At the commencement of each lunation, the Moon is between the Sun and
the Earth, and its non-illuminated hemisphere is turned toward us. This
is the New Moon, invisible to us; but two days later, the slim crescent
of Diana sheds a gentle radiance upon the Earth. Gradually the crescent
enlarges. When the Moon arrives at right angles with ourselves and with
the Sun, half the illuminated hemisphere is presented to us. This is the
first quarter. At the time of Full Moon, it is opposite the Sun, and we
see the whole of the hemisphere illuminated. Then comes the decline: the
brilliant disk is slightly corroded at first; it diminishes from day to
day, and about a week before the New Moon our fair friend only shows her
profile before she once more passes in front of the Sun: this is the
last quarter.
[Illustration: FIG. 70.--The Moon's Phases.]
When the Moon is crescent, in the first evenings of the lunation, and
after the last quarter, the rest of the disk is visible, illuminated
feebly by a pale luminosity. This is known as the ashy light. It is due
to the shine of the Earth, reflecting the light received from the Sun
into space. Accordingly the ashy light is the reflection of our own sent
back to us by the Moon. It is the reflection of a reflection.
This rotation of the Moon round the Earth is accomplished in
twenty-seven days, seven hours, forty-three minutes, eleven seconds; but
as the Earth is simultaneously revolving round the Sun, when the Moon
returns to the same point (the Earth having become displaced relatively
to the Sun), the Moon has to travel two days longer to recover its
position between the Sun and the Earth, so that the lunar month is
longer than the sidereal revolution of the Moon, and takes twenty-nine
days, twelve hours, forty-four minutes, three seconds. This is the
duration of the sequence of phases.
This revolution is accomplished at a distance of 384,000 kilometers
(238,000 miles). The velocity of the Moon in its orbit is more than 1
kilometer (0.6214 mile) per second. But our planet sweeps it through
space at a velocity almost thirty times greater.
The diameter of the Moon represents 273/1000 that of the Earth, _i.e._,
3,480 kilometers (2,157 miles).
Its surface = 38,000,000 square kilometers (15,000,000 square miles), a
little more than the thirteenth part of the terrestrial surface, which
= 510,000,000 (200,000,000 square miles).
In volume, the Moon is fifty times less than the Earth. Its mass or
weight is only 1/81 that of the terrestrial globe. Its density = 0.615,
relatively to that of the Earth, _i.e._, a little more than three times
that of water. Weight at its surface is very little: 0.174. A kilogram
transported thither would only weigh 174 grams.
* * * * *
Public-domain text, read in full here on John Shaqi.
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