Scientific American, September 29, 1883 Supplement. No. 404Various
Science
Scientific American, September 29, 1883 Supplement. No. 404
Various
Science -- Periodicals
All these are continually exposed to atmospheric agencies toward which
they act very differently. The oxidized ores of iron and tin do not
change their character. The sulphur compounds, at least when near
the surface, are oxidized, and hand in hand with this process goes
the partial reduction of certain metals to the metallic state. Gold
and silver, and to a less extent copper, are subject to this change;
they are unmasked and are exposed to day light, not as stones, but
as brilliant, malleable metals. Finally, the heavy ores and metallic
particles are loosened from the rocks by the destructive action of
water, floated off, elutriated, and washed. In undisturbed mountain
ranges the mineral treasures lie in masses before our eyes.
The native shining and malleable metals (gold, silver, and copper)
naturally first attracted the attention of man. They may have used the
separate nuggets for ornaments as they found them, or after hammering
them together into plates. This was surely the first step in the use of
metals. It can scarcely be supposed that this use of soft native metals
contributed much to the progress of mankind, and it is highly probable
that in those early times the noble metal had but little value. The
shining particles, as long as the natural supply lasted, seemed like
worthless tinsel. Copper, which can be made into tools and vessels,
as well as soft, poor weapons, was more highly prized. Such materials
were not, indeed, suitable and able to take the place of stone tools
and weapons; nevertheless, this working of metals served as preparation
for the more complicated work of later times. Man learned to hammer and
shape metals, and he found out that the operation was much facilitated
by heating the metal.
The discovery of iron meteorites may have had some value. In these the
smith first became acquainted with the properties of a hard metal. But
I would not attach too much importance to this. The art of working
metals is not the possession of a people that have a few meteoric
knives. In my opinion the metallurgical preparation of the hard metals
from their ores is alone decisive on this point.
The volks' sagas frequently mention some god or hero, who discovered
and taught metallurgy, yet there is scarcely any doubt that the "god,"
in most cases, was human ingenuity led by chance.
We have already seen that only certain metals are found native, while
the hard metals under normal conditions remain in the form of oxide or
mineral. They have a strong affinity for the oxygen of the air, and
can only be separated and converted into metals by powerful chemical
agents. There is _one_ substance which has a still more powerful
attraction for oxygen than those metals. This is ignited carbon, which,
in its fight with the metallic oxides, robs them of their oxygen.
Public-domain text, read in full here on John Shaqi.
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