Eclectic Magazine of Foreign Literature, Science, and Art, January 1885Various
General
Eclectic Magazine of Foreign Literature, Science, and Art, January 1885
Various
American literature -- Periodicals; Literature -- Periodicals
From the time that Lord Rosse’s great reflector was pointed to the sky
in February, 1845, it began to be distinctly felt that instrumental
power had outrun its opportunities. To the sounding of further depths
of space it came to be understood that Atlantic mists and tremulous
light formed an obstacle far more serious than any mere optical or
mechanical difficulties. The late Mr. Lassell was the first to act on
this new idea. Towards the close of 1852 he transported his beautiful
24-inch Newtonian to Malta, and, in 1859-60, constructed, for service
there, one of four times its light capacity. Yet the chief results
of several years’ continuous observation under rarely favorable
conditions were, in his own words, “rather negative than positive.”[6]
He dispelled the “ghosts” of four Uranian moons which had, by glimpses,
haunted the usually unerring vision of the elder Herschel, and showed
that our acquaintance with the satellite families of Saturn, Uranus,
and Neptune must, for the present at any rate, be regarded as complete;
but the discoveries by which his name is chiefly remembered were made
in the murky air of Lancashire.
The celebrated expedition to the Peak of Teneriffe, carried out in
the summer of 1856 by the present Astronomer Royal for Scotland, was
an experiment made with the express object of ascertaining “how much
astronomical observation can be benefited by eliminating the lower
third or fourth part of the atmosphere.”[7] So striking were the
advantages of which it seemed to hold out the promise, that we count
with surprise the many years suffered to elapse before any adequate
attempt was made to realize them.[8] Professor Piazzi Smyth made his
principal station at Guajara, 8,903 feet above the sea, close to the
rim of the ancient crater from which the actual peak rises to a further
height of more than 3,000 feet. There he found that his equatorial
(five feet in focal length) showed stars fainter by _four magnitudes_
than at Edinburgh. On the Calton Hill the companion of Alpha Lyræ
(eleventh magnitude) could never, under any circumstances, be made out.
At Guajara it was an easy object twenty-five degrees from the zenith;
and stars of the fourteenth magnitude were discernible. Now, according
to the usual estimate, a step downwards from one magnitude to
another means a decrease of lustre in the proportion of two to five.
A star of the fourteenth order of brightness sends us accordingly
only 1/39th as much light as an average one of the tenth order. So
that, in Professor Smyth’s judgment, the grasp of his instrument was
virtually _multiplied thirty-nine times_ by getting rid of the lowest
quarter of the atmosphere.[9] In other words (since light falls off
in intensity as the square of the distance of its source increases),
the range of vision was more than sextupled, further depths of space
being penetrated to an extent probably to be measured by thousands of
billions of miles!
Public-domain text, read in full here on John Shaqi.
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