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
32. A common sunbeam contains waves of all kinds, but it is possible
to _sift_ or _filter_ the beam so as to intercept all its light, and
to allow its obscure heat to pass unimpeded. For substances have been
discovered which, while intensely opaque to the light-waves, are
almost perfectly transparent to the others. On the other hand, it is
possible, by the choice of proper substances, to intercept in a great
degree the pure heat-waves, and to allow the pure light-waves free
transmission. This last separation is, however, not so perfect as the
first.
33. We shall learn presently how to detach the one class of waves
from the other class, and to prove that waves competent to light a
fire, fuse metal, or burn the hand like a hot solid, may exist in a
perfectly dark place.
34. Supposing, then, that we withdraw, in the first instance the
large heat-waves, and allow the light-waves alone to pass. These
may be concentrated by suitable lenses and sent into water without
sensibly warming it. Let the light-waves now be withdrawn, and the
larger heat-waves concentrated in the same manner; they may be caused
to boil the water almost instantaneously.
35. This is the point to which I wished to lead you, and which
without due preparation could not be understood. You now perceive the
important part played by these large darkness-waves, if I may use
the term, in the work of evaporation. When they plunge into seas,
lakes, and rivers, they are intercepted close to the surface, and
they heat the water at the surface, thus causing it to evaporate;
the light-waves at the same time entering to great depths without
sensibly heating the water through which they pass. Not only,
therefore, is it the sun's fire which produces evaporation, but a
particular constituent of that fire, the existence of which you
probably were not aware of.
36. Further, it is these selfsame lightless waves which, falling upon
the glaciers of the Alps, melt the ice and produce all the rivers
flowing from the glaciers; for I shall prove to you presently that
the light-waves, even when concentrated to the uttermost, are unable
to melt the most delicate hoar-frost; much less would they be able to
produce the copious liquefaction observed upon the glaciers.
37. These large lightless waves of the sun, as well as the
heat-waves issuing from non-luminous hot bodies, are frequently
called obscure or invisible heat.
We have here an example of the manner in which phenomena, apparently
remote, are connected together in this wonderful system of things
that we call Nature. You cannot study a snow-flake profoundly without
being led back by it step by step to the constitution of the sun. It
is thus throughout Nature. All its parts are interdependent, and the
study of any one part completely would really involve the study of
all.
§ 5. _Experiments to prove the foregoing Statements._
Public-domain text, read in full here on John Shaqi.
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