The Elements of Geology; Adapted to the Use of Schools and CollegesLoomis, Justin R. (Justin Rudolph)
Science
The Elements of Geology; Adapted to the Use of Schools and Colleges
Loomis, Justin R. (Justin Rudolph)
Geology
One of the most instructive examples of metamorphic action in this
country is found in the White Mountains of New Hampshire. These
mountains have, till recently, been thought to consist principally of
granite; but it is now ascertained that this supposed granite is an
altered rock of the silurian period. It is represented as "intersected
by veins of felspathic granite; and the general mass is itself in many
parts converted into a near approximation to a binary granite, composed
of distinctly developed quartz and white felspar, with a few sparsely
scattered specks of mica. In its weathered surfaces it wears a close
resemblance to some fine-grained granites; but, upon inspecting a fresh
fracture with a magnifier, we instantly perceive many rounded grains of
quartzose sand, and the felspar is imperfectly formed, though the mica
has more nearly reached the condition which it has in granite. In some
of the coarse varieties of this white rock, small rounded pebbles of
quartz are to be seen, giving unequivocal evidence, even to the naked
eye, of its being an altered sandstone. We feel no hesitation in
deciding it to have been a silico-argillaceous white sandstone, now
almost granitized by extensive metamorphic action."
Similar illustrations, on a small scale, may be seen in every country
where the strata have been cut through by intrusive dikes. Sir James
Hall has shown the same by actual experiment. He exposed pulverized
chalk to heat sufficient to melt it, and under sufficient pressure to
prevent the escape of the carbonic acid. After cooling, the chalk was
found to have taken the form of crystallized limestone. But instances
enough have been given to show what changes should be looked for
wherever the sedimentary rocks have been exposed to a high temperature.
The lower strata must have been exposed, for long periods of time, to
such a temperature. We do not know at what depth below the surface of
the earth the rocks become liquid; but above the line of actual fusion
there must be a mass of rock not melted, yet scarcely retaining the
solid form. For a great thickness, perhaps for several miles, it would
be in a more or less yielding state. As there is not actual fusion, the
stratification is not destroyed, but such a degree of mobility among
the particles exists, that some degree of crystallization takes place,
and the elastic forces below easily bend, throw into folds, compress,
and in every way contort these strata. At the same time, any organic
matters which they may contain are decomposed, and the impressions of
them are obliterated. And such is the condition in which the metamorphic
strata are actually found.
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