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
As we know that the moon is, like the earth, a nonluminous body, and
shines only by virtue of the sunlight falling upon it, clearly an entire
half of the moon's globe must be perpetually illumined by sunlight. The
varying phases then are due simply to that part of the illuminated
hemisphere which is turned toward us. New moon is entirely invisible
because the sunward hemisphere is turned wholly away from us, while at
full moon we see the lunar disk complete because we are on the same side
of the moon that the sun is and practically in line with both sun and
moon.
If we could visit the moon, we should see the earth in exactly
complementary phase. At new moon here we should be enjoying full earth
there, and full moon here would be coincident with new or dark earth
there. The narrow crescent of new moon here would be the period of
gibbous earth there; and it is the reflection of sunlight from this
gibbous earth which illuminates the part of the moon but faintly seen at
this time, popularly known as the "old moon in the new moon's arms." Its
greater visibility at some times than at others is due to greater
prevalence of clouded area in the reflecting regions of the earth turned
toward the moon, and the higher reflective power of clouds than that
possessed by mere land and water.
As the moon goes all the way round the sky every month, the same as the
sun does in a year, and travels in nearly the same path, clearly it must
also go north and south every month as the sun does. So in midsummer
when the sun runs high upon the meridian, we expect to find full moons
running low, and likewise in midwinter the full moon always runs high,
as almost everyone has sometimes or other noticed.
This eastward or true orbital motion of the moon is responsible for
another relation which soon comes to light when we begin to observe the
moon; and that is the later hour of rising or setting each night. Our
clock time is regulated by the sun, which also is moving eastward about
1° daily, or twice its own breadth. So the moon's eastward gain on the
sun amounts to about 12 degrees daily, and one degree being equal to 4
minutes, the retarded time of moonrise or moonset each day amounts to
very nearly 50 minutes on the average; though sometimes the delay will
be less than a half hour and at other times it will exceed an hour and a
quarter. The season of least retardation of rising of the full moon is
in the autumn, and so the moon that falls in late September or October
is known as the Harvest moon, and the next succeeding full moon is
called the Hunter's moon.
Public-domain text, read in full here on John Shaqi.
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