A View of Sir Isaac Newton's PhilosophyPemberton, Henry
Science
A View of Sir Isaac Newton's Philosophy
Pemberton, Henry
Newton, Isaac, 1642-1727. Principia
6. IN these glasses rays, which proceed from any point near the axis,
will be affected as it were in the same manner, as if they proceeded
from the very axis it self, and such as converge toward a point at a
small distance from the axis will suffer much the same effects from
the glass, as if they converged to some point in the very axis. By
this means any luminous body exposed to a convex glass may have an
image formed upon any white body held beyond the glass. This may be
easily tried with a common spectacle-glass. For if such a glass be held
between a candle and a piece of white paper, if the distances of the
candle, glass, and paper be properly adjusted, the image of the candle
will appear very distinctly upon the paper, but be seen inverted; the
reason whereof is this. Let A B (in fig. 151) be the glass, C D an
object placed cross the axis of the glass. Let the rays of light, which
issue from the point E, where the axis of the glass crosses the object,
be so refracted by the glass, as to meet again about the point F. The
rays, which diverge from the point C of the object, shall meet again
almost at the same distance from the glass, but on the other side of
the axis, as at G; for the rays at the glass cross the axis. In like
manner the rays, which proceed from the point D, will meet about H on
the other side of the axis. None of these rays, neither those which
proceed from the point E in the axis, nor those which issue from C or
D, will meet again exactly in one point; but yet in one place, as is
here supposed at F, G, and H, they will be crouded so close together,
as to make a distinct image of the object upon any body proper to
reflect it, which shall be held there.
7. IF the object be too near the glass for the rays to converge after
the refraction, the rays shall issue out of the glass, as if they
diverged from a point more distant from the glass, than that from
whence they really proceed (as in fig. 152,) where the rays coming from
the point E of the object, which lies on the axis of the glass A B,
issue out of the glass, as if they came from the point F more remote
from the glass than E; and the rays proceeding from the point C issue
out of the glass, as if they proceeded from the point G; likewise the
rays which issue from the point D emerge out of the glass, as if they
came from the point H. Here the point G is on the same side of the
axis, as the point C; and the point H on the same side, as the point
D. In this case to an eye placed beyond the glass the object should
appear, as if it were in the situation G F H.
8. IF the glass A B had been concave (as in, fig. 153,) to an eye
beyond the glass the object C D would appear in the situation G H,
nearer to the glass than really it is. Here also the object will not be
inverted; but the point G is on the same side the axe with the point C,
and H on the same side as D.
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