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
412. I will now describe to you an attempt that has been made of
late years to reconcile the brittleness of ice with, its motion in
glaciers. It is founded on the observation, made by Mr. Faraday in
1850, that when two pieces of thawing ice are placed together they
freeze together at the place of contact.
413. This fact may not surprise you; still it surprised Mr. Faraday
and others, and men of very great distinction in science have
differed in their interpretation of the fact. The difficulty is to
explain where, or how, in ice already thawing the cold is to be
found requisite to freeze the film of water between the two touching
surfaces.
414. The word _Regelation_ was proposed by Dr. Hooker to express the
freezing together of two pieces of thawing ice observed by Faraday;
and the memoir in which the term was first used was published by Mr.
Huxley and Mr. Tyndall in the Philosophical Transactions for 1857.
415. The _fact_ of regelation, and its application irrespective of
the _cause_ of regelation, may be thus illustrated:--Saw two slabs
from a block of ice, and bring their flat surfaces into contact; they
immediately freeze together. Two plates of ice, laid one upon the
other, with flannel round them overnight, are sometimes so firmly
frozen in the morning that they will rather break elsewhere than
along their surface of junction. If you enter one of the dripping
ice-caves of Switzerland, you have only to press for a moment a slab
of ice against the roof of the cave to cause it to freeze there and
stick to the roof.
416. Place a number of fragments of ice in a basin of water, and
cause them to touch each other; they freeze together where they
touch. You can form a chain of such fragments; and then, by taking
hold of one end of the chain, you can draw the whole series after it.
Chains of icebergs are sometimes formed in this way in the Arctic
seas.
417. Consider what follows from these observations. Snow consists of
small particles of ice. Now if by pressure we squeeze out the air
entangled in thawing snow, and bring the little ice-granules into
close contact, they may be expected to freeze together; and if the
expulsion of the air be complete, the squeezed snow may be expected
to assume the appearance of compact ice.
418. We arrive at this conclusion by reasoning; let us now test it by
experiment, employing a suitable hydraulic press, and a mould to hold
the snow. In exact accordance with our expectation, we convert by
pressure the snow into ice.[H]
[H] A similar experiment was made by the Messrs. Schlagintweit prior
to the discovery which explains it, and which therefore remained
unsolved.
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