A View of Sir Isaac Newton's PhilosophyPemberton, Henry
Science
A View of Sir Isaac Newton's Philosophy
Pemberton, Henry
Newton, Isaac, 1642-1727. Principia
24. THAT there is no connexion between the figure of a body and its
resistance in compressed fluids, is proved thus. Suppose A B C D (in
fig. 88.) to be a canal, having such a fluid, water for instance,
running through it with an equable velocity; and let any body E, by
being placed in the axis of the canal, hinder the passage of the water.
It is evident, that the figure of the fore part of this body will have
little influence in obstructing the water’s motion, but the whole
impediment will arise from the space taken up by the body, by which it
diminishes the bore of the canal, and straightens the passage of the
water[138]. But proportional to the obstruction of the water’s motion,
will be the force of the water upon the body E[139]. Now suppose both
orifices of the canal to be closed, and the water in it to remain at
rest; the body E to move, so that the parts of the water may pass by
it with the same degree of velocity, as they did before; it is beyond
contradiction, that the pressure of the water upon the body, that
is, the resistance it gives to its motion, will remain the same; and
therefore will have little connexion with the figure of the body[140].
25. BY a method of reasoning drawn from the same fountain is determined
the measure of resistance these compressed fluids give to bodies, in
reference to the proportion between the density of the body and that of
the fluid. This shall be explained particularly in my comment on Sir
~IS. NEWTON~’s mathematical principles of natural philosophy;
but is not a proper subject to be insisted on farther in this place.
26. WE have now gone through all the parts of this theory. There
remains nothing more, but in few words to mention the experiments,
which our author has made, both with bodies falling perpendicularly
through water, and the air[141], and with pendulums[142]: all which
agree with the theory. In the case of falling bodies, the times
of their fall determined by the theory come out the same, as by
observation, to a surprizing exactness; in the pendulums, the rod, by
which the ball of the pendulum hangs, suffers resistance as well as the
ball, and the motion of the ball being reciprocal, it communicates such
a motion to the fluid, as increases the resistance, but the deviation
from the theory is no more, than what may reasonably follow from these
causes.
27. BY this theory of the resistance of fluids, and these experiments,
our author decides the question so long agitated among natural
philosophers, whether all space is absolutely full of matter. The
Aristotelians and Cartesians both assert this plenitude; the Atomists
have maintained the contrary. Our author has chose to determine this
question by his theory of resistance, as shall be explained in the
following chapter.
[Illustration]
[Illustration]
~BOOK II.~
CONCERNING THE
SYSTEM of the WORLD.
CHAP. I.
That the Planets move in a space empty of all sensible matter.
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