The Trouvelot astronomical drawings manualTrouvelot, E. L. (Etienne Leopold)
Science
The Trouvelot astronomical drawings manual
Trouvelot, E. L. (Etienne Leopold)
Astronomy -- Pictorial works
In its endless journey through space, our globe is not solitary, like
some of the planets, but is attended by the Moon, our nearest celestial
neighbor. Although the Moon does not attain to the dignity of a planet,
and remains a secondary body in the solar system, yet, owing to its
proximity to our globe, and to the great influence it exerts upon it by
its powerful attraction, it is to us one of the most important celestial
bodies.
While the Moon accompanies the Earth around the Sun, it also revolves
around the Earth at a mean distance of 238,800 miles. For a celestial
distance this is only a trifling one; the Earth in advancing on its
orbit travels over such a distance in less than four hours. A cannon
ball would reach our satellite in nine days; and a telegraphic dispatch
would be transmitted there in 1½ seconds of time, if a wire could be
stretched between us and the Moon.
Owing to the ellipticity of the Moon's orbit, its distance from the
Earth varies considerably, our satellite being sometimes 38,000 miles
nearer to us than it is at other times. These changes in the distance of
the Moon occasion corresponding changes from 29' to 33' in its apparent
diameter. The real diameter of the Moon is 2,160 miles, or a little over
one-quarter the diameter of our globe; our satellite being 49 times
smaller than the Earth.
The mean density of the materials composing the Moon is only
⁶⁄₁₀ that of the materials composing the Earth, and the force of
gravitation at the surface of our satellite is six times less than it is
at the surface of our globe. If a person weighing 150 lbs. on our Earth
could be transported to the Moon, his weight there would be only 25 lbs.
The Moon revolves around the Earth in about 27⅓ days, with a mean
velocity of one mile per second, the revolution constituting its
sidereal period. If the Earth were motionless, the lunar month would be
equal to the sidereal period; but owing to its motion in space, the Sun
appears to move with the Moon, though more slowly, so that after having
accomplished one complete revolution, our satellite has yet to advance
2¼ days before reaching the same apparent position in regard to the
Earth and the Sun that it had at first. The interval of time comprised
between two successive New Moons, which is a little over 29½ days,
constitutes the synodical period of the Moon, or the lunar month.
Public-domain text, read in full here on John Shaqi.
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