=84. Absorption of the β rays by matter=. The β particles produce ions
in their passage through the gas and their energy of motion is
consequently diminished. A similar action takes place also when the β
rays pass through solid and liquid media, and the mechanism of
absorption is probably similar in all cases. Some of the particles in
their passage through matter are completely stopped, while others have
their velocity reduced. In addition, there is a considerable scattering
or diffuse reflection of the rays in traversing matter. The amount of
this scattering depends upon the density of the substance and also upon
the angle of incidence of the rays. This scattering of the rays will be
discussed later in section 111.
There are two general methods of determining the absorption of the β
rays. In the first method, the variation of the ionization current is
observed in a testing vessel when the active matter is covered by
screens differing in material and thickness. This ionization in the
vessel depends upon two quantities, viz. the number of β particles which
pass through the matter and also upon the number of ions produced by
them per unit path. In the absence of any definite information in regard
to the variation of ionization by the electron with its velocity, no
very definite conclusions can be drawn from such experiments.
The advent of pure radium-bromide has made it possible to determine the
actual number of electrons which are absorbed in their passage through a
definite thickness of matter, by measuring the negative charge carried
by the issuing rays. Experiments of this character have been made by
Seitz and will be considered later.
These two methods of determining the absorption of β rays are quite
distinct in principle, and it is not to be expected that the values of
the coefficients of absorption obtained in the two cases should be the
same. The whole question of the absorption of electrons by matter is
very complicated, and the difficulty is still further increased by the
complexity of the β rays emitted by the radio-active substances. Many of
the results obtained by different methods, while pointing to the same
general conclusion, are quantitatively in wide disagreement. Before any
definite advance can be made to a better understanding of the mechanism
of absorption, it will be necessary to determine the variation of the
ionization with the speed of the electron over a very wide range. Some
work has already been done in this direction but not between
sufficiently wide limits.
Ionization method.
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