The Science of the StarsMaunder, E. Walter (Edward Walter)
History
The Science of the Stars
Maunder, E. Walter (Edward Walter)
Astronomy
Another consequence of the careful watch upon the stars was the
discovery that five of them were planets; "wandering" stars; they did
not move all in one piece with the rest of the celestial host. In this
they resemble the Sun and Moon, and they further resemble the Moon in
that, though too small for any change of shape to be detected, they
change in brightness from time to time. But their movements are more
complicated than those of the other heavenly bodies. The Sun moves a
little slower than the stars, and so seems to travel amongst them from
west to east; the Moon moves much slower than the stars, so her motion
from west to east is more pronounced than that of the Sun. But the
five planets sometimes move slower than the stars, sometimes quicker,
and sometimes at the same rate. Two of the five, which we now know as
Mercury {18} and Venus, never move far from the Sun, sometimes being
seen in the east before he rises in the morning, and sometimes in the
west after he has set in the evening. Mercury is the closer to the
Sun, and moves more quickly; Venus goes through much the greater
changes of brightness. Jupiter and Saturn move nearly at the same
average rate as the stars, Saturn taking about thirteen days more than
a year to come again to the point of the sky opposite to the Sun, and
Jupiter about thirty-four days. Mars, the fifth planet, takes two
years and fifty days to accomplish the same journey.
These planetary movements were not, like those of the Sun and Moon and
stars, of great and obvious consequence to men. It was important to
men to know when they would have moonlight nights, to know when the
successive seasons of the year would return. But it was no help to men
to know when Venus was at her brightest more than when she was
invisible. She gave them no useful light, and she and her companion
planets returned at no definite seasons. Nevertheless, men began to
make ordered observations of the planets--observations that required
much more patience and perseverance than those of the other celestial
lights. And they set themselves with the greatest ingenuity to unravel
the secret of their complicated and seemingly capricious movements.
This was a yet higher development than anything that had gone before,
for men were devoting time, trouble, and patient thought, for long
series of years, to an inquiry which did not promise to bring them any
profit or advantage. Yet the profit which it actually did bring was of
the highest order. It developed men's mental powers; it led to the
devising of {19} instruments of precision for the observations; it led
to the foundation of mathematics, and thus lay at the root of all our
modern mechanical progress. It brought out, in a higher degree,
ordered observation and ordered thought.
{20}
CHAPTER II
ASTRONOMY BEFORE THE TELESCOPE
Public-domain text, read in full here on John Shaqi.
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