The Autobiography of an Electron: Wherein the Scientific Ideas of the Present Time Are Explained in an Interesting and Novel FashionGibson, Charles R. (Charles Robert)
Science
The Autobiography of an Electron: Wherein the Scientific Ideas of the Present Time Are Explained in an Interesting and Novel Fashion
Gibson, Charles R. (Charles Robert)
Electricity; Electrons
It is this electrical attraction between the atoms which enables us to
build up the particles, or _molecules_, of matter in such a variety of
forms. First of all, we play the most important part within the atoms.
We have formed only a limited number of such atoms. I am not free to
tell you exactly how many, for man has discovered only about eighty of
these different congregations of electrons, each kind of which he calls
an _element_. The way in which we have coupled these different
elementary atoms together must appear remarkable to all thinking men;
there seems to be no end to the possible variety of combinations.
In one case we unite an atom of _chlorine_ to an atom of _sodium_ and
thereby produce a molecule of common salt. In another case we unite an
atom of _oxygen_ to two atoms of _hydrogen_, and the resulting
combination is an invisible molecule of ordinary water.
It has always seemed to me very strange how some men have difficulty in
regard to these combinations. I have heard a man ask how two different
gases, hydrogen and oxygen, when united, should form a liquid, and not a
gas. I wish you could see things as we see them. The atoms are neither
gaseous, liquid, nor solid; they are little worlds of revolving
electrons.
I have spoken of the attraction between atoms, and again between
molecules, in forming a solid body. It will be clear that there is less
of this _cohesive force_ in the case of a liquid, whereas it is absent
entirely in the case of a gas. In this case the molecules have become so
far separated from one another that they cease to attract each other,
and if left free they will soon part company, and spread themselves
broadcast over the face of the earth.
Whether a substance passes into a solid, a liquid, or a gaseous state,
the atoms remain constant, but their vibratory motion is altered very
considerably. However, I was about to tell you that we electrons can
make some very interesting combinations of atoms. Those I have mentioned
so far are of a very simple nature, but we have built up individual
molecules containing hundreds of atoms. We link about a hundred atoms
together and produce a molecule of what man calls _alum_, and we require
to unite about a thousand atoms together to make one molecule of
_albumen_ (the white of an egg).
When man speaks of a chemical change having taken place in a substance,
it is simply the electrons who have made a friendly interchange of
detachable electrons, thereby causing a different assemblage of the same
atoms. During these changes we never alter the nature of the atom. That
little world of revolving electrons known as an atom of gold, remains
always an atom of gold. But you must not run away with the idea that the
atoms will never change. Indeed, man has discovered that the atoms are
not eternal, as I shall explain in the following chapter.
CHAPTER XIX
HOW WE MADE THE WORLD TALK
_THE SCRIBE'S NOTE ON CHAPTER NINETEEN_
Public-domain text, read in full here on John Shaqi.
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