Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progressBoyd, James P. (James Penny)
History
Triumphs and Wonders of the 19th Century: The True Mirror of a Phenomenal Era: A volume of original, entertaining and instructive historic and descriptive writings, showing the many and marvellous achievements which distinguish an hundred years of material, intellectual, social and moral progress
Boyd, James P. (James Penny)
Inventions; Progress
In 1807 Dalton published a work entitled “New System of Chemical
Philosophy,” in which was announced for the first time the law of the
definite proportions of bodies forming a definite union. The atomic
theory of matter was also developed by Dalton, who gave it a definite
form and expression. Chemists now began to consider the elements as
definite indestructible particles of matter, forming unions among
themselves and with different kinds of atoms to form molecules, which
were considered as the units of substances. As a result of this
supposition, the development of the principle of the relative weight
with which bodies combine was the logical consequence.
Now for the first time the elements began to assume not only names
and descriptions of properties but also numbers, showing the relative
weight of their atoms or final conditions of existence. It was only
necessary, therefore, to assume the standard of comparison for any
one element, in order to determine the relative weights with which it
combined with others. Thus the system of atomic weights was developed.
As a result of the law of chemical action, that most elementary bodies
exist in a condition where two atoms are joined together to form a
molecule, it follows, that in most instances the molecular weights of
the elements are double their atomic weight. There are, however, many
notable exceptions to this rule.
The supposition of the existence of atoms was followed soon by another
theoretical proposition, advanced by Prout (1815). Assuming that the
atomic weight of hydrogen was one, Prout’s hypothesis asserted that the
atomic weights of all other elementary bodies were multiples of that
of hydrogen. The most rigid investigations of recent years have shown
that Prout’s hypothesis is untenable; but the remarkable fact still
remains, that in a great many cases the atomic weights of the elements
are almost whole numbers, or differ from whole numbers by almost a half
unit.
The determination of the atomic weights of the various elements
during the past one hundred years has been worked on by hundreds of
chemists whose names it would be impracticable to mention. The most
important of them are Berzelius, Cooke, Cleve, Delafontaine, Dumas,
Hermann, Marchand, Marignac (1817), Morley, Noyes, Pelouse (1807–1867),
Richards, Schneider, Stas (1813–1891), and Thompson. Of all these
workers Stas, a Belgian chemist, is perhaps the most renowned. Among
those mentioned, Cooke, Morley, Noyes, Delafontaine, and Richards are
citizens of the United States.
From the less than thirty elements which were known at the beginning
of the century, there are known to-day seventy-two with certainty,
and perhaps one or two more whose identity has not yet been fully
established. The chemists who have become most renowned by the
discovery of elementary bodies are: Cavendish, Scheele, Berzelius,
Wöhler (1800–1882), Davy, Gay-Lussac, Priestly, Bunsen (b. 1811),
Crookes (b. 1832), and Ramsay.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account