As to the second objection, I will admit its validity. But here, too, we
have a phenomenon appearing in all branches and forms of science.
Therefore we must familiarize ourselves with it in advance. Science was
created by man for man's purposes, and, consequently, like all human
achievements, possesses the indestructible quality of imperfection. But
the mere fact that a successful working science exists, with the help of
which human life has been fundamentally modified, signifies that _the
quality of incompleteness in human learning is no hindrance to its
efficiency_. For what science has once worked out always contains a
portion of truth, hence a portion of efficiency. The old corpuscular
theory of light, which now seems so childishly incomplete to us, was
adequate, none the less, for satisfactorily explaining the phenomena of
reflection and refraction, and the finest telescopes have been built
with its help. This is due to the _true elements_ in it, which taught us
correctly to calculate the direction of rays of light in reflection and
refraction. The rest was merely an arbitrary accessory which had to fall
when new, contradictory facts were discovered. These facts could not
have been taken into consideration when the theory was propounded,
because they were not yet known. But when the corpuscular theory of
light was replaced by the theory of waves of an elastic ether, geometric
optics at first remained quite unchanged, because the theory of straight
lines of rays could be deduced from the new views also, though not so
easily and smoothly. And geometric optics was then concerned with
nothing but these straight lines, in no wise with the question of their
propagation. It did not become clear until recently that this conception
of straight lines of rays is incomplete, though, it is true, it made a
first approach toward the presentation of actual phenomena. It fails
when it comes to characterize the behavior of a pencil of rays of large
aperture. The old idea of a straight line of rays was to be replaced by
a more complex concept with more varied characteristics, namely, the
wave-surface. The greater variety of this concept renders possible the
presentation of the greater variety of the optical phenomena just
mentioned. And from it proceed the very considerable advances that have
been made, since the new theory was propounded, in optical instruments,
especially the microscope and the photographic objective, for the
purposes of which pencils of rays of large aperture are required. The
astronomic objective with its small angle of aperture has not undergone
particularly important improvements.
Public-domain text, read in full here on John Shaqi.
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