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 this problem of measuring the sun's distance, and through it the
dimensions of the orbits of all the planets of our system, sinks into
insignificance when compared with the enormous difficulties in the way of
the determination of the distance of the stars. As a great many people,
perhaps the majority of the readers of any popular scientific book, have
little knowledge of mathematics and cannot realise what an angle of a
minute or a second really means, a little explanation and illustration of
these terms will not be out of place. An angle of one degree (1°) is the
360th part of a circle (viewed from its centre), the 90th part of a right
angle, the 60th part of either of the angles of an equilateral triangle. To
see exactly how much is an angle of one degree we draw a short line (B C)
one-tenth of an inch long, and from a point we draw straight lines to B
and C. Then the angle at A is one degree.
Now, in all astronomical work, one degree is considered to be quite a large
angle. Even before the invention of the telescope the old observers fixed
the position of the stars and planets to half or a quarter of a degree,
while Mr. Proctor thinks that Tycho Brahé's positions of the stars and
planets were correct to about one or two minutes of arc. But a minute of
arc is obtained by dividing the line B C into sixty equal parts and seeing
the distance between two of these with the naked eye from the point A. But
as very long-sighted people can see very minute objects at 10 or 12 inches
distance, we may double the distance A B, and then making the line B C one
three-hundredth part of an inch long, we shall have the angle of one minute
which Tycho Brahé was perhaps able to measure. How very large an amount a
minute is to the modern astronomer is, however, well shown by the fact that
the maximum difference between the calculated and observed positions of
Uranus, which led Adams and Leverrier to search for and discover Neptune,
was only 1-1/2 minutes, a space so small as to be almost invisible to the
average eye, so that if there had been two planets, one in the calculated,
the other in the observed place, they would have appeared as one to
unassisted vision.
Public-domain text, read in full here on John Shaqi.
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