If the impulse be attended by fractures of the earth's crust, or other
sufficient causes for the impulse to be communicated to the air directly
or through the intervening sea, ordinary sound-waves will reach the
observer through the air, propagated at the rate of 1,140 feet per
second, or thereabouts; and may also reach him before or with or soon
after the shock itself, through the solid material of the earth; and
lastly, if the impulse be sufficient to disturb the sea-bottom above the
centre of impulse, or otherwise to generate an aqueous wave of
translation, that reaches the observer last, rolling in-shore as the
terrible "great sea-wave," which has ended so many of the great
earthquakes, its dimensions and its rate of propagation depending upon
the magnitude of the originating impulse and upon the variable depth of
the water. It is not my purpose, nor would it be possible within my
limits here, to give any complete account of the matter contained in
that Paper, which, in the words of the President of the Academy upon a
later occasion, "fixed upon an immutable basis the true theory of
Earthquakes."[C] I should state, however, that in it I proved the
fallacy of the notion of vorticose shocks, which had been held from the
days of Aristotle, and showed that the effects (such as the twisting on
their bases of the Calabrian Obelisks) which had been supposed due to
such, were but resolved motions, due to the transit rectilinearly of the
shock.
This removed one apparent stumbling block to the true theory.
Incidentally also it was shown that from the observed elements of the
movement of the elastic wave of shock at certain points--by suitable
instruments--the position and depth of the _focus_, or centre of
impulse, might be inferred.
In the same volume ("Transactions of the Royal I. Academy," XXI.) I gave
account, with a design to scale, for the first self-registering and
recording seismometer ever, to my knowledge, proposed. In some respects
in principle it resembles that of Professor Palmieri, of which he has
made such extended use at the Vesuvian Observatory, though it differs
much from the latter in detail. In June, 1847, Mr. Hopkins, of
Cambridge, read his Report, "On the Geological Theories of Elevation and
Earthquakes," to the British Association--requested by that body the
year before--and printed in its Reports for that year.
The chief features of this document are a digest of Mr. Hopkins's
previously published "Mathematical Papers" on the formations of
fissures, etc., by elevations and depressions, and those on the
thickness of the earth's crust, based on precession, etc., which he
discusses in some relations to volcanic action.
This extends to forty-one pages, the remaining eighteen pages of the
Report being devoted to "Vibratory Motions of the Earth's Crust produced
by Subterranean Forces--Earthquakes."
Public-domain text, read in full here on John Shaqi.
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