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
We must now describe another and quite distinct application of the
spectroscope, which is even more marvellous than that already described. It
is the method of measuring the rate of motion of any of the visible
heavenly bodies in a direction either directly towards us, or directly away
from us, technically described as 'radial motion,' or by the
expression--'in the line of sight.' And the extraordinary thing is that
this power of measurement is altogether independent of distance, so that
the rate of motion in miles per second of the remotest of the fixed stars,
if sufficiently bright to show a distinct spectrum, can be measured with as
much certainty and accuracy as in the case of a much nearer star or a
planet.
In order to understand how this is possible we have again to refer to the
wave-theory of light; and the analogy of other wave-motions will enable us
better to grasp the principle on which these calculations depend. If on a
nearly calm day we count the waves that pass each minute by an anchored
steamboat, and then travel in the direction the waves come from, we shall
find that a larger number pass us in the same time. Again, if we are
standing near a railway, and an engine comes towards us whistling, we shall
notice that it changes its tone as it passes us; and as it recedes the
sound will be in a lower key, although the engine may be at exactly the
same distance from us as when it was approaching. Yet the sound does not
change to the ear of the engine driver, the cause of the change being that
the sound-waves reach us in quicker succession as the source of the waves
is approaching us than when it is retreating from us. Now, just as the
pitch of a note depends upon the rapidity with which the successive
air-vibrations reach our ear, so does the colour of a particular part of
the spectrum depend upon the rapidity with which the ethereal waves which
produce colour reach our eyes; and as this rapidity is greater when the
source of the light is approaching than when it is receding from us, a
slight shifting of the position of the coloured bands, and therefore of the
dark lines, will occur, as compared with their position in the spectrum of
the sun or of any stationary source of light, if there is any motion
sufficient in amount to produce a perceptible shift.
Public-domain text, read in full here on John Shaqi.
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