To take an example. In the case of an object-glass of crown-glass, the
space over which the rays are dispersed is one-fiftieth of the distance
through which they are deviated, and it will be seen by reference to
Fig. 42, that if the red rays are at R, and the blue at B, the distance
A B is fifty times R B, and as these distances depend on the diameter of
the lens only, we can increase the focal length, and so increase the
size of the image without altering the dispersion R B, and so throw the
work of magnifying on the object-glass instead of on the eyepiece, which
would magnify R B equally with the image itself. So that in that time,
and in the time of Huyghens, telescopes of 100, 200, and 300 feet focal
length were not only suggested but made, and one enthusiastic stargazer
finished an object-glass, the focal length of which was 600 feet.
Telescopes of 100 and 150 feet focal length were more commonly used. The
eyepiece was at the end of a string, and the object-glass was placed
free to move on a tall pole, so that an observer on the ground, by
pulling the string, might get the two glasses in a line with the object
which he wished to observe.
So it went on till the time of Sir Isaac Newton, who considered the
problem very carefully—but not in an absolutely complete way. He came to
the conclusion, as he states in his _Optics_, that the improvement of
the refracting telescope was “desperate;” and he gave his attention to
reflecting telescopes, which are next to be noticed.
Let us examine the basis of Sir Isaac Newton’s statement, that the
improvement of the refracting telescope was desperate. He came to the
conclusion that in refraction through different substances there is
always an unchanged relation between the amount of dispersion and the
amount of deviation, so that if we attempt to correct the action of one
prism by another acting in an opposite direction in order to get white
light, we shall destroy all deviation. But Sir Isaac Newton happened to
be wrong, since there are substances which, for equivalent deviations,
disperse the light more or less. So by means of a lens of a certain
substance of low dispersive power we can form an image slightly
coloured, and we can add another lens of a substance having a high
dispersive power and less curvature and just reverse the dispersion of
the first lens without reversing all its deviating power.
Public-domain text, read in full here on John Shaqi.
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