Geology: The Science of the Earth's Crust — John Shaqi
Geology: The Science of the Earth's CrustMiller, William J. (William John)
Philosophy
Geology: The Science of the Earth's Crust
Miller, William J. (William John)
Geology
All rocks at and near the surface of the earth crumble or decay.
The term "weathering" includes all the processes whereby rocks are
broken up, decomposed, or dissolved. A mass of very hard and seemingly
indestructible granite, taken from a quarry, will, in a very short
time, geologically considered, crumble (Plate 1). During the short
span of the ordinary human life weathering effects are generally of
very little consequence, but during the long ages of geologic time the
various processes of weathering have been slowly and ceaselessly at
work upon the outer crust of the earth, and such tremendous quantities
of rock material have been broken up that the lands of the earth have
everywhere been profoundly affected.
Most of us have noticed buildings and monuments in which the stones
show marked effects of weathering. A good case in point is Westminster
Abbey, London, in which many of the stones are badly weathering, some
of the more ornamental parts having crumbled beyond recognition since
the building was erected in the thirteenth century. In many countries,
tombstones and monuments only one or two centuries old are so badly
weathered that the inscriptions are scarcely if at all legible.
What are some of the processes of nature whereby rocks are weathered?
In cold countries, and often in mountains of generally mild climate
regions, the alternate freezing and thawing of water is a potent agency
in breaking up rocks where the soils are thin or absent. On freezing,
water expands about one-tenth of its volume and exerts the enormous
pressure of over 2,000 pounds per square inch. Nearly all relatively
hard rock formations are separated into more or less distinct blocks by
natural cracks called "joints" (Plate 8). Very commonly the rocks also
contain minute crevices, fissures, and pores. Repeated freezing and
thawing of water which finds its way into such openings finally causes
even the most resistant rocks to break up into smaller and smaller
fragments. A very striking example of difference in climatic effect
upon a given rock mass is the obelisk in Central Park, New York. For
many centuries this famous monument stood practically without change in
the dry, frostless climate of Egypt, but very soon after its removal to
the moist, frosty climate of New York, it began to crumble so rapidly
that it was necessary to cover it with a coating of glaze to protect it
from the atmosphere.
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