The Energy System of Matter: A Deduction from Terrestrial Energy PhenomenaWeir, James, active 1883-1912
Science
The Energy System of Matter: A Deduction from Terrestrial Energy Phenomena
Weir, James, active 1883-1912
Force and energy
The movement of the pendulum (§ 23) is accompanied by a certain
transmission of energy to the surrounding medium. When this medium is a
gaseous one such as air, the amount of energy thus transmitted is
relatively small. The process, however, has a real existence. To
illustrate its general nature, let it be assumed that the motion of the
pendulum is carried out, not in air, but in a highly viscous fluid, say
a heavy oil. Obviously, a pendulum falling from its highest position to
its lowest, in such a medium would transmit its energy almost in its
entirety to the medium, and would reach its lowest position almost
devoid of energy of motion. The energy of position with which it was
originally endowed would thus be transformed and transmitted to the
surrounding medium. The agent by which the transmission is carried out
is the moving material of the pendulum, which, as it passes through the
fluid, distorts that fluid in the lines or field of its internal
cohesive or viscous forces which offer a continuous resistance to the
motion. As the pendulum passes down through the liquid, the succeeding
layers of the latter are thus alternately distorted and released. The
distortive movement takes place in virtue of the communication of energy
from the moving pendulum to the liquid, and during the movement energy
is stored in the fluid as energy of strain and as kinetic energy. At the
same time, a transformation of the applied energy into heat takes place
in the distorted material. The release of this material from strain, and
its movement back towards its original state, is also accompanied by a
similar transformation, in which the stored strain energy is, in turn,
converted into the heat form. The whole operation is similar in nature
to that frictional process already described (§ 16) in the case of a
body moving on a rough horizontal table. The final action of the heat
energy thus communicated to the fluid is to expand the latter against
the internal cohesive or viscous forces of its material, and also
against the gravitative attraction of the earth.
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