A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.Cutbush, James
History
A system of pyrotechny : $b Comprehending the theory and practice, with the application of chemistry; designed for exhibition and for war.
Cutbush, James
Fireworks; Military fireworks
Since heat is put in motion as a consequence of the increased
capacity of a body, and, by combining with a substance whose capacity
has been increased, becomes by degrees quiescent, according to
the respective capacities of bodies; cold is an effect, which is
occasioned by this change from a free to a combined or quiescent
state. The absorption of heat, necessary for the generation of
cold, if so we may consider it, takes place in every instance,
where that effect is observed. The heat of surrounding bodies, in a
distributable state, is now no longer characterised as such; and the
consequence is, therefore, that that particular sensation, or effect
follows.
Cold may be produced by saline mixtures, the salts for which having
their full quantum of the water of crystallization; and by the
evaporation of fluids, as water, alcohol and ether. In the one
case, that of the freezing mixtures, we have seen, that the effect
is produced by the _absorption_ of heat; and with regard to the
cold produced by fluids, even in _vacuo_, (where the effect is more
instantaneous), the cause is attributable to evaporation; for the
fluid changes from a liquid to an aeriform state, and during this
transition robs the body, with which it was in contact, of a part of
its caloric, and thereby reduces its temperature. Artificial ice is
made on this principle.
The next subject with regard to heat, is the different modes in which
it tends to a state of rest. There are some facts in relation to this
subject worthy of notice; and particularly, that, in the tendency of
caloric to become quiescent, after having been put in motion, bodies
often increase in temperature. This tendency to a state of rest is
effected either by the conducting power of bodies, or radiation.
Heat radiates in all directions, and in quantities, according to
the experiments of Leslie, more or less variable, which depend on
the nature of the radiating surface. Hence that power, which bodies
possess, called the radiating power, varies in different substances.
Thus, the radiating power of lampblack is 100, while gold, silver,
copper, and tin plate are 12, from which it appears that the metals
distribute less heat by radiation. That caloric obeys the same
laws as light, is obvious from Pictet's experiments with concave
mirrors, where the calorific rays move in the same order, the angle
of incidence being equal to the angle of reflection. It is also
refracted; hence the concentration of the solar rays in a focus by
the burning glass. Various experiments have been made with mirrors,
and concave reflectors. The effect of the former in destroying the
fleet before Syracuse, an experiment made by Archimedes, is a fact
well authenticated in history. Concave reflectors have inflamed
gunpowder. This subject, however, is noticed at large, when speaking
of mirrors as an incendiary in war.
Public-domain text, read in full here on John Shaqi.
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