Einstein's Theories of Relativity and Gravitation: A selection of material from the essays submitted in the competition for the Eugene Higgins prize of $5,000Bird, J. Malcolm (James Malcolm)
Philosophy
Einstein's Theories of Relativity and Gravitation: A selection of material from the essays submitted in the competition for the Eugene Higgins prize of $5,000
Bird, J. Malcolm (James Malcolm)
Relativity (Physics)
[In this connection a vital question suggests itself. Is the
expression of natural law independent of or dependent upon the choice
of a system of coordinates? And to what extent shall we be able to
reconcile the results of one observer using one reference frame, and
a second observer using a different one? The answer to the second
question is obvious.]* [True, if any series of events is described
using two different sets of axes, the descriptions will be different,
depending upon the time system adopted and the relative motion of the
axes. But if the connection between the reference systems is known,
it is possible by mathematical processes to deduce the quantities
observed in one system if those observed in the other are known.]35
[This process of translating the results of one observer into those of
another is known as a transformation; and the mathematical statement
of the rule governing the transformation is called the equation or the
equations (there are usually several of them) of the transformation.]*
[Transformations of this character constitute a well-developed branch
of mathematics.]35
[When we inquire about the invariance of natural law it is necessary to
be rather sure of just what we mean by this expression. The statement
that a given body is moving with a velocity of 75 miles per hour is of
course not a natural law; it is a mere numerical observation. But aside
from such numerical results, we have a large number of mathematical
relations which give us a more or less general statement of the
relations that exist between velocities, accelerations, masses,
forces, times, lengths, temperatures, pressures, etc., etc. There
are some of these which we would be prepared to state at once as
universally valid--distance travelled equals velocity multiplied by
time, for instance. We do not believe that any conceivable change of
reference systems could bring about a condition in which the product
of velocity and time, as measured from a certain framework, would
fail to equal distance as measured from this same framework. There
are other relations more or less of the same sort which we probably
believe to be in the same invariant category; there are others,
perhaps, of which we might be doubtful; and presumably there are
still others which we should suspect of restricted validity, holding
in certain reference systems only and not in others.
The question of invariance of natural law, then, may turn out to
be one which may be answered in the large by a single statement;
it may equally turn out to be one that has to be answered in the
small, by considering particular laws in connection with particular
transformations between particular reference systems. Or, perhaps,
we may find ourselves justified in taking the stand that an alleged
"law of nature" is truly such a law only in the event that it is
independent of the change from one reference system to another. In
any event, the question may be formulated as follows:
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