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
44. IF the wheel be put into motion, and turned once round, that the
cord, on which the weight G hangs, be wound once more round the axis;
then at the same time the cord, whereon the weight H hangs, will be
wound off from the wheel one circuit. Therefore the velocity of the
weight G will bear the same proportion to the velocity of the weight H,
as the circumference of the roller to the circumference of the wheel.
But the circumference of the roller bears the same proportion to the
circumference of the wheel, as the thickness of the roller bears to
the diameter of the wheel, consequently the velocity of the weight
G bears to the velocity of the weight H the same proportion, as the
thickness of the roller bears to the diameter of the wheel, which is
the proportion that the weight H bears to the weight G. Therefore as
before in the lever, so here also the general rule laid down above is
verified, that the weights equiponderate, when their velocities would
be reciprocally proportional to their respective weights.
45. IN like manner, if on the same axis two wheels of different sizes
are fixed (as in fig. 35.) and a weight hung on each; the weights will
equiponderate, if the weight hung on the greater wheel bear the same
proportion to the weight hung on the lesser, as the diameter of the
lesser wheel bears to the diameter of the greater.
46. IT is usual to join many wheels together in the same frame, which
by the means of certain teeth, formed in the circumference of each
wheel, shall communicate motion to each other. A machine of this nature
is represented in fig. 36. Here A B C is a winch, upon which is fixed
a small wheel D indented with teeth, which move in the like teeth of
a larger wheel E F fixed on the axis G H. Let this axis carry another
wheel I, which shall move in like manner a greater wheel K L fixed on
the axis M N. Let this axis carry another small wheel O, which after
the same manner shall turn about a larger wheel P Q fixed on the roller
R S, on which a cord shall be wound, that holds a weight, as T. Now
the proportion required between the weight T and a power applied to
the winch at A sufficient to support the weight, will most easily be
estimated, by computing the proportion, which the velocity of the point
A would bear to the velocity of the weight. If the winch be turned
round, the point A will describe a circle as A V. Suppose the wheel E F
to have ten times the number of teeth, as the wheel D; then the winch
must turn round ten times to carry the wheel E F once round. If wheel K
L has also ten times the number of teeth, as I, the wheel I must turn
round ten times to carry the wheel K L once round; and consequently
the winch A B C must turn round an hundred times to turn the wheel K L
once round. Lastly, if the wheel P Q has ten times the number of teeth,
as the wheel O, the winch must turn about one thousand times in order
to turn the wheel P Q, or the roller R S once round. Therefore here
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