How to become an inventor : $b Containing experiments in photography, hydraulics, galvanism and electricity, magnetism, heat, and the wonders of the microscopeWarford, Aaron A.
Science
How to become an inventor : $b Containing experiments in photography, hydraulics, galvanism and electricity, magnetism, heat, and the wonders of the microscope
Warford, Aaron A.
Scientific recreations
The simplest form of the compound microscope, as at present made,
consists of a stand and a sliding tube, in which are set the glasses
which magnify the object and its image. At the top is the tube, which
is capable of being slid up and down in the shoulder of the stand, so
as to obtain the proper focus. Above is seen the eye-glass; and the
object-glass is shown at the bottom of the tube. Below the object-glass
is the “stage” on which the object to be magnified is laid; and lowest
of all is a mirror, which serves to reflect the light upwards through
the object, and which can be turned by means of the knobs at the
sides. The object-glass is composed of two pieces, which can readily
be separated. If both are used, sufficient magnifying power is gained
to show the scales on a butterfly’s wing and similar minute objects;
while, if one is removed, the object is not magnified to so great
an extent, but a larger portion can be seen, and the definition is
clearer. The cost of this instrument, together with a few accessories,
is about $2.50.
The proper light is our next point, and upon it rests the chief
beauty of the effect. The light which will suit one object will not
suit another, and even the same object should be examined under every
variety of light. Some objects are best shown when the light is
thrown _upon_ them from above, and others when it is thrown _through_
them from below. Again, the direction of light is of vast importance;
for it will easily be seen that an oblique light will exhibit minute
projections by throwing a shadow on one side and brilliancy on the
other, while a vertical illumination would fail to show them. On the
same principle, one object will be shown better with the light in
front, and another when it is on one side.
One of the most effective means of attaining this object is by using
the “bull’s-eye condenser,” which is sometimes fixed to the stage, but
is usually detached. As the upright stem is telescopic, the glass can
be raised to a considerable height, while the joint and sliding-rod
permit the lens to be applied at any angle which promises the most
brilliant light.
As for the kind of light that is employed, there is nothing which
equals that of a white cloud; but such clouds are rare, and are at
the best extremely transient, and can only be seen by day, various
artificial methods of illumination have been invented. Novices
generally think that when the sky is bright and blue they will be very
successful in their illumination, and feel grievously disappointed
at finding that they obtained much more light from the clouds, whose
disappearance they had anxiously been watching. Finding that the blue
sky gives scarcely any light at all, they rush to the other extreme,
turn the mirror towards the sun, and pour such a blaze of light upon
the object, that the eye is blinded by the scintillating refulgence,
and the object is often injured because the mirror is capable of
reflecting heat as well as light.
Public-domain text, read in full here on John Shaqi.
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