Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
The electric machine was in action, and one of the attendants happening
to approach or touch one of the frogs, the man as well as Madame
Galvani observed that the limbs were violently agitated. Galvani was
at once informed of this, and he made repeated experiments, which
showed him that the convulsive movements only took place when a spark
was drawn from the prime conductor of the electric machine, and while
the nerve was touched by a conductor. Galvani then suspended a number
of frogs to a railing by metal hooks, with a view to experiment upon
them with atmospherical electricity. But the frogs’ limbs were again
agitated when no electricity was apparent, and Galvani after some
consideration came to the conclusion that the movement was owing to the
position the animals assumed with reference to the metallic bodies.
Thus when muscle and nerve were in contact with metallic bodies and
connected by metal, the movements of the limbs were observable, and
the greater the surface contact the greater was the convulsion. The
philosopher next tried various metals, and discovered that the most
powerful combination was zinc and silver.
Galvani, in 1791, published his discovery and his theory that the body
acted as a Leyden jar, different parts being in a different state of
electricity. No sooner were his deductions published than all Europe
was in a ferment, and philosophers of all nations were discussing
it. Fowler, Valli, Robison, Wells, Humboldt, etc., all were deeply
interested, but none of them appear to have arrived at so correct
conclusions as did Volta, the physician of Pavia. “Wherever frogs were
to be found,” says Du Bois Reymond, “and where two different kinds of
metal could be procured, everybody was anxious to see the mangled limbs
of frogs brought to life in this wonderful way. Physiologists believed
that at length they should realize their visions of a vital power, and
physicians thought no cure was impossible.”
But notwithstanding the popular theory, Volta, in his letters to
Carallo, while giving a full and clear account of the discovery made
by Galvani and his own experiments, attacked and finally defeated the
Professor. Volta quite upset Galvani’s Leyden-jar theory; Volta says
that it was by accident that Mr. Galvani discovered the phenomenon, and
by which he was more astonished than he ought to have been. Volta’s
letters will be found in the _Philosophical Transactions_ of the Royal
Society (in French), and he attributes the effect to the metals which
produced a small amount of electricity. He found that the nerve was
acted upon on even parts of a muscle laid upon two different metals,
and if those were united, a contraction took place.
Public-domain text, read in full here on John Shaqi.
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