The Heavens Above: A Popular Handbook of AstronomyRolfe, W. J. (William James)
Science
The Heavens Above: A Popular Handbook of Astronomy
Rolfe, W. J. (William James)
Astronomy
78. _The Day._--By the term _day_ we sometimes denote the period of
sunshine as contrasted with that of the absence of sunshine, which we
call _night_, and sometimes the period of the earth's rotation on its
axis. It is with the latter signification that the term is used in this
section. As the earth rotates on its axis, it carries the meridian of a
place with it; so that, during each complete rotation of the earth, the
portion of the meridian which passes overhead from pole to pole sweeps
past every star in the heavens from west to east. The _interval between
two successive passages of this portion of the meridian across the same
star_ is the exact period of the complete rotation of the earth. This
period is called a _sidereal day_. The sidereal day may also be defined
as _the interval between two successive passages of the same star across
the meridian_; the passage of the meridian across the star, and the
passage or _transit_ of the star across the meridian, being the same
thing looked at from a different point of view. The interval _between
two successive passages of the meridian across the sun_, or _of the sun
across the meridian_, is called a _solar day_.
79. _Length of the Solar Day._--The solar day is a little longer than
the sidereal day. This is owing to the sun's eastward motion among the
stars. We have already seen that the sun's apparent position among the
stars is continually shifting towards the east at a rate which causes it
to make a complete circuit of the heavens in a year, or three hundred
and sixty-five days. This is at the rate of about one degree a day:
hence, were the sun and a star on the meridian together to-day, when the
meridian again came around to the star, the sun would appear about one
degree to the eastward: hence the meridian must be carried about one
degree farther in order to come up to the sun. The solar day must
therefore be _about four minutes longer_ than the sidereal day.
[Illustration: Fig. 90.]
[Illustration: Fig. 91.]
The fact that the earth must make more than a complete rotation is also
evident from Figs. 90 and 91. In Fig. 90, _ba_ represents the plane of
the meridian, and the small arrows indicate the direction the earth is
rotating on its axis, and revolving in its orbit. When the earth is at
1, the sun is on the meridian at _a_. When the earth has moved to 2, it
has made a complete rotation, as is shown by the fact that the plane of
the meridian is parallel with its position at 1; but it is evident that
the meridian has not yet come up with the sun. In Fig. 91, _OA_
represents the plane of the meridian, and _OS_ the direction of the sun.
The small arrows indicate the direction of the rotation and revolution
of the earth. In passing from the first position to the second the earth
makes a complete rotation, but the meridian is not brought up to the
sun.
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