Our Nuclear Future: Facts, Dangers and OpportunitiesTeller, Edward
Science
Our Nuclear Future: Facts, Dangers and Opportunities
Teller, Edward
Nuclear energy -- Popular works; Nuclear weapons; Radioactivity -- Physiological effect
We all know in how many forms matter can appear and how changeable these
forms are. That the stone and the spray, the air and an insect, and even
the human brain should be composed of the same few kinds of atoms, and
that these atoms should be subject to laws which are subtle and simple
and precisely described—this certainly is the most remarkable fact that
we have learned since Newton proved that the same science applies to the
earth and in the heavens.
CHAPTER III
Nuclei
Up to now we have regarded atoms as being divisible into electrons and
nuclei. Electrons and nuclei, however, we have regarded as indivisible
entities. This point of view is perfectly adequate to account for all
the facts of chemistry and most of the facts of physics. Even in
physics, it has not been necessary to ascribe an internal structure to
the electron.[3] The electron is a truly elementary particle in this
sense. However, to understand some physical phenomena, and radioactivity
is one of these, it is necessary to recognize that the nucleus is not
indivisible but consists of parts. The parts of the nucleus are called
protons and neutrons.
The simple statements of the previous chapter apply to these smaller
particles also. All electrons are equal—precisely equal. All protons are
equal and all neutrons are equal. There are methods which would have
shown up exceedingly small differences between these particles. No such
differences have been discovered. As far as we know these particles are
_always_ the same. We cannot pour energy into them and excite them as
was the case with the atoms. When we come to consider these small
particles, the complex structure of the world has an end. Instead what
we find is simple.
A proton and a neutron have almost exactly the same weight. The proton
has one unit of positive charge, which means that its charge is the same
as that of the electron except that it is opposite in sign. The neutron,
as its name implies, is an electrically neutral particle. Hence the
charge of the nucleus is equal to the number of protons it contains, and
is independent of the number of neutrons. The weight of the nucleus,
however, taking the proton (or the neutron) as a unit of weight, is
equal to the number of protons _plus_ the number of neutrons.
Public-domain text, read in full here on John Shaqi.
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