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
But there is another method which avoids almost all these sources of error,
and this is now generally preferred and adopted for these measurements. It
is, that of measuring the distance between two stars situated apparently
very near each other, one of which has large proper motion, while the other
has none which is measurable. The proper motions of the stars was first
suspected by Halley in 1717, from finding that several stars, whose places
had been given by Hipparchus, 130 B.C., were not in the positions where
they now ought to be; and other observations by the old astronomers,
especially those of occultations of stars by the moon, led to the same
result. Since the time of Halley very accurate observations of the stars
have been made, and in many cases it is found that they move perceptibly
from year to year, while others move so slowly that it is only after forty
or fifty years that the motion can be detected. The greatest proper motions
yet determined amount to between 7" and 8" in a year, while other stars
require twenty, or even fifty or a hundred years to show an equal amount of
displacement. At first it was thought that the brightest stars would have
the largest proper motion, because it was supposed they were nearest to us,
but it was soon found that many small and quite inconspicuous stars moved
as rapidly as the most brilliant, while in many very bright stars no
proper motion at all can be detected. That which moves most rapidly is a
small star of less than the sixth magnitude.
It is a matter of common observation that the motion of things at a
distance cannot be perceived so well as when near, even though the speed
may be the same. If a man is seen on the top of a hill several miles off,
we have to observe him closely for some time before we can be sure whether
he is walking or standing still. But objects so enormously distant as we
now know that the stars are, may be moving at the rate of many miles in a
second and yet require years of observation to detect any movement at all.
Public-domain text, read in full here on John Shaqi.
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