The principles of science : $b a treatise on logic and scientific methodJevons, William Stanley
Philosophy
The principles of science : $b a treatise on logic and scientific method
Jevons, William Stanley
Logic; Science -- Methodology
[194] *Principia*, bk. iii. Prop. 37, *Corollaries*, 2 and 3. Motte’s
translation, vol. ii. p. 310.
A few years ago it might have seemed impossible that we should ever
measure the velocity with which a star approaches or recedes from the
earth, since the apparent position of the star is thereby unaltered.
But the spectroscope now enables us to detect and even measure such
motions with considerable accuracy, by the alteration which it
causes in the apparent rapidity of vibration, and consequently in
the refrangibility of rays of light of definite colour. And while
our estimates of the lateral movements of stars depend upon our very
uncertain knowledge of their distances, the spectroscope gives the
motions of approach and recess irrespective of other motions excepting
that of the earth. It gives in short the motions of approach and recess
of the stars relatively to the earth.[195]
[195] Roscoe’s *Spectrum Analysis*, 1st ed. p. 296.
The rapidity of vibration for each musical tone, having been accurately
determined by comparison with the Syren (p. 10), we can use sounds as
indirect indications of rapid vibrations. It is now known that the
contraction of a muscle arises from the periodical contractions of each
separate fibre, and from a faint sound or susurrus which accompanies
the action of a muscle, it is inferred that each contraction lasts for
about one 300th part of a second. Minute quantities of radiant heat are
now always measured indirectly by the electricity which they produce
when falling upon a thermopile. The extreme delicacy of the method
seems to be due to the power of multiplication at several points in the
apparatus. The number of elements or junctions of different metals in
the thermopile can be increased so that the tension of the electric
current derived from the same intensity of radiation is multiplied;
the effect of the current upon the magnetic needle can be multiplied
within certain bounds, by passing the current many times round it in
a coil; the excursions of the needle can be increased by rendering it
astatic and increasing the delicacy of its suspension; lastly, the
angular divergence can be observed, with any required accuracy, by the
use of an attached mirror and distant scale viewed through a telescope
(p. 287). Such is the delicacy of this method of measuring heat, that
Dr. Joule succeeded in making a thermopile which would indicate a
difference of 0°·000114 Cent.[196]
[196] *Philosophical Transactions* (1859), vol. cxlix. p. 94.
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