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
56. _Size of the Earth._--The size of the earth is ascertained by
measuring the length of a degree of a meridian, and multiplying this by
three hundred and sixty. This gives the circumference of the earth as
about twenty-five thousand miles, and its diameter as about eight
thousand miles. We know that the two stations between which we measure
are one degree apart when the elevation of the pole at one station is
one degree greater than at the other.
57. _The Earth Flattened at the Poles._--Degrees on the meridian have
been measured in various parts of the earth, and it has been found that
they invariably increase in length as we proceed from the equator
towards the pole: hence the earth must curve less and less rapidly as we
approach the poles; for the less the curvature of a circle, the larger
the degrees on it.
[Illustration: Fig. 68.]
58. _The Earth in Space._--In Fig. 68 we have a view of the earth
suspended in space. The side of the earth turned towards the sun is
illumined, and the other side is in darkness. As the planet rotates on
its axis, successive portions of it will be turned towards the sun. As
viewed from a point in space between it and the sun, it will present
light and dark portions, which will assume different forms according to
the portion which is illumined. These different appearances are shown in
Fig. 69.
[Illustration: Fig. 69.]
Day and Night.
59. _Day and Night._--The succession of day and night is due to _the
rotation of the earth on its axis_, by which a place on the surface of
the earth is carried alternately into the sunshine and out of it. As the
sun moves around the heavens on the ecliptic, it will be on the
celestial equator when at the equinoxes, and 23-1/2° north of the
equator when at the summer solstice, and 23-1/2° south of the equator
when at the winter solstice.
60. _Day and Night when the Sun is at the Equinoxes._--When the sun is
at either equinox, the diurnal circle described by the sun will coincide
with the celestial equator; and therefore half of this diurnal circle
will be above the horizon at every point on the surface of the globe. At
these times _day and night will be equal in every part of the earth_.
[Illustration: Fig. 70.]
[Illustration: Fig. 71.]
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