History, Modern -- 19th century; Nineteenth century
Even a brief sketch of the history of the doctrine of the conservation
of energy would be incomplete if mention were not made of the work
of Tyndall. Although by original research he contributed in no small
degree to the demonstration of the theory, it is mainly through his
wonderful skill in popular presentation of the principles of physical
science that he becomes related to the great movement of the middle of
the century. His masterful exposition of the new theory in a course
of lectures at the Royal Institution, given in 1862 and published in
1863 under the title _Heat as a Mode of Motion_, was the means of
making the intelligent public acquainted with its beauty and profound
significance, and the history of science affords no more admirable
example of the possibilities and wisdom of popular scientific
writing than this book. As for the principle of the conservation of
energy itself it is not too much to say that during the last half
of the century it has been the guiding and controlling spirit of
all scientific discovery or of invention through the application of
scientific principles.
LIGHT
The revival and final establishment of the undulatory or wave theory of
light is one of the glories of the nineteenth century, and the credit
for it is due to Thomas Young, an Englishman, and Fresnel, a Frenchman.
Newton had conceived, espoused, and, owing to the great authority
of his name, almost fixed upon the learned world the corpuscular or
emission theory, which assumes that all luminous bodies emit streams of
minute corpuscles, which are reflected, refracted, and produce vision.
Many ordinary optical phenomena were explained by this hypothesis
only with great difficulty, and some were quite unexplainable. The
transmission of a disturbance or vibratory motion by means of waves, as
in the case of sound, was a well-recognized principle, and Young and
Fresnel applied it most successfully to the phenomena of light. Wave
motion, in a general way, is only possible in a sensibly continuous
medium, such as water, air, etc., and the theory that light was a
vibratory disturbance transmitted by means of waves necessitated the
assumption of the existence of such a medium throughout all space in
which light travelled. What is known as the ethereal medium, at first
a purely imaginary substance, but whose real existence is practically
established, satisfies this demand, and the hypothesis that light is
transmitted by waves in such a medium, originating in a vibratory
disturbance at the source, has been of inestimable value to physical
science.
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