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Showing 1 to 3 of 3 for “"Geoid and Topography"”.

  1. Three-Dimensional Spherical Modeling of the Mantles of Mars and Ceres: Inference from Geoid, Topography and Melt History

    … system. It is the fourth terrestrial planet and is differentiated into a core, mantle and crust. The crust of Mars is divided into the Southern highlands and the Northern lowlands. The largest volcano in the solar system, Olympus Mons is found on the crustal dichotomy boundary. The presence …

    vt Repository record for Three-Dimensional Spherical Modeling of the Mantles of Mars and Ceres: Inference from Geoid, Topography and Melt History (opens in a new tab)

  2. The effect of a shallow low viscosity zone on mantle convection and its expression at the surface of the earth

    … the evolution of fracture zones, the mean depth and heat flow relationships with age and the observation of small scale (150-250 km) geoid and topography anomalies in the Central Pacific and Indian oceans. Convective models are presented of the formation and evolution of these features. In …

    mit Repository record for The effect of a shallow low viscosity zone on mantle convection and its expression at the surface of the earth (opens in a new tab)

  3. The effect of a shallow low viscosity zone on mantle convection and its expression at the surface of the earth

    … the evolution of fracture zones, the mean depth and heat flow relationships with age and the observation of small scale (150-250 km) geoid and topography anomalies in the Central Pacific and Indian oceans. Convective models are presented of the formation and evolution of these features. In …

    woods-hole Repository record for The effect of a shallow low viscosity zone on mantle convection and its expression at the surface of the earth (opens in a new tab)