Astronomy in a nutshell : $b The chief facts and principles explained in popular language for the general reader and for schoolsServiss, Garrett Putman
Science
Astronomy in a nutshell : $b The chief facts and principles explained in popular language for the general reader and for schools
Serviss, Garrett Putman
Astronomy -- Juvenile literature
We must now explain a little more fully what the vernal equinox is, and
why it has been chosen as the “Greenwich of the Sky.” Its position is
not marked by any star, but is determined by means of the intersecting
circles that we have described. There is one other such circle, that we
have not yet mentioned, which bears a peculiar relation to the vernal
equinox. This is the ecliptic. Just as the daily, or diurnal, rotation
of the earth on its axis causes the whole celestial sphere to appear to
make one revolution every day, so the yearly or annual revolution of the
earth in its orbit about the sun causes the sun to appear to make one
revolution through the sky every year. As the earth moves onward in its
orbit, the sun seems to move in the opposite direction. Inasmuch as
there are 360° in a complete circle and 365 days in a year, the apparent
motion of the sun amounts to nearly 1° per day, or 30° per month. In
twelve months, then, the sun comes back again to the place in the sky
which it occupied at the beginning of the year. Since the motion of the
earth in its orbit is from west to east (the same as that of its
rotation on its axis), it follows that the direction of the sun's
apparent annual motion in the sky is from east to west (like its daily
motion). Thus, while _in fact_ the earth pursues a path, or orbit, round
the sun, the sun _seems_ to pursue a path round the earth. This apparent
path of the sun, projected against the background of the sky, is called
the ecliptic. The name arises from the fact that eclipses only occur
when the moon is in or near the plane of the sun's apparent path.
As the apparent motion of the sun round the ecliptic is caused by the
real motion of the earth round the sun, we may regard the ecliptic as a
circle marking the intersection of the plane of the earth's orbit with
the celestial sphere. In other words, if we were situated on the sun
instead of on the earth, we would see the earth travelling round the sky
in the circle of the ecliptic. We must keep this fact, that the ecliptic
indicates the plane of the earth's orbit, firmly in mind, in order to
understand what follows.
The ecliptic is not coincident with the celestial equator, for the
following reason: The axis of the earth's daily rotation is not parallel
to, or does not point in the same direction as, the axis of its yearly
revolution round the sun. As the axis of rotation is perpendicular to
the equator, so the axis of the yearly revolution is perpendicular to
the ecliptic, and since these two axes are inclined to one another, it
results that the equator and the ecliptic must lie in different planes.
The inclination of the plane of the ecliptic to that of the equator
amounts to about 23½°.
Public-domain text, read in full here on John Shaqi.
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