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  2. Accretion (astrophysics) - Wikipedia

    en.wikipedia.org/wiki/Accretion_(astrophysics)

    Pebble accretion may accelerate the formation of planets by a factor of 1000 compared to the accretion of planetesimals, allowing giant planets to form before the dissipation of the gas disk. [ 28 ] [ 29 ] However, core growth via pebble accretion appears incompatible with the final masses and compositions of Uranus and Neptune . [ 30 ]

  3. Pebble accretion - Wikipedia

    en.wikipedia.org/wiki/Pebble_accretion

    This process increases the cross section over which the large bodies can accrete material, accelerating their growth. The rapid growth of the planetesimals via pebble accretion allows for the formation of giant planet cores in the outer Solar System before the dispersal of the gas disk.

  4. Formation and evolution of the Solar System - Wikipedia

    en.wikipedia.org/wiki/Formation_and_evolution_of...

    The various planets are thought to have formed from the solar nebula, the disc-shaped cloud of gas and dust left over from the Sun's formation. [36] The currently accepted method by which the planets formed is accretion, in which the planets began as dust grains in orbit

  5. Planetesimal - Wikipedia

    en.wikipedia.org/wiki/Planetesimal

    A group of the world's leading planet formation experts decided at a conference in 2006 [8] on the following definition of a planetesimal: A planetesimal is a solid object arising during the accumulation of orbiting bodies whose internal strength is dominated by self-gravity and whose orbital dynamics is not significantly affected by gas drag ...

  6. Planetary migration - Wikipedia

    en.wikipedia.org/wiki/Planetary_migration

    Type I migration in a local isothermal disk was shown to be compatible with the formation and long-term evolution of some of the observed Kepler planets. [9] The rapid accretion of solid material by the planet may also produce a "heating torque" that causes the planet to gain angular momentum. [10]

  7. Astronomers find new link between water and planet formation

    www.aol.com/astronomers-between-water-planet...

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  8. Planetary differentiation - Wikipedia

    en.wikipedia.org/wiki/Planetary_differentiation

    Core formation utilizes several mechanisms in order to control the movement of metals into the interior of a planetary body. [3] Examples include percolation, diking, diapirism, and the direct delivery of impacts are mechanisms involved in this process. [3] The metal to silicate density difference causes percolation or the movement of a metal ...

  9. Geology of solar terrestrial planets - Wikipedia

    en.wikipedia.org/wiki/Geology_of_solar...

    Gradually, gentle collisions allowed the flakes to stick together and make larger particles which, in turn, attracted more solid particles towards them. This process is known as accretion. The objects formed by accretion are called planetesimals—they act as seeds for planet formation. Initially, planetesimals were closely packed.