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
Multiplying the number of units of density of a portion of matter,
by the number of units of space occupied by it, we arrive at the
quantity of matter, or, as it is usually called, the *unit of mass*, as
indicated by the inertia and gravity it possesses. To proceed in the
most simple manner, the unit of mass ought to be that of a cubic unit
of matter of the standard density; but the founders of the metrical
system took as their unit of mass, the cubic centimetre of water, at
the temperature of maximum density (about 4° Cent.). They called this
unit of mass the *gramme*, and constructed standard specimens of the
kilogram, which might be readily referred to by all who required to
employ accurate weights. Unfortunately the determination of the bulk
of a given weight of water at a certain temperature is an operation
involving many difficulties, and it cannot be performed in the present
day with a greater exactness than that of about one part in 5000, the
results of careful observers being sometimes found to differ as much as
one part in 1000.[223]
[223] Clerk Maxwell’s *Theory of Heat*, p. 79.
Weights, on the other hand, can be compared with each other to at least
one part in a million. Hence if different specimens of the kilogram be
prepared by direct weighing against water, they will not agree closely
with each other; the two principal standard kilograms agree neither
with each other, nor with their definition. According to Professor
Miller the so-called Kilogramme des Archives weighs 15432·34874 grains,
while the kilogram deposited at the Ministry of the Interior in Paris,
as the standard for commercial purposes, weighs 15432·344 grains. Since
a standard weight constructed of platinum, or platinum and iridium, can
be preserved free from any appreciable alteration, and since it can be
very accurately compared with other weights, we shall ultimately attain
the greatest exactness in our measurements of mass, by assuming some
single kilogram as a *provisional standard*, leaving the determination
of its actual mass in units of space and density for future
investigation. This is what is practically done at the present day,
and thus a unit of mass takes the place of the unit of density, both
in the French and English systems. The English pound is defined by a
certain lump of platinum, preserved at Westminster, and is an arbitrary
mass, chosen merely that it may agree as nearly as possible with old
English pounds. The gallon, the old English unit of cubic measurement,
is defined by the condition that it shall contain exactly ten pounds
weight of water at 62° Fahr.; and although it is stated that it has the
capacity of about 277·274 cubic inches, this ratio between the cubic
and linear systems of measurement is not legally enacted, but left open
to investigation. While the French metric system as originally designed
was theoretically perfect, it does not differ practically in this point
from the English system.
*Natural System of Standards.*
Public-domain text, read in full here on John Shaqi.
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