_The Boiling-point Thermometer._—The temperature at which water
boils depends on the pressure of the atmosphere, so that an accurate
observation of the boiling-point of water enables the pressure of the
atmosphere at the moment of observation to be determined with the utmost
accuracy. This method of determining atmospheric pressure having been
used hitherto almost solely for the purpose of measuring altitudes, the
boiling-point thermometer is usually known as the Hypsometer, but its
records are quite as valuable for use at fixed stations as in mountain
climbing. Mr. J. Y. Buchanan recommends the use of a boiling-point
thermometer with a very open scale graduated to fiftieths of a degree
Centigrade and entirely enclosed in a wide glass tube through which
steam from water boiling in a copper vessel is passing. On a thermometer
of this kind change of pressure can be measured by the change of
boiling-point more accurately than with the aid of a mercurial barometer.
See Table, Vol. I., p. 293.
2. OBSERVATIONS FOR FORECASTING THE WEATHER.—The familiar name of
“weather-glass” is appropriately applied to the barometer, for in most
parts of the world it is the surest indicator of any approaching storm.
The scientific prediction of the weather by means of the barometer
involves the comparison of the simultaneous readings of barometers over
as wide an area as possible, and can only be carried out where there is
a complete telegraph system and a public department charged with the
work. The storms of wind and rain which break the more usual steady
weather are usually associated with the formation of centres of low
atmospheric pressure towards which wind blows in from every side. These
atmospheric depressions move, as a rule, in fairly regular tracks, the
rate of movement of the centre of the depression having no relation to
the rate at which the wind blows or to the direction of the wind. The
term _cyclone_ is usually applied to such a moving depression, because of
the rotating winds round the centre; but the size of a cyclone may vary
from a vast atmospheric eddy extending across the whole breadth of the
Atlantic to one only a few miles in diameter. The strength of the wind in
a cyclone depends on the barometric gradient; in other words, the greater
the difference in atmospheric pressure between two neighbouring points
the stronger is the wind that blows between them. Or, when a cyclone is
passing over an observer, the more rapidly the barometer falls _or rises_
the stronger may the wind be expected to blow.
In direct contrast to the cyclone or depression is the system of high
pressure rising to a centre from which the wind blows out on every
side. This is called an anticyclone, and is a condition which, once
established, may last for many days, or even weeks, without change. It is
the typical condition for dry calm weather in all parts of the world.
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