The sidereal messenger of Galileo Galilei : $b and a part of the preface to Kepler's Dioptrics containing the original account of Galileo's astronomical discoveriesGalilei, Galileo
History
The sidereal messenger of Galileo Galilei : $b and a part of the preface to Kepler's Dioptrics containing the original account of Galileo's astronomical discoveries
Galilei, Galileo
Astronomy -- Early works to 1800; Jupiter (Planet) -- Satellites
With no less certainty also do we decide by the use of this instrument
even that famous question, which, coeval with philosophy itself, is
disputed to this day by the noblest intellects—I mean, whether the
earth can move (as the theory of the Planets greatly requires) without
the overthrow of all bodies that have weight, or the confusion of the
motion of the elements? For if the earth were banished from the centre
of the universe, some fear lest the water should leave the orb of the
earth and flow to the centre of the universe; and yet we see that in
the moon, as well as in the earth, there is a quantity of moisture
occupying the sunken hollows of that globe; and although this orb
revolves actually in the ether, and outside the centres not merely
of the universe, but even of our earth, yet the mass of water in the
moon is not at all hindered from cleaving invariably to the orb of the
moon, and tending to the centre of the body to which it belongs. So,
by this instance of the phenomena of the moon, the science of optics
amends the received theory of mechanics, and confirms on this point
my introduction to my _Commentaries upon the Motions of the Planet
Mars_.[20]
[20] Kepler says in his introduction to his _Commentaries upon
the Motions of the Planet Mars_, that the theory of gravitation
depends on certain axioms, one of which is that “heavy bodies do
not tend to the centre of the universe, supposing the earth to be
placed there, because that point is the centre of the universe,
but because it is the centre of the earth. So, wherever the earth
be set, or whithersoever it be transported, heavy bodies have a
continual tendency to it.” Kepler’s object in this work was to
correct the methods for determining the apparent places of the
planets according to the three theories then current—the Ptolemaic,
the Copernican, and that of Tycho Brahe.
In 1593 the observed place of the planet Mars differed by nearly
5° from the place calculated for it. Kepler accordingly studied
the motions of this planet, and “by most laborious demonstrations
and discussions of many observations,” arrived at the conclusions
known as Kepler’s first and second laws; according to which the
Copernican system of eccentrics and epicycles was replaced by an
ellipse whose centre and eccentricity were the same as the centre
and eccentricity of the eccentric in the older method, and the Sun
therefore was in one of the foci. Also the motion of the planet in
its orbit was such that equal areas were described about the Sun by
the radius vector of the planet in equal times.—KEPLER, _Astronomia
Nova_ αἰτιολογητός (Prague), 1609.
Public-domain text, read in full here on John Shaqi.
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