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)
[If it does exist, it seems quite necessary, on mere philosophical
grounds, that it shall be eligible to serve as the long-sought
reference frame for absolute motion. Surely it does not make sense to
speak of a homogeneous medium filling all space, sufficiently material
to serve as a means of communication between remote worlds, and in
the next breath to deny that motion with respect to this medium is a
concept of significance.]* [Such a system of reference as was offered
by the ether, coextensive with the entire known region of the universe,
must necessarily serve for all motions within our perceptions.]186
[The conclusion seems inescapable that motion with respect to the
ether ought to be of a sufficiently unique character to stand out
above all other motion. In particular, we ought to be able to use the
ether to define, somewhere, a system of axes fixed with respect to
the ether, the use of which would lead to natural laws of a uniquely
simply description.
Maxwell's work added fuel to this hope.]* [During the last century,
after the units of electricity had been defined, one set for static
electrical calculations and one for electromagnetic calculations, it
was found that the ratio of the metric units of capacity for the two
systems was numerically equal to what had already been found as the
velocity with which light is transmitted through the hypothetical
ether. One definition refers to electricity at rest, the other
to electricity in motion. Maxwell, with little more working basis
than this, undertook to prove that electrical and optical phenomena
were merely two aspects of a common cause,]235 [to which the general
designation of "electromagnetic waves" was applied. Maxwell treated
this topic in great fullness and with complete success. In particular,
he derived certain equations giving the relations between the various
electrical quantities involved in a given phenomenon. But it was
found, extraordinarily enough, that these relations were of such
character that, when we subject the quantities involved to a change
of coordinate axes, the transformed quantities did not preserve these
relations if the new axes happened to be in motion with respect to
the original ones. This, of course, was taken to indicate that motion
really is absolute when we come to deal with electromagnetic phenomena,
and that the ether which carries the electromagnetic waves really may
be looked to to display the properties of an absolute reference frame.
Public-domain text, read in full here on John Shaqi.
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