In the United States and Canada it is
4 A.M. by Pacific Time when it is Noon at Greenwich.
5 A.M. " Mountain " " " " " "
6 A.M. " Central " " " " " "
7 A.M. " Eastern " " " " " "
8 A.M. " Colonial " " " " " "
MOTIONS OF THE EARTH'S POLE
Students of geology have been puzzled for many years by traces
remaining from the period when a large part of the earth was
covered with a heavy cap of ice. These shreds of evidence all seem
to point to the conclusion that the centre of the ice-covered
region was quite far away from the present position of the north
pole of the earth. If we are to regard the pole as very near the
point of greatest cold, it becomes a matter of much interest to
examine whether the pole has always occupied its present position,
or whether it has been subject to slow changes of place upon
the earth's surface. Therefore, the geologists have appealed to
astronomers to discover whether they are in possession of any
observational evidence tending to show that the pole is in motion.
Now we may say at once that astronomical research has not as yet
revealed the evidence thus expected. Astronomy has been unable to
come to the rescue of geological theory. From about the year 1750,
which saw the beginning of precise observation in the modern sense,
down to very recent times, astronomers were compelled to deny the
possibility of any appreciable motion of the pole. Observational
processes, it is true, furnished slightly divergent pole positions
from time to time. Yet these discrepancies were always so minute as
to be indistinguishable from those slight personal errors that are
ever inseparable from results obtained by the fallible human eye.
But in the last few years improved methods of observation, coupled
with extreme diligence in their application by astronomers
generally, have brought to light a certain small motion of the pole
which had never before been demonstrated in a reliable way. This
motion, it is true, is not of the character demanded by geological
theory, for the geologists had been led to expect a motion which
would be continuous in the same direction, no matter how slow might
be its annual amount; for the vast extent of geologic time would
give even the slowest of motions an opportunity to produce large
effects, provided its results could be continuously cumulative.
Given time enough, and the pole might move anywhere on the earth,
no matter how slow might be its tortoise speed.
Public-domain text, read in full here on John Shaqi.
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