Man's Place in the Universe: A Study of the Results of Scientific Research in Relation to the Unity or Plurality of Worlds, 3rd Edition — John Shaqi
Man's Place in the Universe: A Study of the Results of Scientific Research in Relation to the Unity or Plurality of Worlds, 3rd EditionWallace, Alfred Russel
Science
Man's Place in the Universe: A Study of the Results of Scientific Research in Relation to the Unity or Plurality of Worlds, 3rd Edition
Wallace, Alfred Russel
Life; Plurality of worlds; Stars
That such a change of colour would occur was pointed out by Professor
Doppler of Prague in 1842, and it is hence usually spoken of as the
'Doppler principle'; but as the changes of colour were so minute as to be
impossible of measurement it was not at that time of any practical
importance in astronomy. But when the dark lines in the spectrum were
carefully mapped, and their positions determined with minute accuracy, it
was seen that a means of measuring the changes produced by motion in the
line of sight existed, since the position of any of the dark or coloured
lines in the spectra of the heavenly bodies could be compared with those of
the corresponding lines produced artificially in the laboratory. This was
first done in 1868 by Sir William Huggins, who, by the use of a very
powerful spectroscope constructed for the purpose, found that such a change
did occur in the case of many stars, and that their rate of motion towards
us or away from us--the radial motion--could be calculated. As the actual
distance of some of these stars had been measured, and their change of
position annually (their proper motion) determined, the additional factor
of the amount of motion in the direction of our line of sight completed the
data required to fix their true line of motion among the other stars. The
accuracy of this method under favourable conditions and with the best
instruments is very great, as has been proved by those cases in which we
have independent means of calculating the real motion. The motion of Venus
towards or away from us can be calculated with great accuracy for any
period, being a resultant of the combined motions of the planet and of our
earth in their respective orbits. The radial motions of Venus were
determined at the Lick Observatory in August and September 1890, by
spectroscopic observations, and also by calculation, to be as follows:--
By Observation. By Calculation.
Aug. 16th. 7.3 miles per second. 8.1 miles per second.
" 22nd. 8.9 " " " 8.2 " " "
" 30th. 7.3 " " " 8.3 " " "
Sep. 3rd. 8.3 " " " 8.3 " " "
" 4th. 8.2 " " " 8.3 " " "
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