In optical theories two vectors are introduced, of which one is regarded
as a velocity, the other as a vortex. Here again is a neutral
hypothesis, since the same conclusions would have been reached by taking
precisely the opposite. The success of the experiment, then, can not
prove that the first vector is indeed a velocity; it can only prove one
thing, that it is a vector. This is the only hypothesis that has really
been introduced in the premises. In order to give it that concrete
appearance which the weakness of our minds requires, it has been
necessary to consider it either as a velocity or as a vortex, in the
same way that it has been necessary to represent it by a letter, either
_x_ or _y_. The result, however, whatever it may be, will not prove that
it was right or wrong to regard it as a velocity any more than it will
prove that it was right or wrong to call it _x_ and not _y_.
These neutral hypotheses are never dangerous, if only their character is
not misunderstood. They may be useful, either as devices for
computation, or to aid our understanding by concrete images, to fix our
ideas as the saying is. There is, then, no occasion to exclude them.
The hypotheses of the third class are the real generalizations. They are
the ones that experiment must confirm or invalidate. Whether verified or
condemned, they will always be fruitful. But for the reasons that I have
set forth, they will only be fruitful if they are not too numerous.
ORIGIN OF MATHEMATICAL PHYSICS.--Let us penetrate further, and study
more closely the conditions that have permitted the development of
mathematical physics. We observe at once that the efforts of scientists
have always aimed to resolve the complex phenomenon directly given by
experiment into a very large number of elementary phenomena.
This is done in three different ways: first, in time. Instead of
embracing in its entirety the progressive development of a phenomenon,
the aim is simply to connect each instant with the instant immediately
preceding it. It is admitted that the actual state of the world depends
only on the immediate past, without being directly influenced, so to
speak, by the memory of a distant past. Thanks to this postulate,
instead of studying directly the whole succession of phenomena, it is
possible to confine ourselves to writing its 'differential equation.'
For Kepler's laws we substitute Newton's law.
Next we try to analyze the phenomenon in space. What experiment gives us
is a confused mass of facts presented on a stage of considerable extent.
We must try to discover the elementary phenomenon, which will be, on the
contrary, localized in a very small region of space.
Public-domain text, read in full here on John Shaqi.
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