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Document Date: 2003-07-24 15:50:13Open Document File Size: 487,20 KBShare Result on FacebookCityLisbon / /CompanyCabot / /CountryPortugal / /CurrencyBRL / pence / TWD / Rs / SGD / USD / CAD / / /FacilitySouthwest Research Institute / /IndustryTermdisk gas surface density / precursor gas disk / gas drag / satellite eccentricity / gas accretion / steady-state gas surface density / aerodynamic gas drag / gas surface density / gas-rich disk / gas giant planets / gas inflow / nebular gas / satellite accretion times / gas surface densities / inflowing gas / gas-to-solids / less gas-rich environment / gap-formation gas / satellite masses / gas-starved disks / average gas surface density / satellite orbits / gas-rich protosatellite disk containing / satellite orbit / gas drag timescale / energy loss / gas accretion rate / satellite-disk interactions / dynamical and chemical histories / satellite loss / gas giants / disk gas-to-solid ratio / satellite formation model / satellite lifetimes / runaway gas accretion / satellite system / e-folding / Late-inflowing gas containing sufficient angular momentum / satellite survival / regular satellite region / inner satellite region / satellite formation / energy / solar gas-to-solids ratio / satellite system worthy / energy source / e-growth / resonance site / energy balance / satellite systems / steady-state gas surface densities / gas accretion phase / gravitational binding energy / Actual gas accretion rates / differentiated satellite / massive and gas-rich disk / overall satellite accretion time / gas constant / satellite formation era / gas component / massive gas disk / mass gas disk / gas disk / nal gas inflow / satellite accretion / reduced gas-to-solids ratio / disk energy sources / gas accretion models / protracted satellite accretion times / gas inflow rates / /OrganizationSouthwest Research Institute / William R. Ward Department of Space Studies / American Astronomical Society / /PersonWilliam R. Ward / Robin M. Canup / / /PositionMp / /ProductFranklin / Saturn satellite / M-16 / /PublishedMediumThe Astronomical Journal / /Technologyalpha / radiation / condensation / simulation / /SocialTag |