The Trouvelot astronomical drawings manualTrouvelot, E. L. (Etienne Leopold)
Science
The Trouvelot astronomical drawings manual
Trouvelot, E. L. (Etienne Leopold)
Astronomy -- Pictorial works
Soon after the beginning of an eclipse, the dark segment produced by the
Earth's shadow on the Moon's disk generally appears of a dark grayish
opaque color, but with the progress of the phenomenon, this dark tint is
changed into a dull reddish color, which, gradually increasing, attains
its greatest intensity when the eclipse is total. At that moment the
color of the Moon is of a dusky, reddish, coppery hue, and the general
features of the Moon's surface are visible as darker and lighter tints
of the same color. It sometimes happens, however, that our satellite
does not exhibit this peculiar coppery tint, but appears either blackish
or bluish, in which case it is hardly distinguishable from the sky.
It is very rare for the Moon to disappear completely during totality,
and even when involved in the deepest part of the Earth's shadow, our
satellite usually remains visible to the naked eye, or, at least, to the
telescope. This phenomenon is to be attributed to the fact that the
portion of the solar rays which traverse the lower strata of our
atmosphere are strongly refracted, and bend inward in such a manner that
they fall on the Moon, and sufficiently illuminate its surface to make
it visible. The reddish color observed is caused by the absorption of
the blue rays of light by the vapors which ordinarily-saturate the lower
regions of our atmosphere, leaving only red rays to reach the Moon's
surface. Of course, these phenomena are liable to vary with every
eclipse, and depend almost exclusively on the meteorological conditions
of our atmosphere.
In some cases the phase of totality lasts longer than it should,
according to calculation. This can be attributed to the fact that the
Earth is enveloped in a dense atmosphere, in which opaque clouds of
considerable extent are often forming at great elevations. Such strata
of clouds, in intercepting the Sun's light, would have, of course, the
effect of increasing the diameter of the Earth's shadow, in a direction
corresponding to the place they occupy, and, if the Moon were moving in
this direction, would increase the phase of total obscuration.
The eclipses of the Moon, like those of the Sun, as shown above, have a
cycle of 18 years, 11 days and 7 hours, and recur after this period of
time in nearly the same order. They can, therefore, be approximately
predicted by adding 18y. 11d. 7h. to the date of the eclipses which have
occurred during the preceding period. During this cycle 70 eclipses will
occur--41 being eclipses of the Sun and 29 eclipses of the Moon. At no
time can there ever be more than seven eclipses in a year, and there are
never less than two. When there are only two eclipses in a year, they
are both eclipses of the Sun.
Public-domain text, read in full here on John Shaqi.
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