The Arctic World : $b Its plants, animals, and natural phenomena. With a historical sketch of Arctic discovery, down to the British polar expedition: 1875-76.Anonymous
Science
The Arctic World : $b Its plants, animals, and natural phenomena. With a historical sketch of Arctic discovery, down to the British polar expedition: 1875-76.
Anonymous
Arctic regions; Arctic regions -- Discovery and exploration -- British
When the temperature of water rises, the surface molecules first
become liquid, then gaseous; being placed beyond the coercitive action
of the surrounding particles, they are easily set free; transported,
on the contrary, into the centre of the mass, they are brought
absolutely under the influence of this action, which induces a new
solidification,--or, to use the scientific term, a _regelation_.
In this way it becomes easy to understand how very various forms can be
communicated by simple pressure to a fragment of ice. If the observer
successively places a straight bar in moulds of increasing curvature,
he may easily compel it to assume the shape of a ring or even of a
knot. In each mould, it is true, the ice breaks; but if the pressure is
kept up, the surfaces of the fragments are brought into contact, and
adhere so as to re-establish a condition of continuity. A snowball may
thus be converted into a sphere of ice, and the sphere, by constant
pressure, into a cup or a statue.
Professor Tyndall refers to a remarkable instance of regelation which
he observed one day in early spring. A layer of snow, not quite two
inches thick, had fallen on the glass roof of a small conservatory, and
the internal air, warming the panes, had melted the snow so far as it
was in immediate contact with them. The entire layer had slipped down
the pane, and projected beyond the edge of the roof, without falling,
and had bent and curved as required, just like a flexible body.
[Illustration: MOULDING ICE.]
The snow-fields which overspread the upper part of every glacier,
whether in the Arctic Regions or elsewhere, are composed of
crystallized snow, whose fragile, delicate, and fairy-like architecture
endures so long as it remains dry, but undergoes a great transformation
when the sun, melting the upper stratum, allows the water to
interpenetrate its substance. The fluid, congealing anew during the
night, transforms the snow into the condition technically known as
_névé_; a term given by the Swiss physicists to a granular mass
composed of small rounded icicles, disaggregated, but more adhesive
than snow-flakes, and of a density intermediate between that of snow
and that of ice. Under the pressure of new layers, and as a result of
infiltrations of water, the _névé_ unites, and solders into ice of
constantly increasing compactness.
But glacier-ice presents some other curious peculiarities. Every
abundant snow-fall on the summit of the mountains forms a layer easily
distinguishable from preceding layers--which, in most cases, have
already passed into the _névé_ condition. This stratification
becomes more apparent when the whiteness of the surface has been
sullied by dirt or dust wafted on “the wings of the wind.” It is
perceptible also in ice; but here we must not confound it with another
phenomenon of which the cause is different, the _veined structure_.
Public-domain text, read in full here on John Shaqi.
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