The Microscope. Its History, Construction, and Application 15th ed.: Being a familiar introduction to the use of the instrument, and the study of microscopical scienceHogg, Jabez
History
The Microscope. Its History, Construction, and Application 15th ed.: Being a familiar introduction to the use of the instrument, and the study of microscopical science
Hogg, Jabez
Microscopy; Natural history
“In consequence of the high refracting power of a diamond lens over
a glass lens, the former material may be at least one-third as thin
as that of the latter, and if the focal length of both be equal, say,
one-eightieth of an inch, the magnifying power of the diamond lens
will be 2,133 diameters, whereas that of glass will be only 800.” At
a date (1812) before Brewster proposed diamond lenses he demonstrated
a simple method of rendering both single and compound microscopes
achromatic. “Starting,” he says, “with the principle that all objects,
however delicate, are best seen when immersed in fluid, he placed
an object on a slip of glass, and put above a drop of oil, having a
greater dispersive power than the single concave lens, which formed the
object-glass of the microscope. The lens was then made to touch the
fluid, so that the surface of the fluid was formed into a concave lens,
and if the radius of the outward surface was such as to correct the
dispersion, we should have a perfect achromatic microscope.” Here we
have the immersion system foreshadowed. Shortly after these experiments
of Brewster’s were in progress, Dr. Goring is said to have discovered
that the structure of certain bodies could be readily seen in some
microscopes and not in others. These bodies he named test objects.
He then examined these tests with the achromatic combinations of the
Tullys, and was led to the discovery that “the penetrating power of the
microscope depends upon its angle of aperture.”
“While these practical investigations were in progress,” writes Andrew
Ross, “the subject of achromatism engaged the attention of some of
the most profound mathematicians in England, Sir John Herschel, and
Professors Airy and Barlow. Mr. Coddington and others contributed
largely to the theoretical examination of the subject; and although the
results of their labours were not applicable to the microscope, they
essentially promoted its improvement.”
About this period (1812) Professor Amici, of Modena, was
experimentally engaged in the improvement of the achromatic
object-glass, and he invented a reflecting microscope superior to
those of Newton, Baker, or Smith, made as early as 1738, and long ago
abandoned. In 1815 Amici made further experiments, and introduced the
immersion system; while Frauenhofer, of Munich, about the same time
constructed object-glasses for the microscope of a single achromatic
lens, in which the two glasses, although placed in juxtaposition, were
not cemented together.
Dolland, it has been said, introduced achromatic lenses; but although
he constructed many achromatic telescopes, he did not apply the
same principle to microscopes, and those which he sold were only
modifications of the compound microscope of Cuff.
Public-domain text, read in full here on John Shaqi.
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