The determination of the difference of longitude between two stations
A and B resolves itself into the determination of the local time at
each of the stations, and the comparison by signals of the clocks at A
and B. Whenever telegraphic lines are available these comparisons are
made by telegraphy. A small and delicately-made apparatus introduced
into the mechanism of an astronomical clock or chronometer breaks or
closes by the action of the clock an electric circuit every second. In
order to record the minutes as well as seconds, one second in each
minute, namely that numbered 0 or 60, is omitted. The seconds are
recorded on a chronograph, which consists of a cylinder revolving
uniformly at the rate of one revolution per minute covered with white
paper, on which a pen having a slow movement in the direction of the
axis of the cylinder describes a continuous spiral. This pen is
deflected through the agency of an electromagnet every second, and
thus the seconds of the clock are recorded on the chronograph by
offsets from the spiral curve. An observer having his hand on a
contact key in the same circuit can record in the same manner his
observed times of transits of stars. The method of determination of
difference of longitude is, therefore, virtually as follows. After the
necessary observations for instrumental corrections, which are
recorded only at the station of observation, the clock at A is put in
connexion with the circuit so as to write on both chronographs,
namely, that at A and that at B. Then the clock at B is made to write
on both chronographs. It is clear that by this double operation one
can eliminate the effect of the small interval of time consumed in the
transmission of signals, for the difference of longitude obtained from
the one chronograph will be in excess by as much as that obtained from
the other will be in defect. The determination of the personal errors
of the observers in this delicate operation is a matter of the
greatest importance, as therein lies probably the chief source of
residual error.
These errors can nevertheless be almost entirely avoided by using the
impersonal micrometer of Dr Repsold (Hamburg, 1889). In this device
there is a movable micrometer wire which is brought by hand into
coincidence with the star and moved along with it; at fixed points
there are electrical contacts, which replace the fixed wires.
Experiments at the Geodetic Institute and Central Bureau at Potsdam in
1891 gave the following personal equations in the case of four
observers:--
Older Procedure. New Procedure.
A-B -0^s.108 -0^s.004
A-G -0^s.314 -0^s.035
A-S -0^s.184 -0^s.027
B-G -0^s.225 +0^s.013
B-S -0^s.086 -0^s.023
G-S +0^s.109 -0^s.006
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