We may now sum up the use of the eye-lens. The image is brought to a
focus on the retina, because the object is some distance off, and the
rays from every point, (as from A and B, Fig. 35), on reaching the eye,
are nearly parallel; but it is not necessary that they should be
absolutely parallel, as the eye is capable of a small adjustment, but if
one wishes to see an object much nearer (as in the lower figure), it is
impossible to do it unless some optical aid is obtained, for the rays
are too divergent, and cannot be brought to a focus on the retina. What
does that optical aid effect? It enables us to place the object in the
focus of another lens which shall make the rays parallel, and fit for
the lens of the eye to focus on the retina, and since the object can by
this means be brought close to the lens and eye, it forms a larger image
on the retina. Dependent on this is the power of the telescope.
[Illustration:
FIG. 38.—Telescope. A, object-glass, giving an image at B; C, lens for
magnifying image B.
]
We shall refer later on to the mechanical construction of the telescope.
Here it may be merely stated that the smaller ones consist of a brass
tube, the object-glass held in a brass ring screwed in at one end of the
tube and a smaller tube carrying the eyepiece sliding in and out of the
large tube and sometimes moved by a rack and pinion motion, at the
other. The larger ones as mounted for special uses will also be fully
described farther on.
[Illustration:
FIG. 39.—Diagram Explaining the Magnifying Power of Object-glass.
]
The power of the telescope depends on the object-glass as well as on the
eyepiece; if we wish to magnify the moon, for instance, we must have a
large image of the moon to look at, and a powerful lens to see that
image. By studying Fig. 39 the fundamental condition of producing a
large image by a lens will be seen. Suppose we wish to look at an object
in the heavens, the diameter of which is one degree; if the lens throws
an image of that body on to the circumference of a circle of 360 inches,
then, as there are 360 degrees in a circle, that image will cover one
inch; let the circle be 360 yards, and the image of a body of one degree
will cover one yard; and to take an extreme case and suppose the
circumference of the circle to be 360 miles, then the image will be one
mile in diameter.
This is one of the principal conditions of the action of the
object-glass in enabling us to obtain images which can be magnified by a
lens, and by such magnification made to appear nearer to us than they
are.
Galileo used telescopes which magnified four or five times, and it was
only with great trouble and expense that he produced one which magnified
twenty-three times.
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