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
If one bears in mind, which is much below the truth, that the pressure
exercised on the point must be proportional to the section, and
admitting that a pressure of 11 centigrams suffices to thrust in the
sting of a wasp half a millimetre, it will require more than 9 grams
of pressure to thrust in a needle to the same extent. In fact, this
latter figure is much too small, for we have not taken into account the
advantage resulting from the elongated shape of the rose thorn, which
renders it more favourable for penetration than a needle through a drop
of tallow.
It would be easy to extend observations of this kind to a number
of other objects, and the remarks I have just made on natural and
artificial points will apply incontestably to textures for example.
There is no doubt that the thread of a spider’s web would far surpass
the thread of the finest lace, and that art will always find itself
completely distanced by nature.
We amused ourselves frequently by examining the _infusoria_ which are
so easily procured by taking from some stagnant water the mucilage
adhering to the vegetation on the banks, or attached to the lower part
of water lentils. In this way we easily captured _infusoria_, which,
when placed under a strong magnifier, presented the most remarkable
spectacle that one can imagine. They are animalcules, having the form
of transparent tulips attached to a long stem. They form bunches
which expand and lengthen; then, suddenly, they are seen to contract
with such considerable rapidity that the eye can scarcely follow the
movement, and all the stems and flower-bells are folded up into the
form of a ball. Then, in another moment, the stems lengthen, and the
tulip-bells open once more. One can easily encourage the production
of _infusoria_ by constructing a small microscopic aquarium, in which
one arranges the centre in a manner favourable to the development of
the lowest organisms. It suffices to put a few leaves (a piece of
parsley answers the purpose perfectly)[4] in a small vase containing
water (fig. 10), over which a glass cover is placed, and it is then
exposed to the rays of the sun. In two or three days’ time, a drop of
this water seen under the microscope will exhibit _infusoria_. After a
certain time, too, the different species will begin to show themselves.
Microscopical observations can be made on a number of different
objects. Expose to the air some flour moistened by water, and before
long a mouldiness will form on it; it is the _penicillium glaucum_,
and when examined under a magnifier of 200 to 300 diameters, cells are
distinguishable, branching out from an organism remarkable for its
simplicity. We often amused ourselves by examining, almost at hazard,
everything that came within our reach, and sometimes we were led to
make very instructive investigations. When the sky was clear, and the
weather favourable to walking, we encouraged our young people to run
about in the fields and chase butterflies.
Public-domain text, read in full here on John Shaqi.
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