The Botanic Garden, a Poem in Two Parts. Part 1: the Economy of VegetationDarwin, Erasmus
History
The Botanic Garden, a Poem in Two Parts. Part 1: the Economy of Vegetation
Darwin, Erasmus
Natural history; Plants -- Poetry; Portland Vase
It is probable all other bodies as well as air attract heat from their
neighbours when they are mechanically expanded, and give it out when
they are mechanically condensed. Thus when a vibration of the particles
of hard bodies is excited by friction or by percussion, these particles
mutually recede from and approach each other reciprocally; at the times
of their recession from each other, the body becomes enlarged in bulk,
and is then in a condition to attract heat from those in its vicinity
with great and sudden power; at the times of their approach to each
other this heat is again given out, but the bodies in contact having in
the mean while received the heat they had thus lost, from other bodies
behind them, do not so suddenly or so forcibly re-absorb the heat again
from the body in vibration; hence it remains on its surface like the
electric fluid on a rubbed glass globe, and for the same reason, because
there is no good conductor to take it up again. Hence at every vibration
more and more heat is acquired and stands loose upon the surface; as in
filing metals or rubbing glass tubes; and thus a smith with a few
strokes on a nail on his anvil can make it hot enough to light a
brimstone-match; and hence in striking flint and steel together heat
enough is produced to vitrify the parts thus strucken off, the quantity
of which heat is again probably increased by the new chemical
combination.
II. The analogy between the phenomena of the electric fluid and of heat
furnishes another argument in support of the existence of heat as a
gravitating fluid. 1. They are both accumulated by friction on the
excited body. 2. They are propagated easily or with difficalty along the
same classes of bodies; with ease by metals, with less ease by water;
and with difficulty by resins, bees-wax, silk, air, and glass. Thus
glass canes or canes of sealing-wax may be melted by a blow-pipe or a
candle within a quarter of an inch of the fingers which hold them,
without any inconvenient heat, while a pin or other metallic substance
applyed to the flame of a candle so readily conducts the heat as
immediately to burn the fingers. Hence clothes of silk keep the body
warmer than clothes of linen of equal thickness, by confining the heat
upon the body. And hence plains are so much warmer than the summits of
mountains by the greater density of the air confining the acquired heat
upon them. 3. They both give out light in their passage through air,
perhaps not in their passage through a vacuum. 4. They both of them fuse
or vitrify metals. 5. Bodies after being electrized if they are
mechanically extended will receive a greater quantity of electricity, as
in Dr. Franklin's experiment of the chain in the tankard; the same seems
true in respect to heat as explained above. 6. Both heat and electricity
contribute to suspend steam in the atmosphere by producing or increasing
the repulsion of its particles. 7. They both gravitate, when they have
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