it is technically called, involves a certain amount of rather tedious
calculation, and though in modern observatories the process has been
so far systematised that it can be carried out almost according to
fixed rules by comparatively unskilled assistants, in Bradley’s time
it required more judgment, and it is doubtful if his assistants could
have performed the work satisfactorily, even if their time had not been
fully occupied with other duties. Bradley himself probably found the
necessary calculations tedious, and preferred devoting his energies to
work of a higher order. It is true that Delambre, the famous French
historian of astronomy, assures his readers that he had never found
the reduction of an observation tedious if performed the same day,
but a glance at any of his books is enough to shew his extraordinary
fondness for long calculations of a fairly elementary character, and
assuredly Bradley is not the only astronomer whose tastes have in this
respect differed fundamentally from Delambre’s. Moreover reducing
an observation is generally found to be a duty that, like answering
letters, grows harder to perform the longer it is neglected; and it
is not only less interesting but also much more difficult for an
astronomer to deal satisfactorily with some one else’s observations
than with his own. It is not therefore surprising that after Bradley’s
death a long interval should have elapsed before an astronomer appeared
with both the skill and the patience necessary for the complete
reduction of Bradley’s 60,000 observations.
A variety of circumstances combined to make Bradley’s observations
decidedly superior to those of his predecessors. He evidently
possessed in a marked degree the personal characteristics—of eye and
judgment—which make a first-rate observer; his instruments were mounted
in the best known way for securing accuracy, and were constructed by
the most skilful makers; he made a point of studying very carefully the
defects of his instruments, and of allowing for them; his discoveries
of aberration and nutation enabled him to avoid sources of error,
amounting to a considerable number of seconds, which his predecessors
could only have escaped imperfectly by taking the average of a number
of observations; and his improved tables of refraction still further
added to the correctness of his results.
Bessel estimates that the errors in Bradley’s observations of
the declination of stars were usually less than 4″, while the
corresponding errors in right ascension, a quantity which depends
ultimately on a time-observation, were less than 15″, or one second of
time. His observations thus shewed a considerable advance in accuracy
compared with those of Flamsteed (§ 198), which represented the best
that had hitherto been done.
Public-domain text, read in full here on John Shaqi.
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