“All the solid bodies with which we are surrounded are constantly
undergoing changes of bulk corresponding to the variations of
temperature. * * The expansion and contraction of metals by heat and
cold form subjects of serious and careful attention to chronometer
makers, as will appear by the following statements:--The length of the
pendulum vibrating seconds, in vacuo, in the latitude of London (51°
31′ 8″ north), at the level of the sea, and at the temperature of 62°,
has been ascertained with the greatest precision to be 39·13929 inches:
now, as the metal of which it is composed is constantly subject to
variation of temperature, it cannot but happen that its _length_ is
constantly varying; and when it is further stated that if the “bob”
be let down ¹⁄₁₀₀th of an inch, the clock will lose 10 seconds in 24
hours; that the elongation of ¹⁄₁₀₀₀th of an inch will cause it to lose
one second per day; and that a change of temperature equal to 30° Fah.
will alter its length ¹⁄₅₀₀₀th part and occasion an error in the rate
of going of 8 seconds per day, it will appear evident that some plan
must be devised for obviating so serious an inconvenience.”[6]
[6] “Noad’s Lectures on Chemistry,” p. 41.
From these data it is readily seen that the variations in the rate
of a pendulum as it is carried from the equator towards the north
are sufficiently explained, without supposing that they arise from a
peculiar spheroidal form of the Earth.
Others have attributed the variable motions of the pendulum to
increased density of the air on going northwards. That the condition
of the air must have some influence in this respect will be seen
from the following extract from experiments on pendulums by Dr.
Derham, recorded in numbers 294 and 480 of the _Philosophical
Transactions_:--“The arches of vibration _in vacuo_ were larger than
in the open air, or in the receiver before it was exhausted; the
enlargement or diminution of the arches of vibration were _constantly
proportional_ to the _quantity of air_, or rarity, or density of it,
which was left in the receiver of the air-pump. And as the _vibrations_
were _longer_ or _shorter_, _so_ the _times_ were accordingly, viz.,
two seconds in an hour when the vibrations were longest, and less and
less as the air was re-admitted, and the vibrations shortened.”
Thus there are two distinct and tangible causes which necessarily
operate to produce the variable oscillations of a pendulum, without
supposing any distortion in the supposed rotundity of the Earth. First,
if the pendulum vibrates in the air, which is colder and therefore
denser in the north than at the equator, it must be more or less
resisted in its passage through it; and, secondly, if it vibrates _in
vacuo_, the temperature being less, the length must be less, the arcs
of vibration less, and the velocity greater. In going towards the
equator, the temperature increases, the length becomes greater, the
arcs increase, and the times of vibration diminish.
Public-domain text, read in full here on John Shaqi.
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