Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
atmosphere! We can well understand that enormous volumes of heated gas
would be formed--including steam, for there is good reason to believe
that water is present in large quantities in the moon's interior. The
imprisoned gas would find an outlet at points of least resistance,
the centres, namely, of the great radiating systems of streaks. These
centres would certainly be regions of outlet. But they would not be
sufficient. We can understand then why every ray system extends from
a great crater, though that crater was really formed after the system
of radiating streaks; and we can equally understand why these central
craters are not the only or even the chief of the great craters in the
moon. Here again I would suggest that possibly the careful study of
American geology might disclose features illustrating the great lunar
craters.
When we pass to the smaller craters, ranging in diameter from seven
or eight miles to less than a quarter of a mile, even if there be not
some far smaller and beyond the range of the most powerful telescopes
man can construct, we find ourselves among objects resembling those
with which the study of our own earth has rendered us familiar. When
Sartorius's map of Etna and the surrounding region was first seen at
the Geological Society's rooms, many supposed that it represented
lunar features. The Vesuvian volcanic region, again, is presented
side by side with a lunar region of similar extent in Nasmyth's fine
treatise on the moon, and the resemblance is very close. Considering
the part which water plays in producing terrestrial volcanic phenomena,
it may reasonably be doubted whether there is in reality so close a
resemblance as a superficial comparison (and we can make no other)
would suggest. There are those, indeed, who believe that some of the
multitudinous small craters of the moon have had their origin in the
downfall of meteoric masses on her once plastic surface; and strange
though the thought may seem, there would be considerable difficulty
in showing how the surface of the moon could have remained without
traces of the meteoric downfall to which during myriads of centuries
she was exposed undefended by that atmospheric shield which protects
our earth from millions of meteors yearly falling upon her. We could
only attribute the smallest lunar craters, however, to this cause.
It may be noticed in passing that Professor Newcomb, apparently
referring to this suggestion, which some had thought too fanciful to
be seriously advanced, says that 'the figures of these inequalities
(the small craters) can be closely imitated by throwing pebbles upon
the surface of some smooth plastic mass, as mud or mortar.' Craters,
however, larger than a mile or so in diameter, and many also of smaller
dimensions, must be regarded as due to the same process of contraction
which produced the great craters, but as belonging to an era when this
process went on less actively. In like manner another feature of the
Public-domain text, read in full here on John Shaqi.
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