Essays on the Microscope: Containing a Practical Description of the Most Improved Microscopes, a General History of Insects, etc., etc.Adams, George
Science
Essays on the Microscope: Containing a Practical Description of the Most Improved Microscopes, a General History of Insects, etc., etc.
Adams, George
Insects -- Early works to 1800; Microscopy -- Early works to 1800
Now apply the opake box, and place the object between the plates at H;
open the door, _k i_, and adjust the mirror, M, till you see you have
illuminated the object strongly. If you cannot effect this by the screw
S, you must move the screws Q, R, in order to get the light reflected
strongly from the mirror, N O P, on the mirror M; without which the
latter cannot illuminate the object. The object being strongly
illuminated, shut the door, _k i_, and a distinct view of the object
will soon be obtained on your screen, by adjusting the tubes V X, with
the magnifiers, which is effected by moving them backwards or forwards.
A perfectly round spot of light cannot always be procured in northern
latitudes, the altitude of the sun being often too low; neither can it
be obtained when the sun is directly perpendicular to the front of the
room. As the sun is continually changing its place, it will be
necessary, in order to keep his rays full upon the object, to keep them
continually directed through the axis of the instrument, by turning the
two screws Q and R.
To view transparent objects, remove the opake box, and insert the tube,
Y, of Fig. 2, in its place; put the slider, Fig. 3, into its place at
_n_, a condenser, Fig. 4, at _h_, and the slider with the objects
between the plates at _m_; then adjust the mirror, N O P, as before
directed, by the screws, Q, R, so that the light may pass through the
object; regulate the focus of the magnifier by the pinion, O. The most
pleasing magnifiers in use are the fourth and fifth. The size of the
object is generally from four to eight feet, and may be increased or
diminished by altering the distance of the screen from the microscope;
five or six feet is a convenient distance.
The effect by this sort of microscope is stupendous, and never fails to
excite wonder in an observer at the first view, in seeing a flea, &c.
augmented in appearance to SEVEN, EIGHT, or even TEN FEET in length,
with all its colours, motions, and animal functions, distinctly and
beautifully exhibited.
TO EXAMINE TRANSPARENT OBJECTS OF A LARGER SIZE, or to render the
instrument what is usually called a megalascope, take out the slider,
Fig. 3, from its place at _n_; screw the cell and lens, Fig. 6, into the
hole at P, Fig. 2; remove the glass which is placed at _h_, and regulate
the light and focus agreeable to the foregoing directions.
At C D, is placed a lens for increasing the density of the rays, for the
purpose of burning or melting any fusible substance; this lens must be
removed in most cases, lest the objects should be burnt. The intensity
of the light is also varied by moving the tube G, and Fig. 2, Y, inwards
or outwards.
DESCRIPTION OF THE TRANSPARENT SOLAR MICROSCOPE AND APPARATUS. Plate VI.
Fig. 4, to 14.
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