作者fizeau (.)
看板Chemistry
标题[分享] The atomic theory
时间Wed May 28 03:52:25 2008
Source: The Norton History of Chemistry, by William H. Brock
p. 135
The straightforward answer is that Dalton rendered intelligible the many
hundreds of quantitative analyses of substances that were recorded in the
chemical literature and that he provided a model for the long-standing
assumption made by chemists that compounds were formed from the com-
bination of constant amounts of their constituents. He regarded chemical
reactions as the reshuffling of atoms into new clusters (or molecules),
these atoms and compound atoms being pictured in a homely way as little
solid balls surrounded by a variable atmosphere of heat.
This statement, however, tells us little about Dalton's originality;
after all, the atomic theory of matter had existed for a good two-
thousand years before Dalton's birth. In Ireland, at the end of the
eighteenth century, William Higgins (1762-1825) had used atomism in his
A Comparative View of the Phlogiston and Antiphlogiston Theories (1789)
to refute the phlogistic views of his countryman, Richard Kirwan. Higgins
later claimed that Dalton had stolen his ideas--an inherently implausible
notion that, nevertheless, has been supported by several historians in
the past. In fact, Dalton's originality lay in solving the problem of
what philosophers of science have called transduction; he derived a
way of calculating the relative weights of the ultimate particles of
matter from observations and measurements that were feasible in the labo-
ratory. Although atomic particles could never be individually weighed
or seen or touched, Dalton provided a 'calculus of chemical measurement'
that for the first time in history married the theory of atoms with
tangible reality. He had transduced what had hitherto been a theoretical
entity by building a bridge between experimental data and hypothetical
atoms.
Dalton's calculus involved four basic, but reasonable, assumptions. First,
it was supposed that all matter was composed of solid and indivisible
atoms. Unlike Newton's and Priestley's particles, Dalton's atoms contained
no inner spaces. They were completely incompressible. On the other hand,
recognizing the plausibility of Lavoisier's caloric model of changes of phase,
Dalton supposed that atoms were surrounded by an atmosphere of heat, the
quantity of which differed according to the solid, liquid or gaseous phase
of the aggregate of atoms. A gas, for example, possessed a larger atmosphere
of heat than the same matter in the solid state. Secondly, Dalton assumed,
as generations of analysts before him had done, that substances (and hence
their atoms) were indestructible and preserved their identities in all
chemical reactions. If this law of conservation of mass and of the elements
was not assumed, of course, transmutation would be possible and chemists
would return to the dark days of alchemy. Thirdly, in view of Lavoisier's
operational definition of elements, Dalton assumed that there were as many
different kinds of atoms as there were elements. Unlike Boyle and Newton,
for Dalton there was not one primary, homogeneous 'stuff'; rather, particles
of hydrogen differed from particles of oxygen and all the particles that
had so far been defined as elementary.
In these three assumptions Dalton moved away completely from the tradition
of eighteenth-century matter theory, which had emphasized the identity of
matter and of all material substances. In so doing, Dalton intimately
bound his kind of atomism to the question of how elements were to be
defined. In a final assumption, he proposed to do something that neither
Lavoisier nor Higgins had thought of doing, namely to rid metaphysical
atomism of its intangibleness by fixing a determinable property to it, that
of relative atomic weight. To perform this transductive trick, Dalton had
to make a number of simple assumptions about how atoms would combine to
form compound atoms, the process he termed chemical synthesis.
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◆ From: 163.25.118.134
1F:推 huggie:fizeau you're everywhere huh. =p 05/31 09:25
2F:→ fizeau:It would be no more soon. I'm considering using new ID 06/01 00:20
3F:推 huggie:Why? 06/02 18:44