Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Only a fraction of one per cent of the sun's mass ejected in this
fashion would be sufficient to generate the entire planetary system.
Nuclei or knots in the arms of the spiral gradually grew by accretion,
the four interior knots forming Mercury, Venus, the Earth, and Mars. The
earth knot was a double one, which developed into the earth-moon system.
The absence of a dominating nucleus beyond Mars accounts for the zone of
the asteroids remaining in some sense in the original planetesimal
condition. The vaster nuclei beyond Mars gradually condensed into
Jupiter, Saturn, Uranus, and Neptune; and lesser nuclei related to the
larger ones form the systems of moons or satellites.
The orbits of the planetesimals and the planetary and satellite nuclei
would be very eccentric, forming a confusion of ellipses with frequently
crossing paths. Collisions would occur, and the nuclei would inevitably
grow by accretion. Each planet, then, would clear up the planetesimals
of its zone; and Moulton shows that this process would give rise to
axial revolution of the planet in the same direction as its orbital
revolution. The eccentricities would finally disappear, and the entire
mass would revolve in a nearly circular orbit.
Rotation twists the streams into the spiral form, and the huge amounts
of wreckage from the near-collision are thrown into eddies. The
fragments or particles (planetesimals) which have given the name to the
theory, begin their motion round their central sun in elliptical paths
as required by gravitation. The form of the spiral is preserved by the
orbital motion of its particles. There is a gradual gathering together
of the planetesimals at points or nodes of intersection, and these
become aggregations of matter, nuclei that will perhaps become planets,
though more likely other stars. The appulse or near approach is but one
of the methods by which the spiral nebulæ may have come into existence.
The planetesimal hypothesis would seem to account for the formation of
many of these objects as we see them in the sky, though perhaps it is
hardly competent to replace entirely the Laplacian hypothesis of the
formation of the solar system, which would appear to be a special case
by itself.
It will be observed that while the Laplacian hypothesis is concerned in
the main with the progressive development of the solar system, and
systems of a like order surrounding other stellar centers, whose
existence is highly probable, the origin and development of the stellar
universe is a vaster problem which can only be undertaken and completed
in its broadest bearings when the structure of the stellar universe has
been ascertained.
Public-domain text, read in full here on John Shaqi.
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