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      The Dawn Framing Camera

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          Potentials of surfaces in space

          E Whipple (1981)
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            A new, fast, and efficient image codec based on set partitioning in hierarchical trees

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              Differentiation of the asteroid Ceres as revealed by its shape.

              The accretion of bodies in the asteroid belt was halted nearly 4.6 billion years ago by the gravitational influence of the newly formed giant planet Jupiter. The asteroid belt therefore preserves a record of both this earliest epoch of Solar System formation and variation of conditions within the solar nebula. Spectral features in reflected sunlight indicate that some asteroids have experienced sufficient thermal evolution to differentiate into layered structures. The second most massive asteroid--4 Vesta--has differentiated to a crust, mantle and core. 1 Ceres, the largest and most massive asteroid, has in contrast been presumed to be homogeneous, in part because of its low density, low albedo and relatively featureless visible reflectance spectrum, similar to carbonaceous meteorites that have suffered minimal thermal processing. Here we show that Ceres has a shape and smoothness indicative of a gravitationally relaxed object. Its shape is significantly less flattened than that expected for a homogeneous object, but is consistent with a central mass concentration indicative of differentiation. Possible interior configurations include water-ice-rich mantles over a rocky core.
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                Author and article information

                Journal
                Space Science Reviews
                Space Sci Rev
                Springer Nature
                0038-6308
                1572-9672
                December 2011
                February 2011
                : 163
                : 1-4
                : 263-327
                Article
                10.1007/s11214-011-9745-4
                3ac75964-f95c-4a5e-84a3-716d3ea381b6
                © 2011
                History

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