The Trouvelot astronomical drawings manualTrouvelot, E. L. (Etienne Leopold)
Science
The Trouvelot astronomical drawings manual
Trouvelot, E. L. (Etienne Leopold)
Astronomy -- Pictorial works
Since the Moon's orbit is inclined to that of the Earth, it must
necessarily intersect this orbit at two opposite points. These points
are called the nodes of the Moon's orbit. When our satellite passes
through either of the nodes when the Moon is new, it appears interposed
to some extent between the Sun and the Earth, and so produces a solar
eclipse; while if it passes a node when the Moon is full, it is more or
less obscured by the Earth's shadow, which then produces an eclipse of
the Moon. But, on the other hand, when the New Moon and the Full Moon do
not coincide with the passage of our satellite through the nodes of its
orbit, no eclipse can occur, since the Moon is not then on a line with
the Sun and the Earth, but above or below that line.
Owing to the ellipticity of the Moon's orbit, the distance of our
satellite from the Earth varies considerably during each of its
revolutions around us, and its apparent diameter is necessarily subject
to corresponding changes. Sometimes it is greater, sometimes it is less,
than the apparent diameter of the Sun. If it is greater at the time of a
solar eclipse, the eclipse will be total to a terrestrial observer
stationed nearly on the line of the centres of the Sun and Moon, while
it will be only partial to another observer stationed further from this
line. But the Moon's distance from the Earth may be so great and its
apparent diameter consequently so small that even those observers
nearest the central line of the eclipse see the border of the Sun all
round the black disk of the Moon; the eclipse is then annular. Even
during the progress of one and the same eclipse the distance of the Moon
from the parts of the Earth towards which its shadow is directed may
vary so much that, while the eclipse is total to some observers, others
equally near the central line, but stationed at a different place, will
see it as annular.
The shadow cast by the Moon on the Earth during total eclipses, travels
along upon the surface of the Earth, in consequence of the daily
movement of rotation of our globe combined with the movements of the
Earth and Moon in their orbits. The track of the Moon's shadow over the
Earth's surface has a general eastward course, so that the more westerly
observers see it earlier than those east of them. An eclipse may
continue total at one place for nearly eight minutes, but in ordinary
cases the total phase is much shorter.
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