Smithsonian Institution - United States National Museum - Bulletin 240: Contributions From the Museum of History and Technology; Papers 34-44 on Science and TechnologyMuseum of History and Technology (U.S.)
History
Smithsonian Institution - United States National Museum - Bulletin 240: Contributions From the Museum of History and Technology; Papers 34-44 on Science and Technology
Museum of History and Technology (U.S.)
Science -- History; Technology -- History
_Despite the many uses made of voltaic cells after Volta's
announcement of his "pile" invention in 1800, two decades passed
before Oersted discovered the magnetic effects of a voltaic circuit.
As a result of this and within a five-month period, three men,
apparently independently, announced the invention of the "first"
electromagnetic instrument. This article details the merits of their
claims to priority._
THE AUTHOR: _Robert A. Chipman is chairman of the Department of
Electrical Engineering at the University of Toledo in Toledo, Ohio,
and consultant to the Smithsonian Institution._
Electrostatic Instruments before 1800
It is the fundamental premise of instrument-science that a device for
detecting or measuring a physical quantity can be based on any
phenomenon associated with that physical quantity. Although the
instrumentation of electrostatics in the 18th century, for example,
relied mainly on the phenomena of attraction and repulsion and the
ubiquitous sparks and other luminosities of frictional electricity, even
the physiological sensation of electric shock was exploited
semiquantitatively by Henry Cavendish in his well-known anticipation of
Ohm's researches. Likewise, Volta in 1800[1] described at length how the
application of his pile to suitably placed electrodes on the eyelids, on
the tongue, or in the ear, caused stimulation of the senses of sight,
taste and hearing; on the other hand, he reported that electrodes in the
nose merely produced a "more or less painful" pricking feeling, with no
impression of smell. The discharges from the Leyden jars of some of the
bigger frictional machines, such as van Marum's at Leyden, were found by
1785 to magnetize pieces of iron and to melt long pieces of metal
wire.[2]
The useful instruments that emerged from all of this experience were
various deflecting "electrometers" and "electroscopes" (the words were
not carefully distinguished in use), including the important goldleaf
electroscope ascribed to Abraham Bennet in 1787.[3]
Public-domain text, read in full here on John Shaqi.
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