_Measurement of Base Lines._
To determine by actual measurement on the ground the length of a side
of one of the triangles ("base line"), wherefrom to infer the lengths
of all the other sides in the triangulation, is not the least
difficult operation of a trigonometrical survey. When the problem is
stated thus--To determine the number of times that a certain standard
or unit of length is contained between two finely marked points on the
surface of the earth at a distance of some miles asunder, so that the
error of the result may be pronounced to lie between certain very
narrow limits,--then the question demands very serious consideration.
The representation of the unit of length by means of the distance
between two fine lines on the surface of a bar of metal at a certain
temperature is never itself free from uncertainty and probable error,
owing to the difficulty of knowing at any moment the precise
temperature of the bar; and the transference of this unit, or a
multiple of it, to a measuring bar will be affected not only with
errors of observation, but with errors arising from uncertainty of
temperature of both bars. If the measuring bar be not
self-compensating for temperature, its expansion must be determined by
very careful experiments. The thermometers required for this purpose
must be very carefully studied, and their errors of division and index
error determined.
In order to avoid the difficulty in exactly determining the
temperature of a bar by the mercury thermometer, F.W. Bessel
introduced in 1834 near Konigsberg a compound bar which constituted a
metallic thermometer.[1] A zinc bar is laid on an iron bar two toises
long, both bars being perfectly planed and in free contact, the zinc
bar being slightly shorter and the two bars rigidly united at one end.
As the temperature varies, the difference of the lengths of the bars,
as perceived by the other end, also varies, and affords a quantitative
correction for temperature variations, which is applied to reduce the
length to standard temperature. During the measurement of the base
line the bars were not allowed to come into contact, the interval
being measured by the insertion of glass wedges. The results of the
comparisons of four measuring rods with one another and with the
standards were elaborately computed by the method of least-squares.
The probable error of the measured length of 935 toises (about 6000
ft.) has been estimated as 1/863500 or 1.2 [mu] ([mu] denoting a
millionth). With this apparatus fourteen base lines were measured in
Prussia and some neighbouring states; in these cases a somewhat higher
degree of accuracy was obtained.
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