The Romance of the Microscope: An interesting description of its uses in all branches of science, industry, agriculture, and in the detection of crime, with a short account of its origin, history, and developmentEaland, C. A. (Charles Aubrey)
History
The Romance of the Microscope: An interesting description of its uses in all branches of science, industry, agriculture, and in the detection of crime, with a short account of its origin, history, and development
Ealand, C. A. (Charles Aubrey)
Microscopes; Microscopy
Let us try a simple experiment first of all. For the purpose we require
two double convex lenses, one capable of magnifying more than the
other, a sheet of paper and a candle. We must darken the room in which
we make the experiment and, having lighted the candle, we may proceed
to make a compound microscope, for that is really what we are about to
do. Taking the lens which gives the greatest magnification, we look
through it till we can see a clearly defined image of the lighted
candle, then we fix the lens at that spot, so that, during the rest of
our experiment, the candle and lens remain at the same distance from
one another. Now we put the piece of paper as nearly as we can in the
position of our eye, moving it nearer or further from the lens till we
have a perfectly clear image of the candle thrown upon it. The first
thing to strike us is that the image is upside down; it is known as a
real, inverted image. Real because it can be thrown upon a screen and
inverted--well because it is upside down. There are some images, as we
shall learn in a moment, which can be seen but which cannot be thrown
upon a screen: they are called virtual images.
Having fixed our sheet of paper in position, we take our second lens,
focus it sharply upon the back of the sheet of paper, being careful to
keep the centres of the two lenses as far as possible in a straight
line with one another. Having obtained a sharp image we remove the
paper and gradually advance our second lens towards the first. We soon
reach a point where we have a very much larger image of the candle than
the first lens gave us; we must fix our second lens at this point
for we now have a compound microscope, a very crude one certainly and
without the trimmings which make the microscope so useful. Before we
proceed to explain what has happened to the light rays we must take our
paper screen once more and place it as near as possible to the spot
where our eye was situated when we saw the second image. We shall find
that, however much we may move our screen to or from the second lens we
can never manage to obtain an image upon it for the reason that this
second image is virtual, but unlike the first image it is not inverted.
[Illustration]
One or two diagrams will help to explain our experiment and, instead of
the lighted candle, we will suppose that our object is an arrow--it is
easier to draw and serves just as well. The magnification of the object
by our first lens may be represented by the diagram below, where AA is
the lens, CD the object and D′C′ its image.
The arrow C′D′ shows the point at which we placed our screen, and as
our diagram shows, the image is magnified and inverted.
Public-domain text, read in full here on John Shaqi.
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