The electron, its isolation and measurement and the determination of some of its propertiesMillikan, Robert Andrews
Philosophy
The electron, its isolation and measurement and the determination of some of its properties
Millikan, Robert Andrews
Electrons
The method which was devised to replace it was not only entirely free
from all of these limitations, but it constituted an entirely new way
of studying ionization and one which at once yielded important results
in a considerable number of directions. This chapter deals with some
of these by-products of the determination of which are of even
more fundamental interest and importance than the mere discovery of the
exact size of the electron.
[Pg 67]
I. ISOLATION OF INDIVIDUAL IONS AND MEASUREMENT
OF THEIR RELATIVE CHARGES
In order to compare the charges on different ions, the procedure
adopted was to blow with an ordinary commercial atomizer an oil spray
into the chamber (Fig. 3).
Fig. 3
The air with which this spray was blown was first rendered dust-free
by passage through a tube containing glass wool. The minute droplets
of oil constituting the spray, most of them having a radius of the
order of a one-thousandth of a millimeter, slowly fell in the chamber
, and occasionally one of them would find its way through
[Pg 68]
the minute pinhole in the middle of the circular brass plate
, 22 cm. in diameter, which formed one of the plates of the air
condenser. The other plate, , was held 16 mm. beneath it by three
ebonite posts . By means of the switch these plates could
be charged, the one positively and the other negatively, by making
them the terminals of a 10,000-volt storage battery , while
throwing the switch the other way (to the left) short-circuited them
and reduced the field between them to zero. The oil droplets which
entered at were illuminated by a powerful beam of light which
passed through diametrically opposite windows in the encircling ebonite
strip . As viewed through a third window in on the side
toward the reader, it appeared as a bright star on a black background.
These droplets which entered were found in general to have been
strongly charged by the frictional process involved in blowing the
spray, so that when the field was thrown on in the proper direction
they would be pulled up toward . Just before the drop under
observation could strike the plates would be short-circuited and
the drop allowed to fall under gravity until it was close to ,
when the direction of motion would be again reversed by throwing on
the field. In this way the drop would be kept traveling back and forth
between the plates. The first time the experiment was tried an ion was
caught within a few minutes, and the fact of its capture was signaled
to the observer by the change in the speed with which it moved up
when the field was on. The significance of the experiment can best be
appreciated by examination of the complete record of one of the early
experiments when the timing was done merely with a stop watch.
[Pg 69]
Public-domain text, read in full here on John Shaqi.
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