What was done then? The attempt to penetrate into the detail of the
structure of the universe, to isolate the pieces of this vast mechanism,
to analyze one by one the forces which put them in motion, was
abandoned, and we were content to take as guides certain general
principles the express object of which is to spare us this minute study.
How so? Suppose we have before us any machine; the initial wheel work
and the final wheel work alone are visible, but the transmission, the
intermediary machinery by which the movement is communicated from one to
the other, is hidden in the interior and escapes our view; we do not
know whether the communication is made by gearing or by belts, by
connecting-rods or by other contrivances. Do we say that it is
impossible for us to understand anything about this machine so long as
we are not permitted to take it to pieces? You know well we do not, and
that the principle of the conservation of energy suffices to determine
for us the most interesting point. We easily ascertain that the final
wheel turns ten times less quickly than the initial wheel, since these
two wheels are visible; we are able thence to conclude that a couple
applied to the one will be balanced by a couple ten times greater
applied to the other. For that there is no need to penetrate the
mechanism of this equilibrium and to know how the forces compensate each
other in the interior of the machine; it suffices to be assured that
this compensation can not fail to occur.
Well, in regard to the universe, the principle of the conservation of
energy is able to render us the same service. The universe is also a
machine, much more complicated than all those of industry, of which
almost all the parts are profoundly hidden from us; but in observing the
motion of those that we can see, we are able, by the aid of this
principle, to draw conclusions which remain true whatever may be the
details of the invisible mechanism which animates them.
The principle of the conservation of energy, or Mayer's principle, is
certainly the most important, but it is not the only one; there are
others from which we can derive the same advantage. These are:
Carnot's principle, or the principle of the degradation of energy.
Newton's principle, or the principle of the equality of action and
reaction.
The principle of relativity, according to which the laws of physical
phenomena must be the same for a stationary observer as for an observer
carried along in a uniform motion of translation; so that we have not
and can not have any means of discerning whether or not we are carried
along in such a motion.
The principle of the conservation of mass, or Lavoisier's principle.
I will add the principle of least action.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account