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subject: EAPS subject: Planetary Science

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Topographic degradation by impact cratering on airless bodies is dominated by diffusive erosion from distal ejecta

10.4231/R79C6VMX

Bryan Howl , Caleb Fassett , David Minton ORCID logo , James Richardson , Masatoshi Hirabayashi

12/22/2017

Data to reproduce figures and movies for the paper "Topographic degradation by impact cratering on airless bodies is dominated by diffusive erosion from distal ejecta."

EAPS Planetary Science

Three Dynamical Evolution Regimes for Coupled Ring-Satellite Systems and Implications for the Formation of the Uranian Satellite Miranda

10.4231/R7DR2SP6

Andrew Hesselbrock ORCID logo , David Minton ORCID logo

05/01/2018

Coupled ring-satellite systems fall into three distinct dynamical regimes, “Boomerang,” “Non-Boomerang,” and “Torque-Dependent.” This publication includes data to reproduce figures as well as the version of RING-MOONS used to produce all data.

EAPS Modeling Planetary Science Python Code

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