The Romance of War Inventions: A Description of Warships, Guns, Tanks, Rifles, Bombs, and Other Instruments and Munitions of Warfare, How They Were Invented & How They Are EmployedCorbin, Thomas W.
History
The Romance of War Inventions: A Description of Warships, Guns, Tanks, Rifles, Bombs, and Other Instruments and Munitions of Warfare, How They Were Invented & How They Are Employed
Corbin, Thomas W.
Inventions; Military art and science; Naval art and science
What is happening, then, to the atoms of radium, which causes them to
show these curious effects and to give off these strange rays? To give
any intelligent answer to that question we are bound to assume that
which the older generation of scientists thought impossible, namely,
that atoms can be broken up. Then we are forced to believe that the
atoms of this particular substance radium are of a peculiarly flimsy
unstable sort, so that they cannot permanently hold their parts together
but are liable to break up, as far as we can see through their own
inherent weakness and under the influence of disruptive forces at work
within themselves.
We must remember, however, that the tiniest speck of matter which we can
see contains a number of atoms of such a size as to be quite beyond the
grasp of our minds. To give a rough idea of it in figures is useless as
no one can comprehend the real value of a figure or two followed by
probably from a dozen to twenty "noughts." It is best to content
ourselves with the general statement that a speck of matter only just
visible to the eye contains an exceedingly vast number of atoms. Of
course a speck of radium is no exception to this and we must remember,
too, that all of them do not break up at once. Indeed, the number
breaking up at any time are actually countable by means of a very simple
contrivance and a sensitive electrometer. Consequently, in view of the
enormous number present and the comparatively small number breaking up
at any moment, it is not surprising to hear that, so it is estimated,
the process can go on for an almost indefinite number of years,
certainly for hundreds. There are, moreover, certain facts which we need
not go into here from which the above fact can be clearly inferred,
quite apart from what has been said about the vast numbers of the atoms.
It seems as if the uranium atoms break up first, giving off helium atoms
and electrons and leaving an intermediate substance called Ionium which
in its turn breaks up giving off the same things again and leaving
radium. That in its turn goes through a complicated series of changes
still giving off the same alpha particles or atoms of helium and
electrons until, it is suggested, it finally settles down into the
simple commonplace metal lead of which we make bullets and water pipes
and such-like ordinary things.
We see then that all through its history--its radio-active history at
any rate--this stuff is throwing off atoms of helium at a very high
velocity (about 50,000 miles a second), and if it be enclosed in
anything this enclosing vessel or substance will be subjected to a
continual bombardment by the alpha particles. Now just as a piece of
iron gets hot if we hammer it, so the enclosing matter is heated by the
continual blows which it is receiving night and day, year in and year
out, from the alpha particles.
Consequently the immediate surroundings of a speck of radium are always
slightly raised in temperature.
Public-domain text, read in full here on John Shaqi.
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