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  1. Identical or Distinct? The Paneth–Fajans Debate on the Nature of Isotopes.Pieter Thyssen - manuscript
  2. A necessary condition for proof of abiotic semiosis.Marc Champagne - 2013 - Semiotica 2013 (197):283-287.
    This short essay seeks to identify and prevent a pitfall that attends less careful inquiries into “physiosemiosis.” It is emphasized that, in order to truly establish the presence of sign-action in the non-living world, all the components of a triadic sign - including the interpretant - would have to be abiotic (that is, not dependent on a living organism). Failure to heed this necessary condition can lead one to hastily confuse a natural sign (like smoke coming from fire) for an (...)
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  3. Symmetry and Symmetry Breaking in the Periodic Table: Towards a Group-Theoretical Classification of the Chemical Elements.Pieter Thyssen - 2013 - Dissertation, Ku Leuven
    At the heart of chemistry lies the periodic system of chemical elements. Despite being the cornerstone of modern chemistry, the overall structure of the periodic system has never been fully understood from an atomic physics point of view. Group-theoretical models have been proposed instead, but they suffer from several limitations. Among others, the identification of the correct symmetry group and its decomposition into subgroups has remained a problem to this day. In an effort to deepen our limited understanding of the (...)
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  4. Accommodating the Rare Earths in the Periodic Table: A Historical Analysis.Pieter Thyssen - 2009 - Dissertation, Ku Leuven
    Since Mendeleev’s discovery in 1869, the periodic table has figured as the ultimate paper tool in chemical research. It has proved to be a vital research instrument in the arsenal of the chemical community. No chemistry textbook, lecture theatre or scientific laboratory is complete without a copy of the periodic table of the elements. -/- This however, should not necessarily imply that the periodic table has never had to contend with problems. In this thesis, the history of the accommodation of (...)
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  5. Activity of closed d-shells in noble metal atoms.Octavio Novaro - 2004 - Foundations of Chemistry 7 (3):241-268.
    The Periodic Table has the column of the noble gas atoms (He, Ne, Ar, Kr, Xe, Rn) as one of its main pillars. Indeed the inert chemical nature of their closed shell structure is so striking that it is sometimes extended to all such structures. Is it true however that any closed shell, say a closed d-subshell will denote a lack of chemical activity? Take the noble metals for instance, so renowned for their catalytic capacity. Platinum has 10 electrons in (...)
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  6. The discovery that water is H2O.Paul Needham - 2002 - International Studies in the Philosophy of Science 16 (3):205 – 226.
    What are the criteria determining the individuation of chemical kinds? Recent philosophical discussion, which puts too much emphasis on microstructure, seems to presuppose a reductionist conception not motivated by the scientific facts. The present article traces the development of the traditional notion of a substance with the rise of modern chemistry from the end of the 18th century with a view to correcting this speculative distortion.
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  7. Accommodation of the Rare Earths in the Periodic Table: A Historical Analysis.Pieter Thyssen & Koen Binnemans - 1978 - In Karl A. Gschneidner Jr, Jean-Claude G. Bünzli & Vitalij K. Pecharsky (eds.), Handbook on the Physics and Chemistry of Rare Earths. Elsevier. pp. 1-93.
    This chapter gives an overview of the evolution of the position of the rare-earth elements in the periodic system, from Mendeleev’s time to the present. Three fundamentally different accommodation methodologies have been proposed over the years. Mendeleev considered the rare-earth elements as homologues of the other elements. Other chemists looked upon the rare earths as forming a special intraperiodic group and therefore clustered the rare-earth elements in one of the groups of the periodic table. Still others adhered to the intergroup (...)
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  8. The Origin of Lavoisier's First Experiments on Combustion.Robert Kohler Jr - 1972 - Isis 63:349-355.