Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
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Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Venus at 67 millions of miles from the sun presents conditions that are
quite different. She receives double the solar heat that we do, but
possessing an atmosphere perhaps threefold denser than ours, as reliably
indicated by observations of transits of Venus, the intensity of the
heat and its diffusion may be greatly modified. What the selective
absorption of the atmosphere of Venus may be, we do not know. Nor is the
rotation time of the planet definitely ascertained: if equal to her
year, as many observations show and as indicated by the theory of tidal
evolution, there may well be certain regions on the hemisphere
perpetually turned away from the sun where temperature conditions are
identical with those on the tropical earth, and where every condition
for the origin and development of life is more fully met than anywhere
else in the solar system. Whether Venus has water distributed as on the
earth we do not know, as her surface is never seen, owing to dense
clouds under which she is always enshrouded. Her cloudy condition
possibly indicates an overplus of water.
Is the moon inhabited? Quite certainly not: no appreciable air, no
water, and a surface temperature unmodified by atmosphere--rising
perhaps to 100 degrees F. during the day, which is a fortnight in
length, and falling at night to 300 degrees below zero, if not lower.
Is Mars inhabited? The probable surface temperature is much lower than
the earth's, because Mars receives only half as much solar heat as we
do; and more important still, the atmosphere of Mars is neither so dense
nor so extensive as our own. Seasons on Mars are established, much the
same as here, except that they are nearly twice as long as ours; and
alternate shrinking and enlarging of the polar caps keeps even pace with
the seasons, thereby indicating a certainty of atmosphere whose
equatorial and polar circulation transports the moisture poleward to
form the snow and ice of which the polar caps no doubt consist.
There is a variety of evidence pointing to an atmosphere on Mars of
one-third to one-half the density of our own: an atmosphere in which
free hydrogen could not exist, although other gases might. The
spectroscopic evidence of water vapor in the Martian atmosphere is not
very strong. It is very doubtful whether water exists on Mars in large
bodies: quite certainly not as oceans, though the evidence of many small
"lakes" is pretty well made out. With very little water, a thin
atmosphere and a zero temperature, is Mars likely to be inhabited at the
present time? The chances are rather against it. If, however, the past
development of the planet has progressed in the way usually considered
as probable, we may be practically certain that Mars has been inhabited
in the past, when water was more abundant, and the atmosphere more dense
so as to retain and diffuse the solar heat.
Public-domain text, read in full here on John Shaqi.
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