A Popular History of Astronomy During the Nineteenth Century: Fourth EditionClerke, Agnes M. (Agnes Mary)
History
A Popular History of Astronomy During the Nineteenth Century: Fourth Edition
Clerke, Agnes M. (Agnes Mary)
Astronomy -- History -- 19th century
Thus, when Sir Norman Lockyer entered on that branch of inquiry in 1872,
fourteen substances were recognised as common to the earth and sun.
Early in 1878 he was able to increase the list provisionally to
thirty-three,[677] all except hydrogen metals. This rapid success was
due to his adoption of the test of _length_ in lieu of that of
_strength_ in the comparison of lines. He measured their relative
significance, in other words, rather by their persistence through a wide
range of temperature, than by their brilliancy at any one temperature.
The distinction was easily drawn. Photographs of the electric arc, in
which any given metal had been volatilised, showed some of the rays
emitted by it stretching across the axis of the light to a considerable
distance on either side, while many others clung more or less closely to
its central hottest core. The former "long lines," regarded as certainly
representative, were those primarily sought in the solar spectrum; while
the attendant "short lines," often, in point of fact, due to foreign
admixtures, were set aside as likely to be misleading.[678] The
criterion is a valuable one, and its employment has greatly helped to
quicken the progress of solar chemistry.
Carbon was the first non-metallic element discovered in the sun. Messrs.
Trowbridge and Hutchins of Harvard College concluded in 1887,[679] on
the ground of certain spectral coincidences, that this protean substance
is vaporised in the solar atmosphere at a temperature approximately that
of the voltaic arc. Partial evidence to the same effect had earlier been
alleged by Lockyer, as well as by Liveing and Dewar; and the case was
rendered tolerably complete by photographs taken by Kayser and Runge in
1889.[680] It was by Professor Rowland shown to be irresistible. Two
hundred carbon-lines were, through his comparisons, sifted out from
sunlight, and it contains others significant of the presence of
silicon--a related substance, and one as important to rock-building on
the earth, as carbon is to the maintenance of life. The general result
of Rowland's labours was the establishment among solar materials, not
only of these two out of the fourteen metalloids, or non-metallic
substances, but of thirty-three metals, including silver and tin. Gold,
mercury, bismuth, antimony, and arsenic were discarded from the
catalogue; platinum and uranium, with six other metals, remained
doubtful; while iron was recorded as crowding the spectrum with over two
thousand obscure rays.[681] Gallium-absorption was detected in it by
Hartley and Ramage in 1889.[682]
Dr. Henry Draper[683] announced, in 1877, his imagined discovery, in the
solar spectrum, of eighteen especially brilliant spaces corresponding to
oxygen-emissions. But the agreement proved, when put to the test of very
high dispersion, to be wholly illusory.[684] Nor has it yet been found
possible to identify, in analysed sunlight, any significant _bright_
beams.[685]
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