Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
If Hipparchus or Galileo should return to earth to-night and look at the
stars and constellations as we see them, there would be no change
whatever discernible in either the brightness of the stars or in their
relative positions. So the name fixed stars would appear to have been
well chosen. Halley in the seventeenth century was the first to detect
that slow relative change of position of a few stars which is known as
proper motion, and all the modern catalogues give the proper motions in
both right ascension and declination. These are simply the small annual
changes in position athwart the line of vision; and, as a whole, the
proper motions of the brighter stars exceed the corresponding motions of
the fainter ones because they are nearer to us. The average proper
motion of the brightest stars is 0".25, and of stars of the sixth
magnitude only one-sixth as great.
A few extreme cases of proper motion have been detected, one as large as
9", of an orange yellow star of the eighth magnitude in the southern
constellation Pictor, and Barnard has recently discovered a star with a
proper motion exceeding 10"; several determinations of its parallax give
0".52, corresponding to a distance of 6.27 light years. Nevertheless,
two centuries would elapse before these stars would be displaced as much
as the breadth of the moon among their neighbors in the sky. The proper
motions of stars are along perfectly straight lines, so far as yet
observed. Ultimately we may find a few moving in curved paths or orbits,
but this is hardly likely.
As for a central sun hypothesis, that pointing out Alcyone in
particular, there is no reliable evidence whatever. Analysis of the
proper motions of stars in considerable numbers, first by Sir William
Herschel, showed that they were moving radially from the constellation
Hercules, and in great numbers also toward the opposite side of the
stellar sphere. Later investigation places this point, called the sun's
goal, or apex of the sun's way, over in the adjacent constellation Lyra;
and the opposite point, or the sun's quit, is about halfway between
Sirius and Canopus. By means of the radial velocities of stars in these
antipodal regions of the sky, it is found that the sun's motion toward
Lyra, carrying all his planetary family along with him, is taking place
at the rate of about 12 miles in every second.
Public-domain text, read in full here on John Shaqi.
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