Signalling across space without wires: being a description of the work of Hertz & his successorsLodge, Oliver, Sir
Science
Signalling across space without wires: being a description of the work of Hertz & his successors
Lodge, Oliver, Sir
Electric waves; Telegraph, Wireless
The conductivity produced by these various methods takes place
throughout the whole mass of the metallic filings, and in every
direction, as the following experiment will show. A vertical ebonite
cup containing aluminium powder (_see_ Fig. 54) is placed between two
metal plates, A, B; laterally the powder is in contact with two short
rods, C, D, which pass through the sides of the ebonite cylinder. A
and B can be connected to two terminals of one of the arms of the
Wheatstone bridge, C and D being free, and _vice versâ_. Whatever
arrangement is adopted, if a battery of 100 cells is joined up for
a few seconds with one or the other of the pairs of terminals, the
increase in the conductivity is immediately visible in that direction,
and is found to exist also in the direction at right angles.
_Substances in which Diminution of Resistance has been Observed._--The
substances in which the phenomenon of the sudden increase of
conductivity is most easily observed are filings of iron, aluminium,
copper, brass, antimony, tellurium, cadmium, zinc, bismuth, &c.
The size of the grains and their nature are not the only elements to
be considered, for grains of lead of the same size, but coming from
different quarters, offer at the same temperature great differences in
resistance (20,000 to 500,000 ohms). Extremely fine metallic powder, as
a rule, offers almost perfect resistance to the passage of a current.
But if we take a sufficiently short column and exert a sufficiently
great pressure a point is soon reached when the electrical influence
will effect a sudden increase in the conductivity. Thus, a layer of
copper reduced by hydrogen, which does not become conducting under the
influence of the electric spark or otherwise, will become so on being
submitted to a pressure of 500 grammes to the square centimetre (7 lb.
per square inch). Instead of using pressure, I employed as a conductor
in some experiments a very fine coating of powdered copper spread on
a sheet of unpolished glass or ebonite E (Fig. 55), seven centimetres
long and two centimetres broad. A layer of this kind, polished with a
burnisher, has a very variable resistance. With a little care one can
prepare sheets which are more or less sensitive to electrical action.
[Illustration: FIG. 55.]
Metal powder or metal filings are not the only sensitive substances, as
powdered galena, which is slightly conducting under pressure, conducts
much better after having been submitted to electrical influence.
Powdered binoxide of maganese is not very sensitive unless mixed with
powdered antimony and compressed.
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