A System of Logic: Ratiocinative and Inductive, 7th Edition, Vol. IIMill, John Stuart
Philosophy
A System of Logic: Ratiocinative and Inductive, 7th Edition, Vol. II
Mill, John Stuart
Knowledge, Theory of; Logic; Science -- Methodology
It appears, then, to be a condition of a genuinely scientific
hypothesis, that it be not destined always to remain an hypothesis, but
be of such a nature as to be either proved or disproved by comparison
with observed facts. This condition is fulfilled when the effect is
already known to depend on the very cause supposed, and the hypothesis
relates only to the precise mode of dependence; the law of the variation
of the effect according to the variations in the quantity or in the
relations of the cause. With these may be classed the hypotheses which
do not make any supposition with regard to causation, but only with
regard to the law of correspondence between facts which accompany each
other in their variations, though there may be no relation of cause and
effect between them. Such were the different false hypotheses which
Kepler made respecting the law of the refraction of light. It was known
that the direction of the line of refraction varied with every variation
in the direction of the line of incidence, but it was not known how;
that is, what changes of the one corresponded to the different changes
of the other. In this case any law, different from the true one, must
have led to false results. And, lastly, we must add to these, all
hypothetical modes of merely representing, or _describing_, phenomena;
such as the hypothesis of the ancient astronomers that the heavenly
bodies moved in circles; the various hypotheses of excentrics,
deferents, and epicycles, which were added to that original hypothesis;
the nineteen false hypotheses which Kepler made and abandoned respecting
the form of the planetary orbits; and even the doctrine in which he
finally rested, that those orbits are ellipses, which was but an
hypothesis like the rest until verified by facts.
In all these cases, verification is proof; if the supposition accords
with the phenomena there needs no other evidence of it. But in order
that this may be the case, I conceive it to be necessary, when the
hypothesis relates to causation, that the supposed cause should not only
be a real phenomenon, something actually existing in nature, but should
be already known to exercise, or at least to be capable of exercising,
an influence of some sort over the effect. In any other case, it is no
evidence of the truth of the hypothesis that we are able to deduce the
real phenomena from it.
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