Scientific American Supplement, No. 275, April 9, 1881Various
Science
Scientific American Supplement, No. 275, April 9, 1881
Various
Science -- Periodicals
The picture is, therefore, reproduced almost instantaneously; indeed, by
using platinum wires on the receiver connected with the negative pole, by
the incandescence of these wires according to the different degrees of
electricity we can obtain a picture, of a fugitive kind, it is true, but
yet so vivid that the impression on the retina does not fade during the
relatively very brief space of time the slide occupies in traveling over
all the contacts. A Ruhmkorff coil may also be employed for obtaining
sparks in proportion to the current emitted. The apparatus is regulated
in precisely the same way as dial telegraphs, starting always from first
contact. The slide should, therefore, never be removed from the rectangular
disk, whereon it is held by the grooves in the brass rails, into which it
fits with but slight friction, without communicating any current to the
line wires when not placed on points of contact.
* * * * *
[Continued from SUPPLEMENT No. 274, page 4368.]
THE VARIOUS MODES OF TRANSMITTING POWER TO A DISTANCE.
[Footnote: A paper lately read before the Institution of Mechanical
Engineers.]
By ARTHUR ACHARD, of Geneva.
But allowing that the figure of 22 H. P., assumed for this power (the
result in calculating the work with compressed air being 19 H. P.) may be
somewhat incorrect, it is unlikely that this error can be so large that its
correction could reduce the efficiency below 80 per cent. Messrs. Sautter
and Lemonnier, who construct a number of compressors, on being consulted
by the author, have written to say that they always confined themselves in
estimating the power stored in the compressed air, and had never measured
the gross power expended. Compressed air in passing along the pipe, assumed
to be horizontal, which conveys it from the place of production to the
place where it is to be used, experiences by friction a diminution of
pressure, which represents a reduction in the mechanical power stored up,
and consequently a loss of efficiency.
The loss of pressure in question can only be calculated conveniently on the
hypothesis that it is very small, and the general formula,
p1 - p 4L
------- = ---- f(u),
[Delta] D
[TEX: \frac{p_1 - p}{\Delta} = \frac{4L}{D}f(u)]
Public-domain text, read in full here on John Shaqi.
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