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
3. THIS then is the constant character belonging to those motions,
which are carried on by centripetal forces; that the line, wherein the
body moves, is throughout concave towards the center of the force. In
respect to the successive distances of the body from the center there
is no general rule to be laid down; for the distance of the body from
the center may either increase, or decrease, or even keep always the
same. The point A (in fig. 73.) being the center of a centripetal
force, let a body at B set out in the direction of the straight line B
C perpendicular to the line A B drawn from A to B. It will be easily
conceived, that there is no other point in the line B C so near to A,
as the point B; that A B is the shortest of all the lines, which can
be drawn from A to any part of the line B C; all other lines, as A D,
or A E, drawn from A to the line B C being longer than A B. Hence it
follows, that the body setting out from B, if it moved in the line B
C, it would recede more and more from the point A. Now as the operation
of a centripetal force is to draw a body towards the center of the
force: if such a force act upon a resting body, it must necessarily put
that body so into motion, as to cause it to move towards the center
of the force: if the body were of it self moving towards that center,
the centripetal force would accelerate that motion, and cause it to
move faster down: but if the body were in such a motion, as being left
to itself it would recede from this center, it is not necessary, that
the action of a centripetal power upon it should immediately compel
the body to approach the center, from which it would otherwise have
receded; the centripetal power is not without effect, if it cause the
body to recede more slowly from that center, than otherwise it would
have done. Thus in the case before us, the smallest centripetal power,
if it act on the body, will force it out of the line B C, and cause it
to pass in a bent line between B C and the point A, as has been before
explained. When the body, for instance, has advanced to the line A D,
the effect of the centripetal force discovers it self by having removed
the body out of the line B C, and brought it to cross the line A D
somewhere between A and D: suppose at F. Now A D being longer than A B,
A F may also be longer than A B. The centripetal power may indeed be
so strong, that A F shall be shorter than A B; or it may be so evenly
balanced with the progressive motion of the body, that A F and A B
shall be just equal: and in this last case, when the centripetal force
is of that strength, as constantly to draw the body as much toward the
center, as the progressive motion would carry it off, the body will
describe a circle about the center A, this center of the force being
also the center of the circle.
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