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
When dry hydrogen was used as a vehicle, the effect was also the same.
The effect, therefore, is not due to any interaction between the
vapour of the nitrite and its vehicle.
This was further demonstrated by the deportment of the vapour itself.
When it was permitted to enter the experimental tube unmixed with air
or any other gas, the effect was substantially the same. Hence the
seat of the observed action is the vapour.
This action is not to be ascribed to heat. As regards the glass of
the experimental tube, and the air within the tube, the beam employed
in these experiments was perfectly cold. It had been sifted by
passing it through a solution of alum, and through the thick
double-convex lens of the lamp. When the unsifted beam of the lamp
was employed, the effect was still the same; the obscure calorific
rays did not appear to interfere with the result.
My object here being simply to point out to chemists a method of
experiments which reveals a new and beautiful series of reactions, I
left to them the examination of the products of decomposition. The
group of atoms forming the molecule of nitrite of amyl is obviously
shaken asunder by certain specific waves of the electric beam, nitric
oxide and other products, of which the _nitrate_ of amyl is probably
one, being the result of the decomposition. The brown fumes of
nitrous acid were seen mingling with the cloud within the experimental
tube. The nitrate of amyl, being less volatile than the nitrite, and
not being able to maintain itself in the condition of vapour, would be
precipitated as a visible cloud along the track of the beam.
In the anterior portions of the tube a powerful sifting of the beam by
the vapour occurs, which diminishes the chemical action in the
posterior portions. In some experiments the precipitated cloud only
extended halfway down the tube. When, under these circumstances, the
lamp was shifted so as to send the beam through the other end of the
tube, copious precipitation occurred there also.
Solar light also effects the decomposition of the nitrite-of-amyl
vapour. On October 10, 1868, I partially darkened a small room in the
Royal Institution, into which the sun shone, permitting the light to
enter through an open portion of the window-shutter. In the track of
the beam was placed a large plano-convex lens, which formed a fine
convergent cone in the dust of the room behind it. The experimental
tube was filled in the laboratory, covered with a black cloth, and
carried into the partially darkened room. On thrusting one end of the
tube into the cone of rays behind the lens, precipitation within the
cone was copious and immediate. The vapour at the distant end of the
tube was in part shielded by that in front, and was also more feebly
acted on through the divergence of the rays. On reversing the tube, a
second and similar cone was precipitated.
Physical Considerations.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account