moon. In thi...
A new method of determining the thickness of mare basalts on the Moon is introduced that is made pos...
We determined variations in bulk density using most recent GRAIL gravity model GL1500 (Park et al., ...
We map lateral variations in bulk density of the upper lunar highland crust using the most recent GR...
International audienceNewly obtained gravity and topography data of the Moon, combined with a lithos...
The Gravity Recovery and Interior Laboratory (GRAIL) mission is providing unprecedentedly high-resol...
Newly obtained gravity and topography data of the Moon, combined with a lithospheric flexure model t...
International audienceWe analyzed data from the Gravity Recovery and Interior Laboratory (GRAIL) mis...
We employ Newton’s integral in the spectral domain to solve two geodetic/geophysical tasks for the M...
Lateral variations in bulk density and porosity of the upper lunar highland crust are mapped using a...
Lateral variations in bulk density and porosity of the upper lunar highland crust are mapped using a...
© 2020 Elsevier Ltd We employ Newton's integral in the spectral domain to solve two geodetic/geo...
This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And ...
<p>This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery A...
This archive contains crustal thickness models of the Moon derived from GRAIL (Gravity Recovery And ...
The source data is the modeling result regarding the origin of crustal porosity for the Moon. In thi...
A new method of determining the thickness of mare basalts on the Moon is introduced that is made pos...