The flow of time in the Connecticut valley : $b geological imprintsBain, George W. (George William)
Science
The flow of time in the Connecticut valley : $b geological imprints
Bain, George W. (George William)
Geology -- Connecticut River Valley
Metamorphic rocks were once sedimentary or igneous rocks which have been
changed by intense pressure, by heat, or by solutions moving through
them. Pressure usually produces a sheeted or foliated structure along
which the rock exhibits a tendency to part—somewhat like the pages in a
book that was bound before the ink was dry. Percolating solutions may
produce chemical alterations in the original materials and even
crystallize new substances along the foliated surfaces within the rock,
much as water circulating through cooled soil may solidify to ice and
cause heaving. Many of the rocks in the highlands bordering the
Connecticut Valley are highly foliated or banded in consequence of the
mechanical deformation they suffered when the ancient upland mountain
system was created. They include the slates, schists and gneisses. A few
massive types, like marble, serpentine and soapstone, owe their origins
chiefly to the effects of heat or of the hot, chemically charged
solutions which permeated them.
SLATES are fine-grained rocks characterized by flat, parallel cleavage
surfaces which usually cross the original sedimentary structure. They
were formed from shales, by shearing and compression during ancient
mountain-making movements. Slates crop out beside the station platform
at Brattleboro, Vermont, and at many places southward along Federal
Highway 5 to Greenfield.
SCHIST is foliated, too, but it is composed largely of cleavable
minerals, such as chlorite, muscovite, biotite and amphibole, which
are distributed along the cleavage surfaces. These minerals result
from the chemical activity of hot solutions circulating along a slaty
cleavage, re-crystallizing old materials, and bringing in new to make
these coarse mineral flakes. The schist receives its specific name
(biotite schist, chlorite schist, etc.) from the mineral which
accentuates its cleavage structure.
A few schists contain large crystals which bulge the schistose
surfaces outward around them. Garnet is characteristic in this role,
and a muscovite schist with garnets in it is called a GARNETIFEROUS
(or garnet-bearing) MUSCOVITE SCHIST. Other minerals with occurrences
similar to the garnet are microcline, albite, staurolite, amphibole,
tourmaline, pyrite and magnetite.
GNEISS is a banded rock containing cleavable minerals, but it lacks
the cleavage structure of schist. The cleavable minerals (biotite,
muscovite, amphibole, etc.) may give the gneiss its specific name, but
as often as not, the name is derived from the whole mineral
assemblage, or from an assumed origin, as in the case of granite
gneiss. As in the igneous rocks, the mineral ensemble is held together
by interlocked quartz and feldspar grains. Black-banded biotite gneiss
and hornblende gneiss are the most abundant varieties in the
neighborhood of the metropolitan reservoir east of Pelham.
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