Results for 'chemicals'

978 found
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  1.  92
    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 concession (...)
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  2.  35
    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, we (...)
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  3.  57
    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 is (...)
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  4.  5
    Chemical formalisms: toward a semiotic typology.Zhigang Yu & Yaegan Doran - 2024 - Semiotica 2024 (259):31-59.
    Chemistry is a highly technical field that relies heavily on a range of symbolic and imagic formalisms. These formalisms conceptualize specific chemical knowledge into semiotic resources that are rarely used elsewhere in most other academic fields or contexts. To develop an understanding of semiosis in highly technical fields such as chemistry, key questions include what this range of formalisms do and why they occur. These are key questions not only for our understanding of semiosis, but also if we wish to (...)
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  5. 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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  6.  6
    Chemical Reprogramming of Human Somatic Cells to Pluripotent Stem Cells.Jingyang Guan, Guan Wang, Jinlin Wang, Zhengyuan Zhang, Yao Fu, Lin Cheng, Gaofan Meng, Yulin Lyu, Jialiang Zhu, Yanqin Li, Yanglu Wang, Shijia Liuyang, Bei Liu, Zirun Yang, Huanjing He, Xinxing Zhong, Qijing Chen, Xu Zhang, Shicheng Sun, Weifeng Lai, Yan Shi, Lulu Liu, Lipeng Wang, Cheng Li, Shichun Lu & Hongkui Deng - forthcoming - Nature:1–7.
    Cellular reprogramming can manipulate the identity of cells to generate the desired cell types1– 3. The use of cell intrinsic components, including oocyte cytoplasm and transcription factors, can enforce somatic cell reprogramming to pluripotent stem cells4– 7. By contrast, chemical stimulation by exposure to small molecules offers an alternative approach that can manipulate cell fate in a simple and highly controllable manner8– 10. However, human somatic cells are refractory to chemical stimulation owing to their stable epigenome2,11,12 and reduced plasticity13,14; it (...)
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  7. Thomas Kuhn and the chemical revolution.Paul Hoyningen-Huene - 2008 - Foundations of Chemistry 10 (2):101-115.
    The paper discusses how well Kuhn’s general theory of scientific revolutions fits the particular case of the chemical revolution. To do so, I first present condensed sketches of both Kuhn’s theory and the chemical revolution. I then discuss the beginning of the chemical revolution and compare it to Kuhn’s specific claims about the roles of anomalies, crisis and extraordinary science in scientific development. I proceed by comparing some features of the chemical revolution as a whole to Kuhn’s general account. The (...)
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  8.  27
    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 entities. Secondly, (...)
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  9.  23
    More Work for Mother: Chemical Body Burdens as a Maternal Responsibility1.Norah Mackendrick - 2014 - Gender and Society 28 (5):705-728.
    Environmental chemicals accumulate in all human bodies and have the potential to affect the health of men and women, adults, and children. This article advances “precautionary consumption”—the effort to mediate personal exposure to environmental chemicals through vigilant consumption—as a new empirical site for understanding the intersections between maternal embodiment and contemporary motherhood as a consumer project. Using in-depth interviews, I explore how a group of 25 mothers employ precautionary consumption to mediate their children’s exposure to chemicals found (...)
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  10.  15
    Chemical Discovery and the Logicians' Program.Jerome A. Berson - 2003 - Wiley-VCH.
    What is it that turns a new observation into a true scientific discovery? And who may claim the credit? Theoreticians of science, the foremost thinkers of their times among them, have tried to answer these fundamental questions about the nature of scientific progress and discovery. With clear insight and the chemical as well as philosophical wisdom gained from over fifty years as a practising chemist, Jerome Berson puts their theories to the test. The development of chemistry into a "modern" science (...)
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  11. 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 made more complicated (...)
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  12. (1 other version)The Chemical Senses.Barry C. Smith - 2015 - In Mohan Matthen (ed.), The Oxford Handbook of the Philosophy of Perception. New York, NY: Oxford University Press UK. 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. The (...)
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  13. 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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  14.  62
    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. Nevertheless, (...)
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  15. Chemical "substances" that are not "chemical substances".Sr Joseph E. Earley - 2006 - Philosophy of Science 73 (5):841-852.
    The main scientific problems of chemical bonding were solved half a century ago, but adequate philosophical understanding of chemical combination is yet to be achieved. Chemists routinely use important terms ("element," "atom," "molecule," "substance") with more than one meaning. This can lead to misunderstandings. Eliminativists claim that what seems to be a baseball breaking a window is merely the action of "atoms, acting in concert." They argue that statues, baseballs, and similar macroscopic things "do not exist." When macroscopic objects like (...)
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  16. Coercion, Incarceration, and Chemical Castration: An Argument From Autonomy.Thomas Douglas, Pieter Bonte, Farah Focquaert, Katrien Devolder & Sigrid Sterckx - 2013 - Journal of Bioethical Inquiry 10 (3):393-405.
    In several jurisdictions, sex offenders may be offered chemical castration as an alternative to further incarceration. In some, agreement to chemical castration may be made a formal condition of parole or release. In others, refusal to undergo chemical castration can increase the likelihood of further incarceration though no formal link is made between the two. Offering chemical castration as an alternative to further incarceration is often said to be partially coercive, thus rendering the offender’s consent invalid. The dominant response to (...)
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  17. Paneth’s epistemology of chemical elements in light of Kant’s Opus postumum.Farzad Mahootian - 2013 - Foundations of Chemistry 15 (2):171-184.
    Friedrich Paneth’s conception of “chemical element” has functioned as the official definition adopted by the International Union of Pure and Applied Chemistry since 1923. Paneth maintains a distinction between empirical and “transcendental” concepts of element; furthermore, chemical science requires fluctuation between the two. The origin of the empirical-transcendental split is found in Immanuel Kant’s classic Critique of Pure Reason (1781/1787). The present paper examines Paneth’s foundational concept of element in light of Kant’s attempt, late in life, to revoke key distinctions (...)
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  18.  75
    Resisting Chemical Atomism: Duhem’s Argument.Paul Needham - 2008 - Philosophy of Science 75 (5):921-931.
    Late nineteenth‐century opponents of atomism questioned whether the evidence required any notion of an atom. In this spirit, Duhem developed an account of the import of chemical formulas that is clearly neutral on the atomic question rather than antiatomistic. The argument is supplemented with specific inadequacies of atomic theories of chemical combination and considerably strengthened by the theory of chemical combination provided by thermodynamics. Despite possible counterevidence available at the time, which should have tempered some of Duhem's concluding remarks, there (...)
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  19. Chemical Substances and Intensive Properties.Paul Needham - 2003 - Annals of the New York Academy of Sciences 988:99-113.
    Despite the importance molecular structure has acquired in 20th century chemistry, more traditional macroscopic notions in terms of a continuous concept of matter continue to play a role in chemical theorising. In the light of the extensive and determined criticism of reductionism in recent philosophy of chemistry, it is of interest to see macroscopic ontology treated autonomously. One aspect of this is developed here, namely the concept of chemical substance. This is characterised by contrast with phases and solutions. The key (...)
     
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  20.  28
    Chemical “Substances” That Are Not “Chemical Substances”.Sr Earley - 2006 - Philosophy of Science 73 (5):841-852.
    The main scientific problems of chemical bonding were solved half a century ago, but adequate philosophical understanding of chemical combination is yet to be achieved. Chemists routinely use important terms with more than one meaning. This can lead to misunderstandings. Eliminativists claim that what seems to be a baseball breaking a window is merely the action of “atoms, acting in concert.” They argue that statues, baseballs, and similar macroscopic things “do not exist.” When macroscopic objects like baseballs move, exceedingly large (...)
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  21. 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. Specifically, (...)
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  22.  40
    Chemical Identity Crisis: Glass and Glassblowing in the Identification of Organic Compounds: Essay in Honour of Alan J. Rocke.Catherine M. Jackson - 2015 - Annals of Science 72 (2):187-205.
    SummaryThis essay explains why and how nineteenth-century chemists sought to stabilize the melting and boiling points of organic substances as reliable characteristics of identity and purity and how, by the end of the century, they established these values as ‘Constants of Nature’. Melting and boiling points as characteristic values emerge from this study as products of laboratory standardization, developed by chemists in their struggle to classify, understand and control organic nature. A major argument here concerns the role played by the (...)
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  23.  47
    The Chemical Workshop Tradition and the Experimental Practice: Discontinuities within Continuities.Ursula Klein - 1996 - Science in Context 9 (3):251-287.
    The ArgumentThe overall portrayal of early modern experimentation as a new method of securing assent within a philosophical discourse sketched in many of the recent studies on the historical origin of experimentation is questioned by the analysis of the experimental practice of chemistry at the Paris Academy. Chemical experimentation at the Paris Academy in the late seventeenth and early eighteenth century originated in a different tradition than the philosophical. It continued and developed the material culture of the chemical work shops (...)
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  24. 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 kind (...)
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  25. Chemical kind term reference and the discovery of essence.Joe LaPorte - 1996 - Noûs 30 (1):112-132.
  26.  48
    Why chemical engineering emerged in America instead of germany.Sunny Auyang - manuscript
    PDF version As a scientific productive activity, engineering is closely associated with natural science on the one hand and industry on the other. The emergence of chemical engineering was influenced by the America’s industrial structures and academic institutions. The science-oriented characteristic of chemical engineering in turn impacted the development of industrial structures, especially the rapid rise of a competitive petrochemical industry.
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  27. Chemical morphogenesis: Turing patterns in an experimental chemical system.E. Dulos, J. Boissonade, J. J. Perraud, B. Rudovics & P. Kepper - 1996 - Acta Biotheoretica 44 (3-4).
    Patterns resulting from the sole interplay between reaction and diffusion are probably involved in certain stages of morphogenesis in biological systems, as initially proposed by Alan Turing. Self-organization phenomena of this type can only develop in nonlinear systems (i.e. involving positive and negative feedback loops) maintained far from equilibrium. We present Turing patterns experimentally observed in a chemical system. An oscillating chemical reaction, the CIMA reaction, is operated in an open spatial reactor designed in order to obtain a pure reaction-diffusion (...)
     
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  28.  10
    Chemical kinetics and diffusion approach: the history of the Klein–Kramers equation.Stefano Zambelli - 2010 - Archive for History of Exact Sciences 64 (4):395-428.
    In this essay, the first statistical and stochastic treatments of chemical dynamics are analyzed and discussed, in particular the diffusive description of chemical reactions. The first part of the paper introduces the historical and methodological basis of the theories about stochastic processes and diffusion as well as their lesser-known applications in chemical kinetics, which were advanced by Jens Anton Christiansen (1888–1969). In the second, part we will focus our attention on the early works of Oskar Benjamin Klein (1894–1977) and Hendrik (...)
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  29.  68
    Chemical supervenience.Micah Newman - 2007 - Foundations of Chemistry 10 (1):49-62.
    This paper surveys some ways in which the chemical realm can be described and outlined in terms of the concept of supervenience. The particular contours of general chemical theory provide a ready basis for interpretation of determination, covariance, and nonreduction—the characteristic metaphysical facets of the supervenience relation—in mutual terms. Building on this, the extent to which chemically characterized properties and entities can be described in terms of a supervenience-scaffolded structure represents a particularly vivid application that philosophers in general interested in (...)
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  30.  28
    Chemical research in India (1876–1918).Aparajito Basu - 1995 - Annals of Science 52 (6):591-600.
    The first Indian institution for scientific research was founded in 1876. The period 1876–1918 was a time of gestation for Indian chemistry, in which pure research gradually replaced the need-based, result-oriented research formerly promoted by the British regime. This formative period in Indian chemistry came to an end after the First World War and was succeeded by a rapid expansion of chemical research. The educational and political background against which these changes took place, and the influence of European chemistry on (...)
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  31.  14
    Chemical Sunset: Technological Inflexibility and Designing an Intelligent Precautionary “Polluter Pays” Principle.Eun-Sung Kim - 2008 - Science, Technology, and Human Values 33 (4):459-479.
    This article provides a theoretical policy-making model of chemical sunset that gradually substitutes green alternatives for persistent toxic substances within a finite timeframe. The technological inflexibility of these substances is a tough obstacle to a chemical sunset, because a chemical sunset seeks to ultimately stop, within a short period of time, the risky businesses of these substances that are highly entrenched into our society. In wrestling with this obstacle, the intelligent precautionary “polluter pays” principle integrates three policy tools: a “precautionary (...)
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  32.  75
    Chemical elements and the problem of universals.M. F. Sharlow - 2006 - Foundations of Chemistry 8 (3):225-242.
    In this paper, I explore a seldom-recognized connection between the ontology of abstract objects and a current issue in the philosophy of chemistry. Specifically, I argue that realism with regard to universals implies a view of chemical elements similar to F.A. Paneth’s thesis about the dual nature of the concept of element.
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  33.  16
    Chemical, ecological, other? Identifying weed management typologies within industrialized cropping systems in Georgia (U.S.).David Weisberger, Melissa Ann Ray, Nicholas T. Basinger & Jennifer Jo Thompson - forthcoming - Agriculture and Human Values:1-19.
    Since the introduction and widespread adoption of chemical herbicides, “weed management” has become almost synonymous with “herbicide management.” Over-reliance on herbicides and herbicide-resistant crops has given rise to herbicide resistant weeds. Integrated weed management (IWM) identifies three strategies for weed management— biological-cultural, chemical-technological, mechanical-physical—and recommends combining all three to mitigate herbicide resistance. However, adoption of IWM has stalled, and research to understand the adoption of IWM practices has focused on single stakeholder groups, especially farmers. In contrast, decisions about weed management (...)
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  34.  24
    Chemical perspective in the study of living beings: a systemic complexity approach.Giovanni Villani - 2016 - Foundations of Chemistry 19 (1):77-91.
    The concept of living has changed in time along the history of biology and its specificity has been associated or to a particular matter, active such as the chemical one, or was considered as a product of the spatial organization of a passive matter. Today, these two paths can be merged in the chemical perspective that takes account of the general reflections on the complexity and on the systemic, in the “systemic complexity” approach.
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  35. Causal powers and isomeric chemical kinds.Andrew McFarland - 2018 - Synthese 195 (4):1441-1457.
    Some philosophers have claimed that kinds can be construed as mereologically complex structural properties. This essay examines several strategies aimed at construing a certain class of natural kinds, namely isomeric chemical kinds, in accordance with this view. In particular, the essay examines views which posit structural proper parts in addition to micro-constitutive parts to individuate isomeric chemical kinds. It then goes on to argue that the phenomenon of chirality in stereochemistry gives the proponent of kinds-as-complex-properties evidence for positing the existence (...)
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  36.  34
    Chemical engineering in England, 1880–1922.J. F. Donnelly - 1988 - Annals of Science 45 (6):555-590.
    The paper surveys the origins of chemical engineering in England in the late nineteenth and early twentieth centuries. It deals particularly with the recognition of the field as an independent discipline, its relations with chemistry and mechanical engineering, and the influence on its growth of industrial ‘demand’. The position of chemical engineering in public discourse, in the City and Guilds Central Institution, and at Imperial College of Science and Technology and University College London are discussed, together with the creation of (...)
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  37. 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, understanding its biological (...)
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  38.  12
    Chemicals.Bruce E. Johansen - 2012 - In Jan Kyrre Berg Olsen Friis, Stig Andur Pedersen & Vincent F. Hendricks (eds.), A Companion to the Philosophy of Technology. Malden, MA: 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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  39.  52
    Eka-elements as chemical pure possibilities.Amihud Gilead - 2016 - Foundations of Chemistry 18 (3):183-194.
    From Mendeleev’s time on, the Periodic Table has been an attempt to exhaust all the chemical possibilities of the elements and their interactions, whether these elements are known as actual or are not known yet as such. These latter elements are called “eka-elements” and there are still some of them in the current state of the Table. There is no guarantee that they will be eventually discovered, synthesized, or isolated as actual. As long as the actual existence of eka-elements is (...)
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  40.  33
    Chemical Reactivity: The Propensity View.Mauricio Suárez & Pedro J. Sánchez-Gómez - unknown
    We argue for an account of chemical reactivities as chancy propensities, in accordance with the ‘complex nexus of chance’ defended by one of us in the past (Suárez, 2017, 2020). Reactivities are typically quantified as proportions, and an expression such as “A + B → C” does not entail that under the right conditions some amounts of A and B react to give the amount of C that theoretically would correspond to the stoichiometry of the reaction. Instead, what is produced (...)
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  41.  16
    Chemical Analysis of Urine for Life Insurance: The Construction of Reliability.Klasien Horstman - 1997 - Science, Technology and Human Values 22 (1):57-78.
    Medical expertise plays a major role in large-scale welfare arrangements, for example, in private insurance companies. It symbolizes the objectivity and reliability of the procedures of risk selection and legitimates the acceptance and rejection of clients. To understand "reliability" in this context, this article discusses the introduction of chemical urine analysis for life insurance examination between 1880 and 1920. The article argues that reliability of urine analysis is not an intrinsic characteristic of the technology and thus cannot serve as the (...)
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  42.  7
    Chemical jargon: thinking out loud.Alexander Yu Rulev - forthcoming - Foundations of Chemistry:1-11.
    Language is an important part of the human culture. It serves for the expression and communication of thoughts. In is article, the problem of chemical jargon as a tool for communication between scientists is discussed.
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  43.  46
    Chemical explanation and physical dynamics: Two research schools at the First Solvay chemistry conferences, 1922–1928.Mary Jo Nye - 1989 - Annals of Science 46 (5):461-480.
    SummaryThe convening of the first three Solvay Chemistry Conferences in Brussels from 1922–1928 marked an important turning point for the discipline of chemistry. Whereas much of nineteenth-century chemical endeavour had focused on compositional and functional analysis of chemical compounds, many leaders in chemistry were turning to questions of molecular dynamics by the early twentieth century. Two competing schools of chemical dynamics, which were represented at the Solvay Conferences, were a predominantly English group (Lowry, Lapworth, Robinson, Ingold) who worked out electron (...)
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  44.  84
    Chemical atomism: a case study in confirmation and ontology.Joshua D. K. Brown - 2015 - Synthese 192 (2):453-485.
    Quine, taking the molecular constitution of matter as a paradigmatic example, offers an account of the relation between theory confirmation and ontology. Elsewhere, he deploys a similar ontological methodology to argue for the existence of mathematical objects. Penelope Maddy considers the atomic/molecular theory in more historical detail. She argues that the actual ontological practices of science display a positivistic demand for “direct observation,” and that fulfillment of this demand allows us to distinguish molecules and other physical objects from mathematical abstracta. (...)
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  45.  62
    Ethics of Chemical Synthesis.Joachim Schummer - 2001 - Hyle 7 (2):103 - 124.
    Unlike other branches of science, the scientific products of synthetic chemistry are not only ideas but also new substances that change our material world, for the benefit or harm of living beings. This paper provides for the first time a systematical analysis of moral issues arising from chemical synthesis, based on concepts of responsibility and general morality. Topics include the questioning of moral neutrality of chemical synthesis as an end in itself, chemical weapons research, moral objections against improving material conditions (...)
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  46.  26
    The Chemical Philosophy of Robert Boyle: Mechanicism, Chymical Atoms, and Emergence by Marina Paola Banchetti-Robino.Laura S. Keating - 2022 - Journal of the History of Philosophy 60 (3):508-510.
    The past thirty years have seen substantive debate on the nature of Robert Boyle’s self-described “Mechanical” or “Corpuscularian” philosophy, its treatment of kinds and qualities, its relation to his experimental studies, its relation to other sixteenth- and seventeenth-century matter theories, and its role in the development of chemistry. Using several different strands from this literature, Marina Banchetti-Robino aims to show how Boyle addresses issues relevant to philosophy of chemistry today: the emergent nature of chemical properties, the mereology of fundamental chemical (...)
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  47.  23
    Chemical ecology and biomolecular evolution.Sergey N. Rumyantsev - 1997 - Acta Biotheoretica 45 (1):65-80.
    The belief in the Darwinian theory of evolution appeared to be shaken when one tried to interpret statements of molecular biology in it. As a consequence there arose a theory of non-Darwinian neutral evolution. The supporters of this theory believe that under natural conditions no factors exist which can distinguish and select organisms on their internal (molecular) structure. In the opinion of these neutralists natural selection cannot in principle control the molecular constitution of organisms. Contrary to the viewpoint of the (...)
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  48.  92
    Chemical reduction and quantum interpretation: A case for thomistic emergence.Ryan Miller - 2023 - Foundations of Chemistry 25 (3):405-417.
    The debate between ontological reductionists and emergentists in chemistry has revolved around quantum mechanics. What Franklin and Seifert (BJPS 2020) add to the long-running dispute is an attention to the measurement problem. They contend that all three realist interpretations of the quantum formalism capable of resolving the measurement problem also obviate any need for chemical emergence. I push their argument further, arguing that the realist interpretations of quantum mechanics actually subvert the basis for reduction as well, by undercutting the idea (...)
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    Chemical Restraints and the Basic Liberties.David Birks - 2024 - American Journal of Bioethics Neuroscience 15 (1):22-24.
    Crutchfield and Redinger (2024) argue that, ceteris paribus, it is morally worse to deploy a restraint that undermines a basic liberty than one that does not.1 This is a plausible view, and is like...
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  50. 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 the (...)
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