On the magnet, magnetick bodies also, and on the great magnet the earth: a new physiology, demonstrated by many arguments & experiments
History
On the magnet, magnetick bodies also, and on the great magnet the earth: a new physiology, demonstrated by many arguments & experiments
Magnetism -- Early works to 1800
throwing off the dross. After the first smelting it is rather brittle and
by no means perfect. Wherefore with us (English) when the larger military
guns are cast, they purify the metal from dross more fully, so that they
may be stronger to withstand the force of the firing; and they do this by
making it pass again (in a fluid state) through a chink, by which process
it sheds its recremental matter. Smiths render iron sheets tougher with
certain liquids, and by blows of the hammer, and from them make shields and
breastplates that defy the blows of battle-axes. Iron becomes harder
through skill and proper tempering, but also by skill turns out in a softer
condition and as pliable as lead. It is made hard by the action of certain
waters into which while glowing it is plunged, as at Bambola and Tarazona
in Spain: It grows soft again, either by the effect of fire alone, when
without hammering and without water, it is left to cool by itself; or by
that of grease into which it is plunged; or {24} (that it may the better
serve for various trades) it is tempered variously by being skilfully
besmeared. Baptista Porta expounds this art in book 13 of his _Magia
Naturalis_. Thus this ferric and telluric nature is included and taken up
in various bodies of stones, ores, and earths; so too it differs in aspect,
in form, and in efficiency. Art smelts it by various processes, improves
it, and turns it, above all material substances, to the service of man in
trades and appliances without end. One kind of iron is adapted for
breastplates, another serves as a defence against shot, another protects
against swords and curved blades (commonly called scimitars), another is
used for making swords, another for horseshoes. From iron are made nails,
hinges, bolts, saws, keys, grids, doors, folding-doors, spades, rods,
pitchforks, hooks, barbs, tridents, pots, tripods, anvils, hammers, wedges,
chains, hand-cuffs, fetters, hoes, mattocks, sickles, baskets, shovels,
harrows, planes, rakes, ploughshares, forks, pans, dishes, ladles, spoons,
spits, knives, daggers, swords, axes, darts, javelins, lances, spears,
anchors, and much ship's gear. Besides these, balls, darts, pikes,
breastplates, helmets, cuirasses, horseshoes, greaves, wire, strings of
musical instruments, chairs, portcullises, bows, catapults, and (pests of
human kind) cannon, muskets, and cannon-balls, with endless instruments
unknown to the Latins: which things I have rehearsed in order that it may
be understood how great is the use of iron, which surpasses a hundred times
that of all the other metals; and is day by day being wrought by
metal-workers whose stithies are found in almost every village. For this is
the foremost of metals, subserving many and the greatest needs of man, and
abounds in the earth above all other metals, and is predominant. Wherefore
those Chemists are fools[76] who think that nature's will is to perfect all
metals into gold; she might as well be making ready to change all stones to
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