Evolution; Knowledge, Theory of; Philosophy and religion
A single force is divided by conflict with matter into forces that
widely diverge. In the case lately cited, of a body shattered by violent
collision, besides the change of the homogeneous mass into a
heterogeneous group of scattered fragments, there is a change of the
homogeneous momentum into a group of momenta, heterogeneous in both
amounts and directions. Similarly with the forces we know as light and
heat. After the dispersion of these by a radiating body towards all
points, they are re-dispersed towards all points by the bodies on which
they fall. Of the Sun’s rays, issuing from him on every side, some few
strike the Moon. These being reflected at all angles from the Moon’s
surface, some few of them strike the Earth. By a like process the few
which reach the Earth are again diffused through surrounding space. And
on each occasion, such portions of the rays as are absorbed instead of
reflected, undergo refractions that equally destroy their parallelism.
More than this is true. By conflict with matter, a uniform force
is in part changed into forces differing in their directions; and in
part it is changed into forces differing in their kinds. When one body
is struck against another, that which we usually regard as the effect,
is a change of position or motion in one or both bodies. But a moment’s
thought shows that this is a very incomplete view of the matter. Besides
the visible mechanical result, sound is produced; or, to speak
accurately, a vibration in one or both bodies, and in the surrounding
air: and under some circumstances we call this the effect. Moreover, the
air has not simply been made to vibrate, but has had currents raised in
it by the transit of the bodies. Further, if there is not that great
structural change which we call fracture, there is a disarrangement of
the particles of the two bodies around their point of collision;
amounting in some cases to a visible condensation. Yet more, this
condensation is accompanied by disengagement of heat. In some cases a
spark—that is, light—results, from the incandescence of a portion struck
off; and occasionally this incandescence is associated with chemical
combination. Thus, by the original mechanical force expended in the
collision, at least five, and often more, different kinds of forces have
been produced. Take, again, the lighting of a candle. Primarily, this is
a chemical change consequent on a rise of temperature. The process of
combination having once been set going by extraneous heat, there is a
continued formation of carbonic acid, water, &c.—in itself a result more
complex than the extraneous heat that first caused it. But along with
this process of combination there is a production of heat; there is a
production of light; there is an ascending column of hot gases
generated; there are currents established in the surrounding air. Nor
does the decomposition of one force into many forces end here. Each of
the several changes worked becomes the parent of further changes.
Public-domain text, read in full here on John Shaqi.
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