Search Results - "Weidenschilling, Stuart"

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  1. 1

    Origin and history of ureilitic material in the solar system: The view from asteroid 2008 TC3 and the Almahata Sitta meteorite by Goodrich, Cyrena Anne, Hartmann, William K., O'Brien, David P., Weidenschilling, Stuart J., Wilson, Lionel, Michel, Patrick, Jutzi, Martin

    Published in Meteoritics & planetary science (01-04-2015)
    “…Asteroid 2008 TC3 (approximately 4 m diameter) was tracked and studied in space for approximately 19 h before it impacted Earth's atmosphere, shattering at…”
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    Journal Article
  2. 2

    Growth of Jupiter: Enhancement of core accretion by a voluminous low-mass envelope by D’Angelo, Gennaro, Weidenschilling, Stuart J., Lissauer, Jack J., Bodenheimer, Peter

    Published in Icarus (New York, N.Y. 1962) (01-10-2014)
    “…•We study the formation of Jupiter’s core from an evolving disk of planetesimals.•The growth of an envelope around the core includes an accurate determination…”
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    Journal Article
  3. 3

    The effect of multiple particle sizes on cooling rates of chondrules produced in large-scale shocks in the solar nebula by Morris, Melissa A., Weidenschilling, Stuart J., Desch, Steven J.

    Published in Meteoritics & planetary science (01-05-2016)
    “…Chondrules represent one of the best probes of the physical conditions and processes acting in the early solar nebula. Proposed chondrule formation models are…”
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    Journal Article
  4. 4

    The planetesimal bow shock model for chondrule formation: A more quantitative assessment of the standard (fixed Jupiter) case by HOOD, Lon L., WEIDENSCHILLING, Stuart J.

    Published in Meteoritics & planetary science (01-11-2012)
    “…– One transient heating mechanism that can potentially explain the formation of most meteoritic chondrules 1–3 Myr after CAIs is shock waves produced by…”
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    Journal Article
  5. 5

    Particles in the nebular midplane: Collective effects and relative velocities by WEIDENSCHILLING, Stuart J.

    Published in Meteoritics & planetary science (01-02-2010)
    “…– In the absence of global turbulence, solid particles in the solar nebula tend to settle toward the midplane, forming a layer with enhanced solids/gas ratio…”
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    Journal Article
  6. 6

    Gravitational scattering as a possible origin for giant planets at small stellar distances by Weidenschilling, Stuart J, Marzari, Francesco

    Published in Nature (London) (19-12-1996)
    “…The recent discoveries of massive planetary companions orbiting several solar-type stars pose a conundrum. Conventional models for the formation of giant…”
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    Journal Article
  7. 7

    Formation of Planetesimals and Accretion of the Terrestrial Planets by Weidenschilling, Stuart J

    Published in Space science reviews (01-01-2000)
    “…Planetesimals formed in the solar nebula by collisional coagulation. Dust aggregates settled toward the central plane, the larger ones growing by sweeping up…”
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    Journal Article
  8. 8

    Nebular shock waves generated by planetesimals passing through Jovian resonances: Possible sites for chondrule formation by HOOD, Lon L., CIESLA, Fred J., ARTEMIEVA, Natalia A., MARZARI, Francesco, WEIDENSCHILLING, Stuart J.

    Published in Meteoritics & planetary science (01-03-2009)
    “…— The primordial asteroid belt contained at least several hundred and possibly as many as 10,000 bodies with diameters of 1000 km or larger. Following the…”
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    Journal Article
  9. 9

    Evaluating planetesimal bow shocks as sites for chondrule formation by CIESLA, Fred J., HOOD, Lon L., WEIDENSCHILLING, Stuart J.

    Published in Meteoritics & planetary science (01-11-2004)
    “…— We investigate the possible formation of chondrules by planetesimal bow shocks. The formation of such shocks is modeled using a piecewise parabolic method…”
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    Journal Article
  10. 10

    Growth of Jupiter: Formation in disks of gas and solids and evolution to the present epoch by D'Angelo, Gennaro, Weidenschilling, Stuart J., Lissauer, Jack J., Bodenheimer, Peter

    Published in Icarus (New York, N.Y. 1962) (01-02-2021)
    “…The formation of Jupiter is modeled via core-nucleated accretion, and the planet's evolution is simulated up to the present epoch. Throughout the phases when…”
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    Journal Article
  11. 11

    Growth of Jupiter: Formation in disks of gas and solids and evolution to the present epoch by D'Angelo, Gennaro, Weidenschilling, Stuart J., Lissauer, Jack J., Bodenheimer, Peter

    Published in Icarus (New York, N.Y. 1962) (14-09-2020)
    “…The formation of Jupiter is modeled via core-nucleated accretion, and the planet's evolution is simulated up to the present epoch. Throughout the phases when…”
    Get full text
    Journal Article
  12. 12

    Importance of the accretion process in asteroid thermal evolution: 6 Hebe as an example by Ghosh, Amitabha, Weidenschilling, Stuart J., McSween Jr, Harry Y.

    Published in Meteoritics & planetary science (01-05-2003)
    “…— Widespread evidence exists for heating that caused melting, thermal metamorphism, and aqueous alteration in meteorite parent bodies. Previous simulations of…”
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    Journal Article
  13. 13

    Very early collisional evolution in the asteroid belt by WEIDENSCHILLING, Stuart J, DAVIS, Donald R, MARZARI, Francesco

    Published in Earth, planets and space (01-01-2001)
    “…The asteroids probably experienced significant collisional evolution while the solar nebula was present. Planetesimals were brought into resonances with…”
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    Conference Proceeding Journal Article
  14. 14

    Origin and history of ureilitic material in the solar system: The view from asteroid 2008 TC sub(3) and the Almahata Sitta meteorite by Goodrich, Cyrena Anne, Hartmann, William K, O'Brien, David P, Weidenschilling, Stuart J, Wilson, Lionel, Michel, Patrick, Jutzi, Martin

    Published in Meteoritics & planetary science (01-04-2015)
    “…Asteroid 2008 TC sub(3) (approximately 4 m diameter) was tracked and studied in space for approximately 19 h before it impacted Earth's atmosphere, shattering…”
    Get full text
    Journal Article
  15. 15

    Origin and history of ureilitic material in the solar system: The view from asteroid 2008 TC 3 and the Almahata Sitta meteorite by Goodrich, Cyrena Anne, Hartmann, William K., O'Brien, David P., Weidenschilling, Stuart J., Wilson, Lionel, Michel, Patrick, Jutzi, Martin

    Published in Meteoritics & planetary science (01-04-2015)
    “…Asteroid 2008 TC 3 (approximately 4 m diameter) was tracked and studied in space for approximately 19 h before it impacted Earth's atmosphere, shattering at…”
    Get full text
    Journal Article
  16. 16
  17. 17

    A possible origin for the grooves of Phobos by Weidenschilling, Stuart J

    Published in Nature (London) (13-12-1979)
    “…A hypothesis that the age and distribution of grooves on the surface of Phobos may be explained by a hybrid origin due to varying tidal stresses induced after…”
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    Journal Article
  18. 18

    Saturn Ring Particles as Dynamic Ephemeral Bodies by Davis, Donald R., Weidenschilling, Stuart J., Chapman, Clark R., Greenberg, Richard

    “…Although Saturn's rings are within the Roche zone, the accretion of centimeter-sized particles into large aggregates many meters in diameter occurs readily, on…”
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    Journal Article
  19. 19

    Growth of Jupiter: Formation in Disks of Gas and Solids and Evolution to the Present Epoch by D'Angelo, Gennaro, Weidenschilling, Stuart J, Lissauer, Jack J, Bodenheimer, Peter

    Published 14-10-2020
    “…Icarus 355 (2021) 114087 [Abridged] The formation of Jupiter is modeled via core-nucleated accretion, and the planet's evolution is simulated up to the present…”
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    Journal Article
  20. 20

    Mean Motion Resonances, Gas Drag, and Supersonic Planetesimals in the Solar Nebula by Marzari, Francesco, Weidenschilling, Stuart

    “…We examine the orbital evolution of planetesimals under the influence of Jupiter's perturbations and nebular gas drag, under the assumption that gas persisted…”
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    Journal Article