=250. Petrographic Microscope.=—Any good microscope furnished with
polarizing apparatus may be used for the examination of the silt
particles and sections. For directions in manipulating microscopes the
reader is referred to works on that subject. A special form of
microscope for petrographic work is made by Bausch and Lomb of
Rochester. The stand of this instrument is shown in Fig. 37. The base,
upright pillars and arm are made of japanned iron. The stage is made in
two forms, first, plain revolving, having silvered graduates at right
angles and second, a mechanical stage with silvered graduations on the
edge with vernier and graduations for the rectangular movements. The
mirror bar is adjustable and graduated and the mirror is of large size,
plane and concave. The double chambered box in the main tube carries the
upper Nicol prism (analyzer). The lower Nicol prism (polarizer) is
mounted in a cylindrical box beneath the stage to which it is held by a
swinging arm. It is adjustable also up or down and is provided with a
compound lens for securing converged polarized light. In revolving the
prism a distinct click shows the position of the crossed Nicols.
[Illustration:
FIGURE 37.
]
=251. Form and Dimensions of the Particles.=—In order to study the
contour of the fine silt particles, it is well to suspend them in a
liquid whose refractive index is markedly lower than that of the
particles themselves, and for this purpose pure water is commonly used.
Care must be taken that not too many particles are found in the drop of
water which is to be placed on the object holder and protected with a
thin, even glass. The tendency to flocculation in these fine particles
will make the study of their form difficult if they are allowed to come
too close together. The size of the particles, or linear diameter, is to
be determined by means of an eye-micrometer. This consists of a glass
plate on which a millimeter scale is engraved with a diamond, or
photographed. The millimeter scale is the one usually employed, each
millimeter being divided into tenths. On microscopes designed especially
for photographic work the micrometer is fastened to the eyepiece, and so
adjusted as to read from left to right, or at right angles thereto.
Sometimes an eyepiece-micrometer has two scales at right angles so that
dimensions may be read in two directions without change. With an
eyepiece-micrometer, not the dimensions of the object, but those of its
magnified image are read, and the degree of magnification being known,
the actual size of the object is easily calculated. The actual
measurements may also be obtained by placing in the field of vision, a
stage-micrometer and determining directly the relation between that and
the eyepiece-scale. If, for example, the stage-micrometer is ruled to
0.01 millimeter, and the eye-micrometer to 0.1 millimeter, and one
division of the stage-rule should cover three divisions of the eye-rule,
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