Scientific American Supplement, No. 601, July 9, 1887Various
Science
Scientific American Supplement, No. 601, July 9, 1887
Various
Science -- Periodicals
"In the torsion balance proper, the wire is stretched out horizontally,
and supports a beam so fixed that the wire passes through the center of
gravity. Hence the elasticity of the wire plays the same part as the
weight of the beam does in the common balance. An instrument of this
sort was invented by Ritchie, for the measurement of very small weights,
and for this purpose it may offer certain advantages; but clearly if it
were ever to be used for measuring larger weights, the beam would have
to be supported by knife edges and bearing, and in regard to such
applications therefore (as in serious gravimetric work), it has no
_raison d'etre."_
[Illustration: KENT'S TORSION BALANCE. Fig 3.]
This would seem to settle the whole case, for if the encyclopedia says
it has no reason to be, then, like the edict of the Mikado, it is as
good as dead, and if that is the case, "Why not say so?" On the
contrary, the torsion balance seems very much alive. But as it is not
very generally known, perhaps the early history of this form of balance,
briefly sketched, may prove of interest.
One of the first forms of the torsion balance which met the disapproval
of the "Encyclopedia Britannica" was attended with the difficulty that
the pivoted wires were attached directly to the bifurcated ends of the
beam, and could not be tensioned without bending these ends unless the
beam was made so heavy as to interfere with its employment in delicate
weighing.
[Illustration: KENT'S TORSION BALANCE. Fig 4.]
The next step was the substitution of light forms stiffened by the wires
being tensioned over them. This was the invention of Professor Roeder,
recently deceased. The next step was the common counter scale, and then
that form of letter scale in which one of the bands acts as a fulcrum
and the other as a pivot.
After Professor Roeder's death, Dr. Alfred Springer, of Cincinnati,
continued perfecting this invention, and with marked success--scales not
intended for anything but the weighing of the ordinary articles of a
grocery store working so accurately that up to 50 lb. two grains would
turn the balance.
As will be noted, this balance dispenses entirely with knife edges, and
this statement carries with it the gist of its entire merit. There is no
friction, and the elegance of the work and the nice adjustments of the
parts struck the writer at once.
[Illustration: KENT'S TORSION BALANCE. Fig 5.]
The prescription scale and the proportional scale (see Fig. 4) are
particularly interesting. The former is sensitive to 1/64 of a grain,
and the latter, invented by Mr. Kent, is a most ingenious method for
weighing, by which, in a small compass (10½ in. by 4¼ in. by 3¾ in.), we
have a balance capable of weighing 3 lb. avoirdupois by thirty-seconds
of an ounce.
Public-domain text, read in full here on John Shaqi.
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