Fragments of Science: A Series of Detached Essays, Addresses, and Reviews. V. 1-2Tyndall, John
Science
Fragments of Science: A Series of Detached Essays, Addresses, and Reviews. V. 1-2
Tyndall, John
Chemistry; Physics; Science
This then is the principle of the beautiful apparatus [Footnote:
Devised by Prof. W. Weber, and constructed by M. Leyser, of Leipzig.]
by which the investigation was conducted. It is manifest that if a
second helix be placed between the poles SN with a cylinder within
it, the action upon the astatic magnet may be exalted. This was the
arrangement made use of in the actual enquiry. Thus to intensify the
feeble action, which it is here our object to seek, we have in the
first place neutralized the action of the earth upon the magnets, by
placing them astatically. Secondly, by making use of two cylinders,
and permitting them to act simultaneously on the four poles of the
magnets, we have rendered the deflecting force four times what it
would be, if only a single pole were used. Finally, the whole
apparatus was enclosed in a suitable case which protected the magnets
from air-currents, and the deflections were read off through a glass
plate in the case, by means of a telescope and scale placed at a
considerable distance from the instrument.
A pair of bismuth cylinders was first examined. Sending a current
through the helices, and observing that the magnets swung perfectly
free, it was first arranged that the bismuth cylinders within the
helices had their central or neutral points opposite to the poles of
the magnets. All being at rest the number on the scale marked by the
cross wire of the telescope was 572. The cylinders were then moved,
one up the other down, so that two of their ends were brought to bear
simultaneously upon the magnetic poles: the magnet moved promptly, and
after some oscillations [Footnote: To lessen these a copper damper was
made use of.] came to rest at the number 612; thus moving from a
smaller to a larger number. The other two ends of the bars were next
brought to bear upon the magnet: a prompt deflection was the
consequence, and the final position of equilibrium was 526; the
movement being from a larger to a smaller number. We thus observe a
manifest polar action of the bismuth cylinders upon the magnet; one
pair of ends deflecting it in one direction, and the other pair
deflecting it in the opposite direction.
Substituting for the cylinders of bismuth thin cylinders of iron, of
magnetic slate, of sulphate of iron, carbonate of iron, protochloride
of iron, red ferrocyanide of potassium, and other magnetic bodies, it
was found that when the position of the magnetic cylinders was the
same as that of the cylinders of bismuth, the deflection produced by
the former was always opposed in direction to that produced by the
latter; and hence the disposition of the force in the diamagnetic body
must have been precisely antithetical to its disposition in the
magnetic ones.
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