Illustrations of Universal Progress: A Series of DiscussionsSpencer, Herbert
Philosophy
Illustrations of Universal Progress: A Series of Discussions
Spencer, Herbert
Philosophy; Political science; Science
In the centre of a spiral nebula is seen a mass both more luminous and more
resolvable than the rest. Assume that, in process of time, all the spiral
streaks of luminous matter which converge to this centre are drawn into it,
as they must be; assume further, that the flocculi or other discrete bodies
constituting these luminous streaks aggregate into larger masses at the
same time that they approach the central group, and that the masses forming
this central group also aggregate into larger masses (both which are
necessary assumptions); and there will finally result a more or less
globular group of such larger masses, which will be resolvable with
comparative ease. And, as the coalescence and concentration go on, the
constituent masses will gradually become fewer, larger, brighter, and more
densely collected around the common centre of gravity. See now how
completely this inference agrees with observation. "The circular form is
that which most commonly characterizes resolvable nebulae," writes Arago.
"Resolvable nebulae," says Sir John Herschel, "are almost universally round
or oval." Moreover, the centre of each group habitually displays a closer
clustering of the constituent masses than elsewhere; and it is shown that,
under the law of gravitation, which we know extends to the stars, this
distribution is _not_ one of equilibrium, but implies progressing
concentration. While, just as we inferred that, according to circumstances,
the extent to which aggregation has been carried must vary; so we find
that, in fact, there are regular nebulae of all degrees of resolvability,
from those consisting of innumerable minute discrete masses, to those in
which there are a few large bodies worthy to be called stars.
On the one hand, then, we see that the notion, of late years uncritically
received, that the nebulae are extremely remote galaxies of stars like those
which make up our own Milky Way, is totally irreconcileable with the
facts--involves us in sundry absurdities. On the other hand, we see that
the hypothesis of nebular condensation harmonizes with the most recent
results of stellar astronomy: nay more--that it supplies us with an
explanation of various appearances which in its absence would be
incomprehensible.
* * * * *
Descending now to the Solar System, let us consider first a class of
phenomena in some sort transitional--those offered by comets. In comets we
have now existing a kind of matter like that out of which, according to the
Nebular Hypothesis, the Solar System was evolved. For the explanation of
them, we must hence go back to the time when the substances forming the sun
and planets were yet unconcentrated.
Public-domain text, read in full here on John Shaqi.
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