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
21. IF a body be thrown perpendicularly upward with any force, the
velocity, wherewith the body ascends, shall continually diminish,
till at length it be wholly taken away; and from that time the body
will begin to fall down again, and pass over a second time in its
descent the line, wherein it ascended; falling through this line with
an increasing velocity in such a manner, that in every point thereof,
through which it falls, it shall have the very same velocity, as it
had in the same place, when it ascended; and consequently shall come
down into the place, whence it first ascended, with the velocity which
was at first given to it. Thus if a body were thrown perpendicularly
up in the line A B (in fig. II.) with such a force, as that it should
stop at the point B, and there begin to fall again; when it shall have
arrived in its descent to any point as C in this line, it shall there
have the same velocity, as that wherewith it passed by this point C
in its ascent; and at the point A it shall have gained as great a
velocity, as that wherewith it was first thrown upwards. As this is
demonstrated by the geometrical writers; so, I think, it will appear
evident, by considering only, that while the body descends, the power
of gravity must act over again, in an inverted order, all the influence
it had on the body in its ascent; so as to give again to the body the
same degrees of velocity, which it had taken away before.
22. AFTER the same manner, if the body were thrown upwards in the
oblique straight line C A (in fig. 9.) from the point C, with such a
degree of velocity as just to reach the point A; it shall by its own
weight return again through the line A C by the same degrees, as it
ascended.
23. AND lastly, if a body were thrown with any velocity in a line
continually incurvated upwards, the like effect will be produced upon
its return to the point, whence it was thrown. Suppose for instance,
the body A (in fig. 12.) were hung by a string A B. Then if this body
be impelled any way, it must move in the arch of a circle. Let it
receive such an impulse, as shall cause it to move in the arch A C; and
let this impulse be of such strength, that the body may be carried from
A as far as D, before its motion is overcome by its weight: I say here,
that the body forthwith returning from D, shall come again into the
point A with the same velocity, as that wherewith it began to move.
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