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
At this stage we must make a little excursion into the realm of
electricity. You probably know that if a rod of glass be rubbed with a
silk handkerchief it becomes able to attract little scraps of paper.
That is because the rubbing causes it to become charged with
electricity. In like manner a piece of resin if rubbed will become
charged and will also attract little pieces of paper. A piece of
electrified resin and an electrified glass rod will, moreover, attract
each other, but two pieces of resin or two pieces of glass, if
electrified, will repel each other. This leads us to believe that there
are two kinds of electrification or two kinds of electrical charge. At
first these two kinds were spoken of as vitreous or glass electricity
and resinous electricity, but after a while the idea arose that there
was really one kind of electricity and that everything possessed a
certain amount of it, the electrified glass having a little too much of
it and the electrified resin a shade too little of it. From this came
the idea of calling the charge on the glass a "positive" charge and that
on the resin a "negative" charge. Recent investigations seem to show
that we have got those two terms the wrong way round, but to avoid
confusion we still use them in the old way.
It will be sufficient for our purpose, therefore, if we assume that
every molecule of matter has a certain normal amount of electricity
associated with it and that under those conditions the presence of the
electricity is not in any way noticeable. When a molecule becomes
ionized, however, one ion always seems to run off with more than its
fair share of the electricity, the result being that one is electrified
positively, like rubbed glass, while the other is negatively charged,
like rubbed resin.
Thus, when the common salt is dissolved in water, two lots of ions are
formed, one lot positively charged and the other lot negatively. Each
molecule of salt consists of two atoms, one of sodium and one of
chlorine: consequently, one ion is a chlorine atom and the other is a
sodium atom, the latter being positive and the former negative.
Now the electrodes are also charged by the action of the battery. That
connected to the positive pole of the battery becomes positively charged
and the other negatively. The anode, therefore, is positive and the
cathode negative.
It has been pointed out that two similarly charged bodies, such as two
pieces of glass or two pieces of resin, repel each other, while either
of these attracts one of the other sort. Hence we arrive at a rule that
similarly charged bodies repel each other, while dissimilarly charged
bodies attract each other.
Public-domain text, read in full here on John Shaqi.
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