Geology: The Science of the Earth's Crust — John Stuart Mill — John Shaqi
Geology: The Science of the Earth's Crust
John Stuart Mill · en
One of the most remarkable relief features of the ocean bottom is the
so-called "continental shelf." This is a relatively narrow platform
covered by shallow water bordering nearly all the lands of the earth.
Seaward, the depth of water is greatest, and it is seldom over 600 or
800 feet. The continental shelves of the world cover about 10,000,000
square miles or about one-fourteenth of the area of the sea.
Viewed in a broad way, there are two great classes of marine deposits;
first, those laid down comparatively near the borders of the land,
that is, on the continental shelf and continental slope, and second,
the abysmal deposits laid down on the bottom of the deep ocean. Those
found along and near the continental borders are largely land-derived
materials, that is to say, they are mostly sediments carried from the
land into the sea by rivers, and to a lesser extent rock material
broken up by waves along many shores. Practically all such land-derived
material is deposited within 100 to 300 miles of the shores. The
continental border deposits are extremely variable. Near shore they
are chiefly gravel and sands, while farther out they become gradually
finer, and on the continental slope only very fine muds are deposited.
These deposits usually contain more or less organic materials and
shells or skeletons of organisms. In some cases the shells or skeletons
of organisms predominate or even exist to the exclusion of nearly
all other material, as is true of the coral deposits or reefs which
form only in shallow water. Deposits like those just described as
accumulating on the bottom of the shallow sea, comparatively near the
lands, are of great significance to the geologist because just such
marine deposits now consolidated into sandstone, conglomerate, shale,
and limestone, are so widely exposed over the various continents.
A knowledge of the conditions under which shallow sea deposits are
now forming, is, therefore, of great value in interpreting events of
earth history as they are recorded in similar rocks which have been
accumulating through millions of years of time. One specific instance
will make this matter clearer. Using the method outlined in Chapter I
for the determination of earth chronology, and our knowledge of present
conditions under which shallow sea deposits are formed, it has been
well established that a shallow sea spread over fully four-fifths of
the area of North America during the middle Ordovician period of the
early Paleozoic era. Beyond this main conclusion, a careful study of
these rocks has revealed many important facts regarding the physical
geography, life, and climate of that time. The importance of this whole
matter is still further emphasized by the statement that five-sixths of
the exposed rocks of the earth are strata--mostly of shallow sea origin.