The Forms of Water in Clouds and Rivers, Ice and GlaciersTyndall, John
Science
The Forms of Water in Clouds and Rivers, Ice and Glaciers
Tyndall, John
Clouds; Glaciers; Ice; Rivers; Water
285. Now cloth is what is called a bad conductor. It does not permit
heat to travel freely through it. But where it has merely to pass
through the thickness of a single bit of cloth, a good quantity of
the heat gets through. But if you double or treble or quintuple the
thickness of the cloth; or, what is easier, if you put several pieces
one upon the other, you come at length to a point where no sensible
amount of heat could get through from the upper to the under surface.
286. What must occur if such a thick piece, or such a series of
pieces of cloth, were placed upon snow on which a strong sun is
falling? The snow round the cloth is melted, but that underneath the
cloth is protected. If the action continue long enough the inevitable
result will be, that the level of the snow all round the cloth will
sink, and the cloth will be left behind perched upon an eminence of
snow.
287. If you understand this, you have already mastered the cause of
the moraine-ridges. They are not produced by any swelling of the ice
upwards. But the ice underneath the rocks and rubbish being protected
from the sun, the glacier right and left melts away and leaves a
ridge behind.
288. Various other appearances upon the glacier are accounted for
in the same way. Here upon the Mer de Glace we have flat slabs of
rock sometimes lifted up on pillars of ice. These are the so-called
_Glacier Tables_. They are produced, not by the growth of a stalk of
ice out of the glacier, but by the melting of the glacier all round
the ice protected by the stone. Here is a sketch of one of the Tables
of the Mer de Glace.
[Illustration]
289. Notice moreover that a glacier table is hardly ever set square
upon its pillar. It generally leans to one side, and repeated
observation teaches you that it so leans as to enable you always to
draw the north and south line upon the glacier. For the sun being
south of the zenith at noon pours its rays against the southern end
of the table, while the northern end remains in shadow. The southern
end, therefore, being most warmed does not protect the ice underneath
it so effectually as the northern end. The table becomes inclined,
and ends by sliding bodily off its pedestal.
290. In the figure opposite we have what maybe called an ideal
Table. The oblique lines represent the direction of the sunbeams,
and the consequent tilting of the table here shown resembles that
observed upon the glaciers.
291. A pebble will not rise thus: like Franklin's single bit of
cloth, a dark-coloured pebble sinks in the ice. A spot of black mould
will not rest upon the surface, but will sink; and various parts of
the Glacier du Géant are honeycombed by the sinking of such spots of
dirt into the ice.
[Illustration]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account