Up to the present time no definite light has been thrown by physics on
the origin and earliest condition of our globe. The famous nebular
theory (q.v.) of Kant and Laplace sketched the supposed evolution of the
solar system from a gaseous nebula, slowly rotating round a more
condensed central portion of its mass, which eventually became the sun.
As a consequence of increased rapidity of rotation resulting from
cooling and contraction, the nebula acquired a more and more lenticular
form, until at last it threw off from its equatorial protuberance a ring
of matter. Subsequently the same process was repeated, and other similar
rings successively separated from the parent mass. Each ring went
through a corresponding series of changes until it ultimately became a
planet, with or without one or more attendant satellites. The intimate
relationship of our earth to the sun and the other planets was, in this
way, shown. But there are some serious physical difficulties in the way
of the acceptance of the nebular hypothesis. Another explanation is
given by the meteoritic hypothesis, according to which, out of the
swarms of meteorites with which the regions of space are crowded, the
sun and planets have been formed by gradual accretion.
According to these theoretical views we should expect to find a general
uniformity of composition in the constituent matter of the solar system.
For many years the only available evidence on this point was derived
from the meteorites (q.v.) which so constantly fall from outer space
upon the surface of the earth. These bodies were found to consist of
elements, all of which had been recognized as entering into the
constitution of the earth. But the discoveries of spectroscopic research
have made known a far more widely serviceable method of investigation,
which can be applied even to the luminous stars and nebulae that lie far
beyond the bounds of the solar system. By this method information has
been obtained regarding the constitution of the sun, and many of our
terrestrial metals, such as iron, nickel and magnesium, have been
ascertained to exist in the form of incandescent vapour in the solar
atmosphere. The present condition of the sun probably represents one of
the phases through which stars and planets pass in their progress
towards becoming cool and dark bodies in space. If our globe was at
first, like its parent sun, an incandescent mass of probably gaseous
matter, occupying much more space than it now fills, we can conceive
that it has ever since been cooling and contracting until it has reached
its present form and dimensions, and that it still retains a high
internal temperature. Its oblately spheroidal form is such as would be
assumed by a rotating mass of matter in the transition from a vaporous
and self-luminous or liquid condition to one of cool and dark solidity.
But it has been claimed that even a solid spherical globe might develop,
under the influence of protracted rotation, such a shape as the earth at
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