Inventors at Work, with Chapters on DiscoveryIles, George
History
Inventors at Work, with Chapters on Discovery
Iles, George
Inventions -- History; Inventors
To microscopy they have recently given lenses which completely transmit
ultra-violet rays so as to photograph the diffraction discs of objects,
such as gold particles in colloidal solutions, otherwise invisible,
because below the resolving power of the most powerful microscope. It is
estimated that with this new aid an object but 1/250,000,000 of a
millimeter in length may indirectly be brought to view.
One ancient art, that of annealing glass, Professor Abbe and Dr. Schott
greatly improved, eliminating from their products the stresses which
distort an image. By means of an automatic heat-regulator, the
temperature of a batch of glass could be kept steadily for any desired
period at any point between 350° and 477° C.; or allowed to fall
uniformly at any prescribed rate. The glass was usually contained in a
very thick cylindrical copper vessel, on which played a large gas flame.
The highest temperature found necessary to banish stress, that is, to
cause softening to begin, was 465° C. The lowest temperature required to
ensure complete hardening was about 370° C. Thus the temperatures of
solidification all lie between 370° and 465°. This fall of 95° was
spread over an interval of four weeks, instead of a few days as
formerly, with the result that stress was banished utterly.
[Illustration: Photograph by Bräunlich & Tesch.
THE LATE PROFESSOR ERNEST ABBE, OF JENA.]
A practical example of the benefits gained in the properties of Jena
glass is exhibited by its use in measuring heat. A thermometer of common
glass when first manufactured may tell the truth, and in a month or two
may vary from truth so much as to be worthless. The reason is that the
dimensions of the glass slowly change day by day, as in a less degree
do those of many alloys. It was one of the aims of the Jena laboratory
to produce a glass which should remain constant in its dimensions while
exposed to varying temperatures, so that, made into thermometers, it
would be thoroughly trustworthy. Here, too, success was attained, so
that thermometers of Jena glass are found to be reliable as are no
instruments of ordinary glass. This product is available for
astronomical lenses, otherwise liable to serious changes of form as
exposed successively to warmth and cold.
Heat was to be staunchly withstood not only in moderate variations, but
in extreme degrees. From time immemorial heat suddenly applied to glass
has riven it in pieces. Could art dismiss this ancient fault? To-day a
beaker from Jena may be filled with ice and placed with safety on a gas
flame. In its many varieties this glass furnishes the chemist with
clean, transparent and untarnishing vessels for the delicate tasks of
the laboratory, all of singular indifference to heat and cold. Yet
again. Special kinds of this glass in chemical uses are attacked by cold
or hot corrosive liquids only one-twelfth to one-fourth as much as good
Bohemian glass, the next best material.
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