It is nevertheless so important to obtain a clear notion of the real
nature of the effect produced by a lens applied to the eye, that we
will adduce the instance of spectacles to render the point more
familiar. If the person who has been supposed to cross the street for
the purpose of reading a bill had been aged, the limit to the power of
adjustment would have been discovered at a greater distance, and
without so severe a test as the supposed insect. The eyes of the very
aged generally lose the power of adjustment at a distance of thirty or
forty inches instead of ten, and the spectacles worn in consequence
are as much magnifying glasses to them as the lenses employed by
younger eyes to examine the most minute objects. Spectacles are
magnifying glasses to the aged because they enable such persons to see
as closely to their objects as the young, and therefore to see the
objects larger than they could themselves otherwise see them, but not
larger than they are seen by the unassisted younger eye.
In saying that an object appears larger at one time, or to one person,
than another, it is necessary to guard against misconception. By the
apparent size of an object we mean the angle it subtends at the eye,
or the angle formed by two lines drawn from the centre of the eye to
the extremities of the object. In Fig. 1, the lines A E and B E drawn
from the arrow to the eye form the angle A E B, which, when the angle
is small, is nearly twice as great as the angle C E D, formed by lines
drawn from a similar arrow at twice the distance. The arrow A B will
therefore appear nearly twice as long as C D, being seen under twice
the angle, and in the same proportion for any greater or lesser
difference in distance. The angle in question is called the angle of
vision, or the visual angle.
[Illustration: Fig. 1.]
The angle of vision must, however, not be confounded with the angle of
the pencil of light by which an object is seen, and which is explained
in Fig. 2. Here we have drawn two arrows placed in relation to the eye
as before, and from the centre of each have drawn lines exhibiting the
quantity of light which each point will send into the eye at the
respective distances.
[Illustration: Fig. 2.]
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