Relativity: The Special and General TheoryEinstein, Albert
Science
Relativity: The Special and General Theory
Einstein, Albert
Relativity (Physics)
I am standing in front of a gas range. Standing alongside of each other
on the range are two pans so much alike that one may be mistaken for
the other. Both are half full of water. I notice that steam is being
emitted continuously from the one pan, but not from the other. I am
surprised at this, even if I have never seen either a gas range or a
pan before. But if I now notice a luminous something of bluish colour
under the first pan but not under the other, I cease to be astonished,
even if I have never before seen a gas flame. For I can only say that
this bluish something will cause the emission of the steam, or at least
_possibly_ it may do so. If, however, I notice the bluish something in
neither case, and if I observe that the one continuously emits steam
whilst the other does not, then I shall remain astonished and
dissatisfied until I have discovered some circumstance to which I can
attribute the different behaviour of the two pans.
Analogously, I seek in vain for a real something in classical mechanics
(or in the special theory of relativity) to which I can attribute the
different behaviour of bodies considered with respect to the reference
systems _K_ and _K′_.[15] Newton saw this objection and attempted to
invalidate it, but without success. But E. Mach recognised it most
clearly of all, and because of this objection he claimed that mechanics
must be placed on a new basis. It can only be got rid of by means of a
physics which is conformable to the general principle of relativity,
since the equations of such a theory hold for every body of reference,
whatever may be its state of motion.
[15] The objection is of importance more especially when the state of
motion of the reference-body is of such a nature that it does not
require any external agency for its maintenance, _e.g._ in the case
when the reference-body is rotating uniformly.
XXII.
A FEW INFERENCES FROM THE GENERAL PRINCIPLE OF RELATIVITY
The considerations of Section XX show that the general principle of
relativity puts us in a position to derive properties of the
gravitational field in a purely theoretical manner. Let us suppose, for
instance, that we know the space-time “course” for any natural process
whatsoever, as regards the manner in which it takes place in the
Galileian domain relative to a Galileian body of reference _K_. By
means of purely theoretical operations (_i.e._ simply by calculation)
we are then able to find how this known natural process appears, as
seen from a reference-body _K′_ which is accelerated relatively to _K_.
But since a gravitational field exists with respect to this new body of
reference _K′_, our consideration also teaches us how the gravitational
field influences the process studied.
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account