In placing the theodolite over a station to be observed from, the
first point to be attended to is that it shall rest upon a perfectly
solid foundation. The method of obtaining this desideratum must depend
entirely on the nature of the ground; the instrument must if possible
be supported on rock, or if that be impossible a solid foundation must
be obtained by digging. When the theodolite is required to be raised
above the surface of the ground in order to command particular points,
it is necessary to build two scaffolds,--the outer one to carry the
observatory, the inner one to carry the instrument,--and these two
edifices must have no point of contact. Many cases of high scaffolding
have occurred on the English Ordnance Survey, as for instance at
Thaxted church, where the tower, 80 ft. high, is surmounted by a spire
of 90 ft. The scaffold for the observatory was carried from the base
to the top of the spire; that for the instrument was raised from a
point of the spire 140 ft. above the ground, having its bearing upon
timbers passing through the spire at that height. Thus the instrument,
at a height of 178 ft. above the ground, was insulated, and not
affected by the action of the wind on the observatory.
At every station it is necessary to examine and correct the
adjustments of the theodolite, which are these: the line of
collimation of the telescope must be perpendicular to its axis of
rotation; this axis perpendicular to the vertical axis of the
instrument; and the latter perpendicular to the plane of the horizon.
The micrometer microscopes must also measure correct quantities on the
divided circle or circles. The method of observing is this. Let A, B,
C ... be the stations to be observed taken in order of azimuth; the
telescope is first directed to A and the cross-hairs of the telescope
made to bisect the object presented by A, then the microscopes or
verniers of the horizontal circle (also of the vertical circle if
necessary) are read and recorded. The telescope is then turned to B,
which is observed in the same manner; then C and the other stations.
Coming round by continuous motion to A, it is again observed, and the
agreement of this second reading with the first is some test of the
stability of the instrument. In taking this round of angles--or "arc,"
as it is called on the Ordnance Survey--it is desirable that the
interval of time between the first and second observations of A should
be as small as may be consistent with due care. Before taking the next
arc the horizontal circle is moved through 20 deg. or 30 deg.; thus a
different set of divisions of the circle is used in each arc, which
tends to eliminate the errors of division.
Public-domain text, read in full here on John Shaqi.
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