With Galileo the experience in question assumes greater clearness and
force. In the famous dialogue on the Copernican system which cost him
his freedom, he explains the tides in an unfelicitous, though in
principle correct manner, by the analogue of a platter of water swung to
and fro. In opposition to the Aristotelians of his time, who believed
the descent of a heavy body could be accelerated by the superposition
of another heavy body, he asserted that a body could never be
accelerated by one lying upon it unless the first in some way impeded
the superposed body in its descent. To seek to press a falling body by
means of another placed upon it, is as senseless as trying to prod a man
with a lance when the man is speeding away from one with the same
velocity as the lance. Even this little excursion into physics can
explain much to us. You know the peculiar sensation which one has in
falling, as when one jumps from a high springboard into the water, and
which is also experienced in some measure at the beginning of the
descent of elevators and swings. The reciprocal gravitational pressure
of the different parts of our body, which is certainly felt in some
manner, vanishes in free descent, or, in the case of the elevator, is
diminished on the beginning of the descent. A similar sensation would be
experienced if we were suddenly transported to the moon where the
acceleration of gravity is much less than upon the earth. I was led to
these considerations in 1866 by a suggestion in physics, and having also
taken into account the alterations of the blood-pressure in the cases in
question, I found I coincided without knowing it with Wollaston and
Purkinje. The first as early as 1810 in his Croonian lecture had touched
on the subject of sea-sickness and explained it by alterations of the
blood-pressure, and later had laid similar considerations at the basis
of his explanation of vertigo (1820-1826).[94]
Newton was the first to enunciate with perfect generality that a body
can change the velocity and direction of its motion only by the action
of a force, or the action of a second body. A corollary of this law
which was first expressly deduced by Euler is that a body can never be
set _rotating_ or made to cease rotating of itself but only by forces
and other bodies. For example, turn an open watch which has run down
freely backwards and forwards in your hand. The balance-wheel will not
fully catch the rapid rotations, it does not even respond fully to the
elastic force of the spring which proves too weak to carry the wheel
entirely with it.
Public-domain text, read in full here on John Shaqi.
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