Those who have effected discoveries with large instruments have done
so in spite of the impediment alluded to. Relying mainly upon great
illuminating power, bad or indifferent definition has been tolerated;
and they have succeeded in detecting minute satellites, faint nebulæ,
clusters, and small companions to double stars. Telescopes of great
aperture are at home in this kind of work. But when we come to consider
discoveries on the surfaces of the Sun, Moon, and planets, the case
is entirely different; the diligent use of small appliances appears
to have left little for the larger constructions to do. There are
some thousands of drawings of the objects named, made by observers
employing telescopes from 3 up to 72 inches in diameter; and a careful
inspection shows that the smaller instruments have not been outdone in
this interesting field of observation. In point of fact they rather
appear to have had the advantage, and the reason of this is perhaps
sufficiently palpable. The details on a bright planetary object are apt
to become obliterated in the glare of a large instrument. Even with a
small telescope objects like Venus and Jupiter are best seen at about
the time of sunset, and before their excessive brilliancy on the dark
sky is enabled to act prejudicially in effacing the delicate markings.
Probably this is one of the causes which, in combination with the
undulations of the atmosphere, have restricted the discoveries of large
instruments chiefly to faint satellites, stars, and nebulæ.
Prof. Young ascribes many of the successes of small instruments to
exceptional cuteness of vision on the part of certain observers, and to
the fact that such instruments are so very numerous and so diligently
used that it is fair to conclude they must reap the main harvest of
discoveries. We must remember that for every observer working with an
aperture of 18 inches and more, there are more than a hundred employing
objectives or specula of from 5 to 12 inches; hence we may expect some
notable instances of keen sight amongst the latter. The success of men
like Dawes and others, who outstrip their contemporaries, and with
small glasses achieve phenomenal results, is to be ascribed partly
to good vision and partly to that natural aptitude and pertinacity
uniformly characteristic of the best observers. These circumstances go
far to explain the unproductiveness of large telescopes: in the race
for distinction they are often distanced by their more numerous and
agile competitors.
Public-domain text, read in full here on John Shaqi.
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