The Seven Follies of Science [2nd ed.]: A popular account of the most famous scientific impossibilities and the attempts which have been made to solve them. To which is added a small budget of interesting paradoxes, illusions, and marvelsPhin, John
History
The Seven Follies of Science [2nd ed.]: A popular account of the most famous scientific impossibilities and the attempts which have been made to solve them. To which is added a small budget of interesting paradoxes, illusions, and marvels
Phin, John
Geometry -- Famous problems; Scientific recreations
"1. The water that ascends will not make any considerable stream in the
fall.
"2. This stream, though multiplied, will not be of force enough to turn
about the screw."
How well it would have been for many of those inventors, who supposed
that they had discovered a successful perpetual motion, if they had only
given their contrivances a fair and unprejudiced test as did the good
old bishop!
A modification of this device, in which mercury is used instead of
water, is thus described by a correspondent of "The Mechanic's
Magazine." (London.)
"In Fig. 11, A is the screw turning on its two pivots GG; B is a
cistern to be filled above the level of the lower aperture of the
screw with mercury, which I conceive to be preferable to water on
many accounts, and principally because it does not adhere or
evaporate like water; C is a reservoir, which, when the screw is
turned round, receives the mercury which falls from the top; there
is a pipe, which, by the force of gravity, conveys the mercury from
the reservoir C on to (what for want of a better term may be called)
the float-board E, fixed at right angles to the center [axis] of the
screw, and furnished at its circumference with ridges or floats to
intercept the mercury, the moment and weight of which will cause the
float-board and screw to revolve, until, by the proper inclination
of the floats, the mercury falls into the receiver F, from whence it
again falls by its spout into the cistern G, where the constant
revolution of the screw takes it up again as before."
He then suggests some difficulties which the ball, seen just under the
letter E, is intended to overcome, but he confesses that he has never
tried it, and to any practical mechanic it is very obvious that the
machine will not work. But we give the description in the language of
the inventor, as a fair type of this class of perpetual-motion machines.
[Illustration: Fig. 11.]
In the year 1790 a Doctor Schweirs took out a patent for a machine in
which small metal balls were used instead of a liquid, and they were
raised by a sort of chain pump which delivered them upon the
circumference of a large wheel, which was thus caused to revolve. It was
claimed for this invention that it kept going for some months, but any
mechanic who will examine the Doctor's drawing must see that it could
not have continued in motion after the initial impulse had been
expended.
Public-domain text, read in full here on John Shaqi.
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