Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progressBoyd, James P. (James Penny)
History
Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progress
Boyd, James P. (James Penny)
Inventions; Progress
The discovery and application of the X ray has proved of immense value
in medicine and surgery. By its means the physician is enabled to
carry on far-reaching diagnoses, and to ascertain with certainty the
whole internal structure of the human body. Fractures, dislocations,
deformities, and diseases of the bones may be located and their
character and treatment decided upon. In dentistry, the teeth may
be photographed by means of the X ray, even before they come to the
surface, and broken fangs and hidden fillings may be located. Foreign
objects in the body, as bullets, needles, calculi in the bladder,
etc., may be localized, and the surgery necessary for their safe
removal greatly simplified. The beating of the heart, movement of the
ribs in respiration, and outline of the liver may be exhibited to the
eye. It has been boldly suggested that in the X ray will be found an
agent capable of destroying the various bacilli which infest the human
system, and become germs of such destructive diseases as cholera,
yellow fever, typhoid fever, diphtheria, and consumption. Even if this
be speculative as yet, there is still room for marvel at the actual
results of the discovery of the X ray, and its future study opens a
field full of the grandest possibilities.
IX. OTHER ELECTRICAL WONDERS.
The novel idea of keeping time by means of electricity originated
quite early in the century, and culminated in two kinds of electric
clocks, one moved directly by the electric current, the other moved
by weights or springs, but regulated by electricity. The former have
the advantage of running a very long time without attention, but as
it is impossible to keep up an unvarying electric current, they are
not so accurate as the latter in keeping time. Though the latter are
popularly called electric clocks, they are really only clocks regulated
by electricity, and in such regulation the electric current comes to
be a most important agent, as is proved at all centres of astronomical
and other observations, as at Greenwich and Washington. At such centres
the astronomical time-keeper is set up so as to run as infallibly as
possible. This central time-keeper, say at Washington, is electrically
connected with other clocks, at observatories, signal-service stations,
railway stations, clock-stores, city halls, etc., throughout the
country. Should any of these clocks lose or gain the minutest fraction
of time as compared with that of the central time-keeper, the electric
current corrects such loss or gain, and so keeps all the clocks at a
time uniform with one another and with the central one. Electrical
devices are also often attached to individual clocks, as those upon
city hall towers and in exposed places, for the purpose of meeting
and correcting inequalities of time occasioned by weather exposure,
expansion and contraction by heat and cold, etc.
Public-domain text, read in full here on John Shaqi.
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