The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural PhilosophyPepper, John Henry
Science
The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural Philosophy
Pepper, John Henry
Science -- Juvenile literature
understood that it is not the particles of water first set in motion
that travel and spread out in concentric circles; but the force is
propagated by the rising and falling of each separate particle of water
as it is disturbed by the momentum of the descending wave before it.
When standing at a pier-head, or on a rock against which the sea dashes,
it is usual to hear the observer cry out, if the weather is stormy and
the waves very high, "Oh! here comes a great wave!" as if the water
travelled bodily from the spot where it was first noticed, whereas it is
simply the force that travels, and is exerted finally on the water
nearest the rock. It is in fact a progressive action, just as the wind
sweeps over a wide field of corn, and bends down the ears one after the
other, giving them for the time the appearance of waves. The principle
of successive action is well shown by placing a number of billiard balls
in a row, and touching each other; if the first is struck the motion is
communicated through the rest, which remain immovable, whilst the last
only flies out of its place. The force travels through all the balls,
which simply act as carriers, their motion is limited, and the last only
changes its position. Progressive movement is also well displayed by
arranging six or eight magnetized needles on points in a row, with all
their north poles in one direction. (Fig. 252.)
[Illustration: Fig. 251. Boy throwing stones into water and producing
circular waves.]
[Illustration: Fig. 252. A B. Series of needles arranged as described.
C. The bar magnet, with the north pole N towards the needles. The dotted
lines show the direction gradually assumed by all the needles,
commencing at D.]
On approaching the north pole of a bar magnet to the same pole of one
[Page 264] end of the series of needles, it is very curious to see them
turn in the opposite direction progressively, one after the other, as
the repulsive power of the bar magnet gradually operates upon the
similar poles in the magnetic needles. The undulations of the waves of
water are also perfectly shown by using the apparatus consisting of the
trough with the glass bottom and screen above it, as described at page
10. The transmission of vibrations from one place to another is also
admirably displayed in Professor Wheatstone's Telephonic Concert (see
page picture), where the musical instruments, as at the Polytechnic,
were placed by the author in the basement, and the vibration only
conducted by wooden rods to the sounding-boards above, so that the music
was laid on like gas or water. These vibrations or undulations in air,
water, and the theoretical ether, have therefore been called waves of
water, waves of sound, and waves of light, just as if three clocks were
made of three different metals, the mechanism would remain the same,
though the material, or in this case the medium, be different in each.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account