The story of the universe. Volume 2 (of 4) : $b The earth : land and sea
History
The story of the universe. Volume 2 (of 4) : $b The earth : land and sea
Astronomy; Earth (Planet); Natural history
But these organic remains are not the only evidence of the geological
winter. There are a number of phenomena indicating that during
this period two vast caps of ice stretched from the northern pole
southward and from the southern pole northward, extending in each
case far toward the equator, and that ice fields, such as now spread
over the Arctics, covered a great part of the Temperate Zones, while
the line of perpetual ice and snow in the tropical mountain ranges
descended far below its present limits.
The first essential condition for the formation of glaciers in
mountain ranges is the shape of their valleys. Glaciers are by no
means in proportion to the height and extent of mountains. There
are many mountain chains as high or higher than the Alps which can
boast of but few and small glaciers, if, indeed, they have any. In
the Andes, the Rocky Mountains, the Pyrenees, the Caucasus, the few
glaciers remaining from the great ice period are insignificant in
size. The volcanic, cone-like shape of the Andes gives, indeed, but
little chance for the formation of glaciers, though their summits
are capped with snow. The glaciers of the Rocky Mountains have been
little explored, but it is known that they are by no means extensive.
In the Pyrenees there is but one great glacier, though the height
of these mountains is such that, were the shape of their valleys
favorable to the accumulation of snow, they might present beautiful
glaciers. In the Tyrol, on the contrary, as well as in Norway and
Sweden, we find glaciers as fine as those of Switzerland in mountain
ranges much lower than either of the above-mentioned chains. But they
are of diversified forms, and have valleys widening upward on the
slope of long crests. The glaciers on the Caucasus are very small in
proportion to the height of the range; but on the northern side of
the Himalayas there are large and beautiful ones, while the southern
slope is almost destitute of them. Spitzbergen and Greenland are
famous for their extensive glaciers, coming down to the seashore,
where huge masses of ice, many hundred feet in thickness, break off
and float away into the ocean as icebergs.
At the Aletsch in Switzerland, where a little lake lies in a deep cup
between the mountains, with the glacier coming down to its brink, we
have these Arctic phenomena on a small scale; a miniature iceberg
may often be seen to break off from the edge of the larger mass and
float out upon the surface of the water. Icebergs were first traced
back to their true origin by the nature of the land ice of which they
were always composed, and which is quite distinct in structure and
consistency from the marine ice produced by frozen sea water, and
called “ice flow” by the Arctic explorers, as well as from the pond
or river ice, resulting from the simple congelation of fresh water,
the laminated structure of which is in striking contrast to the
granular structure of glacier ice.
Public-domain text, read in full here on John Shaqi.
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