Astronomy Explained Upon Sir Isaac Newton's Principles: And made easy to those who have not studied mathematics — John Shaqi
Astronomy Explained Upon Sir Isaac Newton's Principles: And made easy to those who have not studied mathematicsFerguson, James
Science
Astronomy Explained Upon Sir Isaac Newton's Principles: And made easy to those who have not studied mathematics
Ferguson, James
Astronomy -- Early works to 1800
62. The Moon’s Axis is so nearly perpendicular to the Ecliptic, that the
Sun never removes sensibly from her Equator: and the[14] obliquity of
her Orbit, which is next to nothing as seen from the Sun, cannot cause
any sensible declination of the Sun from her Equator. Yet her
inhabitants are not destitute of means for determining the length of
their year, though their method and ours must differ. For we can know
the length of our year by the return of our Equinoxes; but the
Lunarians, having always equal day and night, must have recourse to
another method; and we may suppose, they measure their year by observing
the Poles of our Earth; as one always begins to be enlightened, and the
other disappears, at our Equinoxes; they being conveniently situated for
observing great tracks of land about our Earth’s Poles, which are
entirely unknown to us. Hence we may conclude, that the year is of the
same absolute length both to the Earth and Moon, though very different
as to the number of days: we having 365-1/4 natural days, and the
Lunarians only 12-7/19; every day and night in the Moon being as long as
29-1/2 on the Earth.
[Sidenote: And the longitudes of their places.]
63. The Moon’s inhabitants on the side next the Earth may as easily find
the longitude of their places as we can find the latitude of ours. For
the Earth keeping constantly, or very nearly so, over one Meridian of
the Moon, the east or west distances of places from that Meridian are as
easily found, as we can find our distance from the Equator by the
Altitude of our celestial Poles.
[Sidenote: Mars.
Fig. I.]
64. The Planet MARS is next in order, being the first above the Earth’s
Orbit. His distance from the Sun is computed to be 123 millions of
miles; and by travelling at the rate of 47 thousand miles every hour, as
in the circle ♂, he goes round the Sun in 687 of our days and 17 hours;
which is the length of his year, and contains 667-1/4 of his days; every
day and night together being 40 minutes longer than with us. His
diameter is 4444 miles, and by his diurnal rotation the inhabitants
about his Equator are carried 556 miles every hour. His quantity of
light and heat is equal but to one half of ours; and the Sun appears but
half as big to him as to us.
[Sidenote: His Atmosphere and Phases.]
65. This Planet being but a fifth part so big as the Earth, if any Moon
attends him, she must be very small, and has not yet been discovered by
our best telescopes. He is of a fiery red colour, and by his Appulses to
some of the fixed Stars, seems to be surrounded by a very gross
Atmosphere. He appears sometimes gibbous, but never horned; which both
shews that his Orbit includes the Earth’s within it, and that he shines
not by his own light.
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