“The experiments made with the photo-electric microscopes,” says M.
Ganot, “are amongst the most curious and pleasing to be found in the
whole range of physical science. With this instrument it is possible to
show the smallest objects magnified almost indefinitely to an unlimited
number of spectators. A human hair will appear as large as a broomstick,
an ordinary flea will look the size of a sheep, and the tiny cheese
mite, as well as the smallest animalcules, will be visible in all their
beauty of form and colour as clearly as if they were seen with the naked
eye. One of the most remarkable experiments to be made with this
instrument is that which shows the circulation of the blood. The tail of
a live tadpole is inserted between two plates of glass, or on an
instrument specially made for the purpose, and placed in the microscope
armed with a somewhat low power. The spectator immediately perceives
upon the screen a mass of rivers and rivulets, all flowing with the red
corpuscles forming the blood of the animal, and rushing through its
veins and arteries with inconceivable rapidity. Another interesting
experiment consists in dissolving a small quantity of sal-ammoniac in
warm water, and passing a small portion of the solution across a warm
glass slide. When placed in the microscope the water gradually
evaporates, leaving behind a mass of feathery crystals, whose growth may
be watched atom by atom, each crystalline molecule grouping itself
around the others in forms resembling a mass of fern-leaves.”
The apparatus we have been describing is sometimes illuminated with the
rays of the sun, as in the following figure.
[Illustration:
FIG. 40.—Solar Microscope.
]
It is then called the solar microscope, and exhibits objects with great
beauty and clearness. The use of the sun’s rays, however, has, in our
own country at least, been entirely superseded by the electric and lime
light. The latter method of illumination, which consists in projecting a
stream of oxygen and hydrogen upon a ball of lime, is cheaper and more
certain than the electric light, although the latter is possibly the
more brilliant of the two. The construction of the solar microscope
differs but little from the instrument already described, and may be
readily understood from the foregoing figure. The large mirror is placed
outside the window of the room in which the microscope stands, so that
the solar rays are reflected upon the surface of a series of convergent
lenses, and from thence on to another mirror, from which it is again
reflected through the microscope. As the position of the sun is
constantly changing, it is necessary to connect the outside mirror with
a train of clockwork. It may be mentioned that an instrument of this
kind, for reflecting the sun’s rays, is called a heliostat.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account