The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.Williams, Archibald
Science
The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.
Williams, Archibald
Inventions
In an age fruitful as this in scientific marvels, it often takes some
considerable time for the public to grasp the full importance of a
fresh discovery. But when, in 1896, it was announced that Professor
Röntgen of Würzburg had actually taken photographs of the internal
organs of still living creatures, and penetrated metal and other
opaque substances with a new kind of ray, great interest was
manifested throughout the civilised world. On the one hand the “new
photography” seemed to upset popular ideas of opacity; on the other it
savoured strongly of the black art, and, by its easy excursions
through the human body, seemed likely to revolutionise medical and
surgical methods. At first many strange ideas about the X-rays got
afloat, attributing to them powers which would have surprised even
their modest discoverer. It was also thought that the records were
made in a camera after the ordinary manner of photography, but as a
matter of fact Röntgen used neither lens nor camera, the operation
being similar to that of casting a shadow on a wall by means of a
lamp. In X-radiography a specially constructed electrically-lit glass
tube takes the place of the lamp, and for the wall is substituted a
sensitised plate. The object to be radiographed is merely inserted
between them, its various parts offering varying resistance to the
rays, so that the plate is affected unequally, and after exposure may
be developed and printed from it the usual way. Photographs obtained
by using X-rays are therefore properly called shadowgraphs or
skiagraphs.
The discovery that has made Professor Röntgen famous is, like many
great discoveries, based upon the labours of other men in the same
field. Geissler, whose vacuum tubes are so well known for their
striking colour effects, had already noticed that electric discharges
sent through very much rarefied air or gases produced beautiful glows.
Sir William Crookes, following the same line of research, and reducing
with a Sprengel air-pump the internal pressure of the tubes to
1/100000 of an atmosphere, found that a luminous glow streamed from
the cathode, or negative pole, in a straight line, heating and
rendering phosphorescent anything that it met. Crookes regarded the
glow as composed of “radiant matter,” and explained its existence as
follows. The airy particles inside the tube, being few in number, are
able to move about with far greater freedom than in the tightly packed
atmosphere outside the tube. A particle, on reaching the cathode, is
repelled violently by it in a straight line, to “bombard” another
particle, the walls of the tube, or any object set up in its path, the
sudden arrest of motion being converted into light and heat.
Public-domain text, read in full here on John Shaqi.
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