The possibility of perception, as we have seen already, depends upon
the occurrence in the physical world of processes which may be called
"radiations," provided the word is used somewhat more widely than is
customary. The processes commonly called radiations are, naturally,
the most perfect examples. In these, when they are undisturbed, we
have a condition of some kind which spreads outward from a centre,
changing in an apparently continuous manner as it travels. Something
may be met with on the way which alters the law of change, or even
stops the radiation in some direction altogether; but in the absence of
obstacles the process proceeds according to its own intrinsic laws. The
public senses—sight, hearing, and smell—depend upon radiations, in a
generalized sense in the case of smell. Bodily senses, including touch,
are more analogous to electric currents in their manner of propagation:
they travel along nerves, but not through air or empty space. The
public senses, also, travel along nerves, but the disturbance in the
nerves is a prolongation, with alterations, of a process in the world
outside the percipient's body, which is not the case with the bodily
senses. It is owing to the existence of radiations that we live in
a common world, since this depends upon the fact that neighbouring
percipients receive similar stimuli at about the same time. The
physical account of radiations is, however, very different in different
cases. In the case of smell, the emission theory is universally
accepted: we smell a body because portions of it travel from it to
the nose. In the case of sound, only a process, not actual matter, is
transmitted, but the process is in matter. In the case of light, if
we accept the undulatory theory, the process consists of a transverse
vibration, which may be said to be in the æther if that brings comfort
to the speaker, but is certainly not in ordinary matter. If we could
accept the light-quantum theory, we should still suppose that there is
some periodic process, such that the action during one period[Pg 317] is
(Planck's constant); the light consists of (so to speak) atoms, each
of which is such a process. There is a great difference of physical
importance between these three cases of smell, sound, and light; the
first is quite unimportant physically, the second a somewhat late
development from more fundamental principles, the third a corner-stone
of physical theory.
Public-domain text, read in full here on John Shaqi.
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