Appletons' Popular Science Monthly, December 1898: Volume LIV, No. 2, December 1898Various
Science
Appletons' Popular Science Monthly, December 1898: Volume LIV, No. 2, December 1898
Various
Science -- Periodicals; Technology -- Periodicals
At the same time, while the cause of the seasons as a whole is the
obliquity of the earth's axis, with the resulting inclination of
either pole toward the sun alternately, we must not forget that the
seasons and the climate in each particular country depend in part
upon many minor contributory causes. It is not merely nearness to
or distance from the equator that counts; we have to consider also
relative distribution of land and water, elevation, prevalent winds,
exposure, condensation, and many other elements of a complex problem.
In Ecuador, for example, whose very name means the equator, the plain
is always in scorching summer, the mountains are always in perpetual
spring. The monsoons, again, produce in other countries some curious
results: they depend themselves on the change of relative temperature
in sea and land at different seasons; and they break upon the
Himalayas with this odd and unexpected effect, that the snow line on
the southern side of that vast range goes very far down, owing to
the immense rainfall (or rather snowfall) and the consequent spread
of snow fields and glaciers; while on the northern side it descends
but a very little way, owing to the extreme desert drought and the
great summer heat of the central Asiatic table-land. We have thus the
apparent paradox that millions of Tibetans occupy towns and cultivate
farms to the north at a height from three to four thousand feet above
the snow line on the southern slope of the same mountains.
Looking at the matter broadly, then, and taking for granted the
now generally accepted modern view that the great oceans and great
continents have been relatively fixed (though liable to minor
fluctuations and variations of outline) throughout all geological
time, and that the earth's crust has not shifted from pole to
equator or vice versa, we arrive at last at the following probable
conclusions: There have always been seasons more or less marked, and
these have been more or less organically answered by corresponding
changes or cycles of change in plants and animals. Rain and drought
have in many cases more to do with such changes than variations of
temperature. The seasons, again, are less marked in the tropics
than in temperate and circumpolar climates. Nevertheless, even near
the equator, they exert and have always exerted certain organic
influences-have resulted in annual cycles in the life of species.
Even before the coming on of the Glacial epoch, the seasons were
probably somewhat more marked in the temperate and polar regions than
in the tropics, the longer day in summer and the greater directness
of impact of the rays making the summer months always warmer. But
for various reasons, among which we may presumably rank the absence
in early ages of high land at the poles and of an accumulated polar
ice cap, together with the existence of warm sea currents from the
tropics to the poles, the winters of preglacial ages seem to have
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