Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
they are hemispheres, and the theory is also confirmed by a microscopic
photograph from Lackerbauer’s collection, magnified 3,000 diameters,
in which a black central point is seen in the centre of each circle, a
certain reflection of the luminous source reproduced in the focus of
each of the small demi-spheres which constitute the ornament of the
algæ. The microscope, which has progressively shown first the streaks,
then the hexagons, and then the round points, will surely clear up the
point some day or other.
[Illustration: Fig. 133.—Another figure of the same kind.]
[Illustration: Fig. 134.—Third figure.]
Mr. Silvanus P. Thompson, Professor of Physics at University College,
Bristol, has recently presented the French Society of Physical Science
with a curious example of optical illusion, the true cause of which is
not clearly known, but which we may compare with other facts made known
some time ago, of which no precise explanation has been given. Let us
first consider in what the effect discovered by Mr. S. P. Thompson
consists, according to the description that has been given of it by
M. C. M. Gariel; the illustrations here given will also allow of our
verifying the truth of the statements.
[Illustration: Fig. 135. Fig. 136.
Mr. Thompson’s optical illusion. Give a circular movement to these
figures, and the circles will appear to turn round.]
The first illustration consists of a series of concentric circles of
about the width of a millimetre, separated by white intervals of the
same size (fig. 135). These dimensions are not absolute; they vary with
the distance, and may even be a few inches in width if it is desired
to show the phenomenon to a rather numerous auditory. If we hold the
design in the hand, and give it a twirl by a little movement of the
wrist, the circle appears to turn round its centre, and the rotation
is in the same direction, and is equally swift; that is to say, the
circle appears to accomplish a complete turn, whilst the cardboard
really accomplishes one in the same direction. For the second effect
we draw a dark circle, in the interior of which are placed a number
of indentations at regular intervals (fig. 136). Operating in the
same manner as described above, this notched wheel appears to turn
round its centre, but this time in a different direction from the real
movement. In this, however, as in the other design, the effect is more
satisfactory if we do not look directly at it; the movements also are
particularly striking in combinations such as that represented in
fig. 137, in which the multiplicity of circles does not allow us to
fix one specially. We may add that the same effects may be obtained
with eccentric wheels, or even with other curves than circles. By
means of a photograph on glass, Mr. Thompson has been able to reflect
these designs on a screen where they were obtained on a large scale; a
circular movement was communicated to the photographic plate, so that
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