Results for 'chemical nomenclature'

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  1.  21
    The contributions of P.-J. Macquer, T. O. Bergman and L. B. Guyton de Morveau to the reform of chemical nomenclature.W. A. Smeaton - 1954 - Annals of Science 10 (2):87-106.
  2.  14
    The position of the glycosidic bond in purine nucleosides: The conservative influence of a convention of chemical nomenclature.J. Frank Henderson - 1978 - Annals of Science 35 (3):299-323.
    Determination of the structure of the nucleic acids involved inter alia identification of the ring atom of the purines to which ribose or deoxyribose was attached. This in turn depended on knowledge of the ring atoms that could be so substituted and hence that were bonded to replaceable hydrogens. In 1897 E. Fischer adopted a convention of depicting this hydrogen at position 7 of the purine ring, although he was aware that it was equally correct to depict it at position (...)
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  3.  7
    The Introduction of Lavoisier's Chemical Nomenclature into America.Denis I. Duveen & Herbert S. Klickstein - 1954 - Isis 45 (3):278-292.
  4.  9
    The Introduction of Lavoisier's Chemical Nomenclature into America: Part 2.Denis I. Duveen & Herbert S. Klickstein - 1954 - Isis 45 (4):368-382.
  5.  80
    Rhetoric and nomenclature in lavoisier's chemical language.Wilda Anderson - 1985 - Topoi 4 (2):165-169.
    Implicit in the theoretical chemical writings of Antoine Laurent Lavoisier is a theory of language that is not in complete harmony with the philosopher of language whom he takes as his explicit authority, Condillac. Lavoisier's reform of the nomenclature of chemistry leads to his dividing scientific language into two sets with different properties: a denotative artificial nomenclature and connotative natural language. This division supposedly permits knowledge to be stored in the nomenclature while the natural language retains (...)
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  6.  41
    The Forgotten Names of Chemical Elements.João P. Leal - 2014 - Foundations of Science 19 (2):175-183.
    Chemical elements are the bricks with which Chemistry is build. Their names had a history, but part of it is forgotten or barely known. In this article the forgotten, no more used, never used, and alternatively used names and symbols of the elements are reviewed, bringing to us some surprises and deeper knowledge about the richness of Chemistry. It should be stressed that chemical elements are important not only for chemists but for all people dealing with science. As (...)
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  7.  70
    The semantics of chemical education: constructivism, externalism and the language of chemistry. [REVIEW]Pedro J. Sánchez Gómez - 2011 - Foundations of Chemistry 15 (1):103-116.
    In this paper we present a semantic analysis of the application of didactic constructivism to chemical education. We show that the psychological basis of constructivism yield, when applied to chemistry, an internalist semantics for the chemical names. Since these names have been presented as typical examples of an externalism for kind terms, a fundamental incompatibility ensues. We study this situation, to conclude that it affects chemical education at every level. Finally, we present a preliminary analysis of this (...)
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  8.  10
    The Iron(Iii) Thiocyanate Reaction: Research History and Role in Chemical Analysis.Kevin C. De Berg - 2019 - Springer Verlag.
    This Brief presents an historical investigation into the reaction between ferric ions and thiocyanate ions, which has been viewed in different ways throughout the last two centuries. Historically, the reaction was used in chemical analysis and to highlight the nature of chemical reactions, the laws of chemistry, models and theories of chemistry, chemical nomenclature, mathematics and data analysis, and instrumentation, which are important ingredients of what one might call the nature of chemistry. Using the history of (...)
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  9.  28
    The promotion of mining and the advancement of science: the chemical revolution of mineralogy.Theodore M. Porter - 1981 - Annals of Science 38 (5):543-570.
    This paper explores the origins of the analytical definition of simple substance, a concept whose central importance in the new chemistry of Lavoisier and his colleagues is now widely recognized. I argue that this notion derived from the practical activities of metallurgists and mineral assayers, and that the theoretical elaboration necessary for the analytical concept to be understood as relevant to chemistry was inspired by the efforts of enlightened rulers in Sweden and Germany to turn chemical science to the (...)
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  10.  8
    Name game: the naming history of the chemical elements—part 1—from antiquity till the end of 18th century.Paweł Miśkowiec - 2022 - Foundations of Chemistry 25 (1):29-51.
    The aim of the series of the three articles entitled “Name game…” is to present the historical information about nomenclature history of every known chemical element. The process of naming each chemical element is analyzed, with particular emphasis on the first publication with a given name. It turned out that in many cases this information is not obvious and unambiguous, and the published data are even contradictory. In a few cases, the names of the elements were changed (...)
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  11.  15
    Lavoisier e a sistematização da nomenclatura química.Regina Simplício Carvalho - 2012 - Scientiae Studia 10 (4):759-771.
    Lavoisier sistematizou a nomenclatura química com base na Lógica de Condillac, e ambos os autores foram inspirados por John Locke. Atacou persistentemente a teoria flogística até a sua derrocada e conseguiu a adesão de vários cientistas a sua teoria do oxigênio. O uso da nova nomenclatura química implicava a aceitação dessa última teoria. Escreveu várias obras, entre elas Méthode de nomenclature chimique e Traité élémentaire de chimie, nas quais divulgou a nova nomenclatura química por toda a Europa. Assumindo que (...)
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  12.  7
    Terminology between chemistry and philology: A Polish interdisciplinary debate in 1900?Jan Surman - 2019 - Centaurus 61 (3):232-253.
    During the summer of 1900, the Chemical Section of the Society for the Promotion of Russian Industry and Commerce in Warsaw published a very special booklet in which prominent philologists debated proposals concerning adjustments to chemical nomenclature. Several issues were discussed, including systems of classification of chemical compounds, new specialist terms, and which element names to select among the many then in use. Chemists translated and modified these proposals while strongly disagreeing with using philological expertise. But (...)
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  13.  48
    Viewing chemistry through its ways of classifying.Wolfgang Lefèvre - 2011 - Foundations of Chemistry 14 (1):25-36.
    The focus of this contribution lies on eighteenth-century chemistry up to Lavoisier’s anti-phlogistic chemical system. Some main features of chemistry in this period will be examined by discussing classificatory practices and the understanding of the substances these practices imply. In particular, the question will be discussed of whether these practices can be regarded as natural historical practices and, hence, whether chemistry itself was a special natural history (part I). Furthermore, discussion of the famous Methode de nomenclature chimique (1787) (...)
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  14.  35
    The aesthetics of molecular representation: From the empirical to the constitutive. [REVIEW]Tami I. Spector - 2003 - Foundations of Chemistry 5 (3):215-236.
    This paper examines the negative response to Dalton’s atomic symbols by situating them in the context of the normative eighteenth-century representational system of affinity tables. Aesthetic analysis of the affinity tables reveals them as schema embedded with a potent functionalist empiricism. In contrast, the aesthetics of Dalton's symbols is associated with hypothetico-deductivism and alchemical iconicism.
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  15.  39
    Chemistry, a lingua philosophica.Guillermo Restrepo & José L. Villaveces - 2011 - Foundations of Chemistry 13 (3):233-249.
    We analyze the connections of Lavoisier system of nomenclature with Leibniz’s philosophy, pointing out to the resemblance between what we call Leibnizian and Lavoisian programs. We argue that Lavoisier’s contribution to chemistry is something more subtle, in so doing we show that the system of nomenclature leads to an algebraic system of chemical sets. We show how Döbereiner and Mendeleev were able to develop this algebraic system and to find new interesting properties for it. We pointed out (...)
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  16.  80
    Lavoisier and mendeleev on the elements.Robin Findlay Hendry - 2004 - Foundations of Chemistry 7 (1):31-48.
    Lavoisier defined an element as a chemicalsubstance that cannot be decomposed usingcurrent analytical methods. Mendeleev saw anelement as a substance composed of atoms of thesame atomic weight. These `definitions' doquite different things: Lavoisier'sdistinguishes the elements from the compounds,so that the elements may form the basis of acompositional nomenclature; Mendeleev's offersa criterion of sameness and difference forelemental substances, while Lavoisier's doesnot. In this paper I explore the historical andtheoretical background to each proposal.Lavoisier's and Mendeleev's explicitconceptions of elementhood differed from eachother, (...)
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  17.  22
    Filling the Space of Possibilities: Eighteenth-Century Chemistry's Transition from Art to Science.Lissa Roberts - 1993 - Science in Context 6 (2):511-553.
    The ArgumentThis paper charts eighteenth-century chemistry's transition from its definition as an art to its proclaimed status as a science. Both the general concept of art and specific practices of eighteenth-century chemists are explored to account for this transition. As a disciplined activity, art orients practitioners' attention toward particular directions and away from others, providing a structured space of possibilities within which their discipline develops. Consequently, while chemists throughout the eighteenth century aspired to reveal nature's “true voice,” the path of (...)
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  18.  9
    Hydrogen Oxygenovich: Crafting Russian as a language of science in the late nineteenth century.Michael D. Gordin - 2015 - History of Science 53 (4):417-437.
    Until the 1860s, science in Russia was principally conducted in Latin, French, and German. In the years leading up to and following the creation of the Russian Chemical Society in 1868, Russian chemists – treated in this article as both a representative sample of Russian scientists and also practitioners of the flagship science of the period – debated both the merits of developing a nomenclature that would enable Russian to “hold” modern inorganic and organic chemistry, and the practicability (...)
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  19.  3
    “From the Known to the Unknown:” Nature’s Diversity, Materia Medica, and Analogy in 18th Century Botany, Through the Work of Tournefort, the Jussieu Brothers, and Linnaeus.Elisabeth de Cambiaire - 2023 - Journal of the History of Biology 56 (4):635-672.
    The growth of botany following European expansion and the consequent increase of plants necessitated significant development in classification methodology, during the key decades spanning the late 17th to the mid-18th century, leading to the emergence of a “natural method.” Much of this development was driven by the need to accurately identify medicinal plants, and was founded on the principle of analogy, used particularly in relation to properties. Analogical reasoning established correlations (affinities) between plants, moreover between their external and internal characteristics (...)
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  20.  84
    Elements, principles and the narrative of affinity.M. D. Eddy - 2004 - Foundations of Chemistry 6 (2):161-175.
    In the 18th century, the concept of ‘affinity’, ‘principle’ and ‘element’ dominated chemical discourse, both inside and outside the laboratory. Although much work has been done on these terms and the methodological commitments which guided their usage, most studies over the past two centuries have concentrated on their application as relevant to Lavoisier's oxygen theory and the new nomenclature. Kim's affinity challenges this historiographical trajectory by looking at several French chemists in the light of their private thoughts, public (...)
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  21.  6
    When nomenclature matters: Is the “new paradigm” really a new paradigm for the psychology of reasoning?Markus Knauff & Lupita Estefania Gazzo Castañeda - 2023 - Thinking and Reasoning 29 (3):341-370.
    For most of its history, the psychology of reasoning was dominated by binary extensional logic. The so-called “new paradigm” instead puts subjective degrees of belief center stage, often represented as probabilities. We argue that the “new paradigm” is too vaguely defined and therefore does not allow a clear decision about what falls within its scope and what does not. We also show that there was not one settled theoretical “old” paradigm, before the new developments emerged, and that the alleged new (...)
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  22.  17
    La vanité de la nomenclature. Un manuscrit inedit de Jean Piaget.Fernando Vidal, Jean Piaget & Tardieu - 1984 - History and Philosophy of the Life Sciences 6 (1):75-106.
    Jean Piaget, connu comme créateur d'une théorie du développement de l'intelligence chez l'enfant, fut un naturaliste précoce. En 1912, à l'âge de seize ans, il prononça une conférence sur « La vanité de la nomenclature » dans le cadre des activités d'un club de jeunes naturalistes; le manuscrit de cette conférence a été retrouvé récemment. L'introduction à la présente édition du manuscrit essaie de montrer l'importance de ce dernier pour une biographie historique de Piaget. D'une part, « La vanité (...)
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  23.  72
    Can Nomenclature for the Body be Explained by Embodiment Theories?Asifa Majid & Miriam Staden - 2015 - Topics in Cognitive Science 7 (4):570-594.
    According to widespread opinion, the meaning of body part terms is determined by salient discontinuities in the visual image; such that hands, feet, arms, and legs, are natural parts. If so, one would expect these parts to have distinct names which correspond in meaning across languages. To test this proposal, we compared three unrelated languages—Dutch, Japanese, and Indonesian—and found both naming systems and boundaries of even basic body part terms display variation across languages. Bottom-up cues alone cannot explain natural language (...)
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  24. The Chemical Bond is a Real Pattern.Vanessa A. Seifert - forthcoming - Philosophy of Science:1-47.
    There is a persisting debate about what chemical bonds are and whether they exist. I argue that chemical bonds are real patterns of interactions between subatomic particles. This proposal resolves the problems raised in the context of existing understandings of the chemical bond and provides a novel way to defend the reality of chemical bonds.
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  25.  8
    Can Nomenclature for the Body be Explained by Embodiment Theories?Asifa Majid & Miriam van Staden - 2015 - Topics in Cognitive Science 7 (4):570-594.
    According to widespread opinion, the meaning of body part terms is determined by salient discontinuities in the visual image; such that hands, feet, arms, and legs, are natural parts. If so, one would expect these parts to have distinct names which correspond in meaning across languages. To test this proposal, we compared three unrelated languages—Dutch, Japanese, and Indonesian—and found both naming systems and boundaries of even basic body part terms display variation across languages. Bottom‐up cues alone cannot explain natural language (...)
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  26.  86
    Chemical substances and the limits of pluralism.Robin Findlay Hendry - 2011 - Foundations of Chemistry 14 (1):55-68.
    In this paper I investigate the relationship between vernacular kind terms and specialist scientific vocabularies. Elsewhere I have developed a defence of realism about the chemical elements as natural kinds. This defence depends on identifying the epistemic interests and theoretical conception of the elements that have suffused chemistry since the mid-eighteenth century. Because of this dependence, it is a discipline-specific defence, and would seem to entail important concessions to pluralism about natural kinds. I argue that making this kind of (...)
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  27.  8
    Nomenclature.Raymond Jennings, Bryson Brown & Peter Schotch - 2009 - In Raymond Jennings, Bryson Brown & Peter Schotch (eds.), On Preserving: Essays on Preservationism and Paraconsistent Logic. University of Toronto Press. pp. 189-194.
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  28. Philonic Nomenclature.D. Runia - 1994 - The Studia Philonica Annual 6:1-27.
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  29. Messy Chemical Kinds.Joyce C. Havstad - 2018 - British Journal for the Philosophy of Science 69 (3):719-743.
    Following Kripke and Putnam, the received view of chemical kinds has been a microstructuralist one. To be a microstructuralist about chemical kinds is to think that membership in said kinds is conferred by microstructural properties. Recently, the received microstructuralist view has been elaborated and defended, but it has also been attacked on the basis of complexities, both chemical and ontological. Here, I look at which complexities really challenge the microstructuralist view; at how the view itself might be (...)
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  30. The Chemical Senses.Barry C. Smith - 2015 - In Mohan Matthen (ed.), The Oxford Handbook to Philosophy of Perception. New York, NY, USA: pp. 314-353.
    Long-standing neglect of the chemical senses in the philosophy of perception is due, mostly, to their being regarded as ‘lower’ senses. Smell, taste, and chemically irritated touch are thought to produce mere bodily sensations. However, empirically informed theories of perception can show how these senses lead to perception of objective properties, and why they cannot be treated as special cases of perception modelled on vision. The senses of taste, touch, and smell also combine to create unified perceptions of flavour. (...)
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  31.  26
    Psychological nomenclature.E. B. Titchener - 1893 - Mind 2 (6):285-288.
  32. Complete chemical synthesis, assembly, and cloning of a mycoplasma genitalium genome.Daniel Gibson, Benders G., A. Gwynedd, Cynthia Andrews-Pfannkoch, Evgeniya Denisova, Baden-Tillson A., Zaveri Holly, Stockwell Jayshree, B. Timothy, Anushka Brownley, David Thomas, Algire W., A. Mikkel, Chuck Merryman, Lei Young, Vladimir Noskov, Glass N., I. John, J. Craig Venter, Clyde Hutchison, Smith A. & O. Hamilton - 2008 - Science 319 (5867):1215--1220.
    We have synthesized a 582,970-base pair Mycoplasma genitalium genome. This synthetic genome, named M. genitalium JCVI-1.0, contains all the genes of wild-type M. genitalium G37 except MG408, which was disrupted by an antibiotic marker to block pathogenicity and to allow for selection. To identify the genome as synthetic, we inserted "watermarks" at intergenic sites known to tolerate transposon insertions. Overlapping "cassettes" of 5 to 7 kilobases (kb), assembled from chemically synthesized oligonucleotides, were joined by in vitro recombination to produce intermediate (...)
     
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  33.  16
    Family Nomenclature and Same-Name Divinities in Roman Religion and Mythology.Lora Holland - 2011 - Classical World: A Quarterly Journal on Antiquity 104 (2):211-226.
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  34.  97
    The Chemical Core of Chemistry I: A Conceptual Approach.Joachim Schummer - 1998 - Hyle 4 (2):129 - 162.
    Given the rich diversity of research fields usually ascribed to chemistry in a broad sense, the present paper tries to dig our characteristic parts of chemistry that can be conceptually distinguished from interdisciplinary, applied, and specialized subfields of chemistry, and that may be called chemistry in a very narrow sense, or 'the chemical core of chemistry'. Unlike historical, ontological, and 'anti-reductive' approaches, I use a conceptual approach together with some methodological implications that allow to develop step by step a (...)
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  35. Zoological Nomenclature and Speech Act Theory.Yves Cambefort - 2015 - In Jacques Virbel & Karine Chemla (eds.), Texts, Textual Acts and the History of Science. Springer Verlag.
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  36. Nomenclature et classification dans Chresthomathia de Jeremy Bentham.Jean-Pierre Clero - 1999 - Kairos.
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  37.  12
    Universal languages, classifications, and nomenclatures in the seventeenth century.Paolo Rossi - 1984 - History and Philosophy of the Life Sciences 6 (2):119 - 131.
  38.  17
    Chemical reactivity: cause-effect or interaction?Alfio Zambon - 2022 - Foundations of Chemistry 24 (3):375-387.
    From the perspective of successive events, chemical reactions are expressed or thought about, in terms of the cause-effect category. In this work, I will firstly discuss some aspects of causation and interaction in chemistry, argue for the interaction, and propose an alternative or complementary representation scheme called “interaction diagram”, that allows representing chemical reactions through a geometric diagram. The understanding of this diagram facilitates the analysis of reactions in terms of the interaction, or reciprocal action, among the participating (...)
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  39.  29
    Chemical substance, material, product, goods, waste: a changing ontology.Luigi Cerruti & Elena Ghibaudi - 2017 - Foundations of Chemistry 19 (2):97-123.
    A chemical substance is instantiated in the material world by a number of quantities of such substance, placed in different locations. A change of location implies a change in the net of relationships entertained by the QCS with the region wherein it is found. This fact entails changes of the ontological status of the CS, as this is not fully determined by the inherent features of the CS and includes a relevant relational contribution. In order to demonstrate this thesis, (...)
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  40.  48
    Chemical Dissolution and Kant’s Critical Theory of Nature.Michael Bennett McNulty - 2018 - Kant Studien 109 (4):537-556.
    Kant conceives of chemical dissolutions as involving the infinite division and subsequent blending of solvent and solute. In the resulting continuous solution, every subvolume contains a uniform proportion of each reactant. Erich Adickes argues that this account stands in tension with other aspects of Kant’s Critical philosophy and his views on infinity. I argue that although careful analysis of Kant’s conception of dissolution addresses Adickes’ objections, the infinite division inherent to the process is beyond our human cognition, for Kant. (...)
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  41.  10
    Chemical translators: Pauling, Wheland and their strategies for teaching the theory of resonance.Buhm Soon Park - 1999 - British Journal for the History of Science 32 (1):21-46.
    The entry of resonance into chemistry, or the reception of the theory of resonance in the chemical community, has drawn considerable attention from historians of science. In particular, they have noted Pauling's ¯amboyant yet effective style of exposition, which became a factor in the early popularity of the resonance theory in comparison to the molecular orbital theory, another way of applying quantum mechanics to chemical problems.$ To be sure, the non-mathematical presentation of the resonance theory by Pauling and (...)
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  42.  43
    Chemical Castration of Danish Sex Offenders.Lise Aagaard - 2014 - Journal of Bioethical Inquiry 11 (2):117-118.
    Surgical castration of sex offenders has been used in several countries to prevent sexual recidivism and is still practiced in several states in the United States. In Europe, it has remained in limited use in Germany and in the Czech Republic (Douglas et al. 2013). Since the 1960s, most jurisdictions have replaced irreversible surgical castration of sex offenders with reversible chemical castration with anti-androgen drugs. In Denmark, use of surgical castration was stopped in 1970, and since the late 1980s, (...)
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  43. The Chemical Characterization of the Gene: Vicissitudes of Evidential Assessment.Jacob Stegenga - 2011 - History and Philosophy of the Life Sciences 33 (1):105-127.
    The chemical characterization of the substance responsible for the phenomenon of “transformation” of pneumococci was presented in the now famous 1944 paper by Avery, MacLeod, and McCarty. Reception of this work was mixed. Although interpreting their results as evidence that deoxyribonucleic acid (DNA) is the molecule responsible for genetic changes was, at the time, controversial, this paper has been retrospectively celebrated as providing such evidence. The mixed and changing assessment of the evidence presented in the paper was due to (...)
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  44.  25
    Mycenaean Nomenclature.D. M. Jones - 1959 - The Classical Review 9 (03):225-.
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  45.  70
    Chemical kinds and essences revisited.Rom Harré - 2004 - Foundations of Chemistry 7 (1):7-30.
    The philosophical problem of the utility andmeaning of essences for chemistry cannot beresolved by Wittgenstein's principle thatessence cannot explain use, because use isdisplayed in a field of family resemblances.The transition of chemical taxonomy fromvernacular and mystical based terms to theorybased terms stabilized as a unified descriptivetaxonomy, removes chemical discourse from itsconnection with the vernacular. The transitioncan be tracked using the Lockean concepts ofreal and nominal essences, and the changingpriorities between them. Analyzing propertiesdispositionally, initiating a search forgroundings strengthens the (...)
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  46. The Conditions for Ethical Chemical Restraints.Parker Crutchfield & Michael Redinger - 2024 - American Journal of Bioethics Neuroscience 15 (1):3-16.
    The practice of medicine frequently involves the unconsented restriction of liberty. The reasons for unilateral liberty restrictions are typically that being confined, strapped down, or sedated are necessary to prevent the person from harming themselves or others. In this paper, we target the ethics of chemical restraints, which are medications that are used to intentionally restrict the mental states associated with the unwanted behaviors, and are typically not specifically indicated for the condition for which the patient is being treated. (...)
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  47.  50
    Chemical and Biological Weapons in the 'New Wars'.Kai Ilchmann & James Revill - 2014 - Science and Engineering Ethics 20 (3):753-767.
    The strategic use of disease and poison in warfare has been subject to a longstanding and cross-cultural taboo that condemns the hostile exploitation of poisons and disease as the act of a pariah. In short, biological and chemical weapons are simply not fair game. The normative opprobrium is, however, not fixed, but context dependent and, as a social phenomenon, remains subject to erosion by social (or more specifically, antisocial) actors. The cross cultural understanding that fighting with poisons and disease (...)
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  48.  4
    Chemicals.Bruce E. Johansen - 2009 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Oxford, UK: Wiley-Blackwell. pp. 546–550.
    This chapter contains sections titled: Toxic Chemicals in the Arctic Stratospheric Ozone Loss and Global Warming References and Further Reading.
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  49.  35
    On Chemical Natural Kinds.Eric R. Scerri - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 51 (3):427-445.
    A critique of LaPorte's views on chemical kinds, like jade and ruby, is presented. More positively, a new slant is provided on the question of whether elements are natural kinds. This is carried out by appeal to the dual nature of elements, a topic that has been debated in the philosophy of chemistry but not in the natural kinds literature. It is claimed that the abstract notion of elements, as opposed to their being simple substances, is relevant to the (...)
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  50. Chemical arbitrariness and the causal role of molecular adapters.Oliver M. Lean - 2019 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 78:101180.
    Jacques Monod (1971) argued that certain molecular processes rely critically on the property of chemical arbitrariness, which he claimed allows those processes to “transcend the laws of chemistry”. It seems natural, as some philosophers have done, to interpret this in modal terms: a biological relationship is chemically arbitrary if it is possible, within the constraints of chemical “law”, for that relationship to have been otherwise than it is. But while modality is certainly important for understanding chemical arbitrariness, (...)
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