This was a more powerful electromagnet than that at the Institution.
With this he sets to work with such energy that twelve pages of the
laboratory book are filled in one day. His thoughts had ripened during
the five days, and he advanced rapidly from point to point. The first
experiment with the Woolwich magnet brings out another point, of which
at once he grasped the significance:--
“Heavy Glass (original, or 174[48]) when placed thus produced a very
fine effect. The brightness of the image produced rose gradually not
instantly, due to this that the iron cores do not take their full
intensity of magnetic state at once but require time, and so the
magnetic curves rise in intensity. In this way the effect is one by
which an optical examination of the electromagnet can be made--and the
time necessary clearly shewn.”
He next ascertains definitely that the phenomenon is one of rotatory
polarisation--that is to say, the action of the magnet is to twist and
rotate the plane of polarisation through a definite angle depending on
the strength of the magnet and the direction of the exciting current.
He finds the direction of the rotation, and verifies it by comparison
with the ordinary optical rotation produced by turpentine and by a
solution of sugar, winding up with the words:--
“_An excellent day’s work._”
For four days he went on accumulating proofs, and now succeeding with
the very substances with which he formerly failed. On September 26th
he tried the conjoint effect of a magnetic and an electric field.
He also tried the effect of a current running along a transparent
liquid electrolytically whilst the magnet was in operation. The only
results appeared to be those due to the magnet alone. For six days in
October the experiments were continued. He noted, as a desideratum, a
transparent oxide of iron. “With some degree of curiosity and hope” he
“put gold leaf into the magnetic lines, but could perceive no effect.”
He was instinctively looking for the phenomenon which Kundt later
discovered as a property of thin transparent films of iron. He entered
amongst the speculative suggestions in his notebook the query: “Does
this [magnetic] force tend to make iron and oxide of iron transparent?”
On October 3rd he tried experiments on light reflected from the surface
of metals placed in the magnetic field. He indeed obtained an optical
rotation by reflection at the surface of a polished steel button, but
the results were inconclusive owing to imperfection of the surface. It
was reserved for Dr. Kerr to rediscover and follow up this effect. On
October 6th he looked for mechanical and magnetic effects on pieces
of heavy-glass and on liquids in glass bulbs placed between the poles
of his magnet, but found none. He also looked for possible effects of
rapid motion given to the diamagnetic while jointly subject to the
action of magnetism and the light, but found none.
[Sidenote: UNFULFILLED EXPECTATIONS.]
Public-domain text, read in full here on John Shaqi.
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