In order to investigate the radiation emitted by radio-active bodies,
any one of the properties of this radiation can be utilised. Thus the
action of the rays on photographic plates may serve, or their property
of ionisation of the air, which renders it a conductor, or their
capacity for causing fluorescence of certain bodies. Henceforth, in
speaking of these different methods of working, I shall use the
expressions radiographic method, electrical method, fluoroscopic method.
The first two have been used from the beginning in the study of uranium
rays; the fluoroscopic method can only be applied in the case of the new
bodies which are strongly radio-active, for the feebly active bodies
such as uranium and thorium produce no appreciable fluorescence. The
electrical method is the only one which serves for exact determinations
of intensity; the other two are specially adapted for giving qualitative
results, and only furnish rough approximations. The results obtained
with the three methods just considered are not strictly comparable the
one with the other. The sensitive plate, the gas which is ionised, the
fluorescent screen, are in reality receivers, which absorb the energy of
the radiation, and transform it into another kind of energy, chemical
energy, ionic energy, or luminous energy. Each receiver absorbs a
fraction of the radiation, which depends essentially upon its nature.
Later on, we shall see that the radiation is complex, that the fractions
of the radiation absorbed by the different receivers may differ among
themselves both quantitatively and qualitatively. Finally, it is neither
evident, nor even probable, that the energy absorbed is entirely
transformed by the receiver into the form that we wish for observation;
part of this energy may be transformed into heat, into the evolution of
secondary radiations which may or may not assist in the production of
the observed phenomenon, into chemical action which differs from that
under observation, &c., and here also the effective action of the
receiver, with reference to the end we have in view, depends essentially
upon the nature of that receiver.
Let us compare two radio-active substances, one containing radium and
the other polonium, and which show an equal degree of activity in the
condenser of Fig. 1. If each is covered with a thin leaf of aluminium,
the second appears considerably less active than the first, and the same
is the case when they are placed under the same fluorescent screen, if
the latter is of sufficient thickness, or is placed at a certain
distance from the two radio-active bodies.
_Energy of Radiation._
Public-domain text, read in full here on John Shaqi.
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