A Preliminary Dissertation on the Mechanisms of the Heavens — John Shaqi
A Preliminary Dissertation on the Mechanisms of the HeavensSomerville, Mary
Science
A Preliminary Dissertation on the Mechanisms of the Heavens
Somerville, Mary
Celestial mechanics
The moon is so near, that the excess of matter at the earth's equator
occasions periodic variations in her longitude and latitude; and, as the
cause must be proportional to the effect, a comparison of these
inequalities, computed from theory, with the same given by observation,
shows that the compression of the terrestrial spheroid, or the ratio of
the difference between the polar and equatorial diameter to the diameter
of the equator is 1/305.05. It is proved analytically, that if a fluid
mass of homogeneous matter, whose particles attract each other inversely
as the square of the distance, were to revolve about an axis, as the
earth, it would assume the form of a spheroid, whose compression is
1/230. Whence it appears, that the earth is not homogeneous, but decreases
in density from its centre to its circumference. Thus the moon's eclipses
show the earth to be round, and her inequalities not only determine the
form, but the internal structure of our planet; results of analysis which
could not have been anticipated. Similar inequalities in Jupiter's
satellites prove that his mass is not homogeneous, and that his
compression is 1/13·8.
The motions of the moon have now become of more importance to the
navigator and geographer than those of any other body, from the
precision with which the longitude is determined by the occultations of
stars and lunar distances. The lunar theory is brought to such
perfection, that the times of these phenomena, observed under any
meridian, when compared with that computed for Greenwich in the Nautical
Almanack, gives the longitude of the observer within a few miles. The
accuracy of that work is obviously of extreme importance to a maritime
nation; we have reason to hope that the new Ephemeris, now in
preparation, will be by far the most perfect work of the kind that ever
has been published.
From the lunar theory, the mean distance of the sun from the earth, and
thence the whole dimensions of the solar system are known; for the
forces which retain the earth and moon in their orbits, are respectively
proportional to the radii vectores of the earth and moon, each being
divided by the square of its periodic time; and as the lunar theory
gives the ratio of the forces, the ratio of the distance of the sun and
moon from the earth is obtained: whence it appears that the sun's
distance from the earth is nearly 396 times greater than that of the
moon.
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