Results for 'emergence in chemistry'

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  1. Emergence in chemistry: Chemistry as the embodiment of emergence[REVIEW]Pier Luigi Luisi - 2002 - Foundations of Chemistry 4 (3):183-200.
    The main aim of the paper is to reinforce the notion that emergence is a basic characteristic of the molecular sciences in general and chemistry in particular. Although this point is well accepted, even in the primary reference on emergence, the keyword emergence is rarely utilized by chemists and molecular biologists and chemistry textbooks for undergraduates. The possible reasons for this situation are discussed. The paper first re-introduces the concept of emergence based on very (...)
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  2. A Novel Approach to Emergence in Chemistry.Alexandru Manafu - 2015 - In Eric Scerri & L. McIntyre (eds.), Philosophy of Chemistry. Growth of a New Discipline. Boston Studies in the Philosophy and History of Science. Volume 306. pp. 39-55.
  3. Concepts of Emergence in Chemistry.Alexandru Manafu - 2013 - In J. P. Llored (ed.), The Philosophy of Chemistry: Practices, Methodologies and Concepts. Newcastle upon Tyne, UK: pp. 659-674.
  4.  50
    Reduction and Emergence in Chemistry.Vanessa A. Seifert - 2019 - Internet Encyclopedia of Philosophy.
    The aim of this article is to present a different perspective through which to examine reduction and emergence; namely, the perspective of chemistry’s relation to physics.
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  5. Reduction and emergence in chemistry—two recent approaches.Eric Scerri - 2007 - Philosophy of Science 74 (5):920-931.
    Two articles on the reduction of chemistry are examined. The first, by McLaughlin (1992), claims that chemistry is reduced to physics and that there is no evidence for emergence or for downward causation between the chemical and the physical level. In a more recent article, Le Poidevin (2005) maintains that his combinatorial approach provides grounding for the ontological reduction of chemistry, which also circumvents some limitations in the physicalist program. †To contact the author, please write to: (...)
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  6. Emergence and reduction in chemistry: Ontological or epistemological concepts?Lee McIntyre - 2007 - Synthese 155 (3):337-343.
    In this paper I argue that the ontological interpretation of the concepts of reduction and emergence is often misleading in the philosophy of science and should nearly always be eschewed in favor of an epistemological interpretation. As a paradigm case, an example is drawn from the philosophy of chemistry to illustrate the drawbacks of “ontological reduction” and “ontological emergence,” and the virtues of an epistemological interpretation of these concepts.
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  7. Emergence vs. Reduction in Chemistry.Robin Findlay Hendry - 2010 - In Cynthia Macdonald & Graham Macdonald (eds.), Emergence in Mind. Oxford University Press.
  8.  5
    Mechanisms in Chemistry.Robin Findlay Hendry - 2023 - In João L. Cordovil, Gil Santos & Davide Vecchi (eds.), New Mechanism Explanation, Emergence and Reduction. Springer. pp. 139-160.
    Mechanisms are the how of chemical reactions. Substances are individuated by their structures at the molecular scale, so a chemical reaction is just the transformation of reagent structures into product structures. Explaining a chemical reaction must therefore involve different hypotheses about how this might happen: proposing, investigating and sometimes eliminating different possible pathways from reagents to products. One distinctive aspect of mechanisms in chemistry is that they are broken down into a few basic kinds of step involving the breaking (...)
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  9.  85
    The atomic number revolution in chemistry: a Kuhnian analysis.K. Brad Wray - 2017 - Foundations of Chemistry 20 (3):209-217.
    This paper argues that the field of chemistry underwent a significant change of theory in the early twentieth century, when atomic number replaced atomic weight as the principle for ordering and identifying the chemical elements. It is a classic case of a Kuhnian revolution. In the process of addressing anomalies, chemists who were trained to see elements as defined by their atomic weight discovered that their theoretical assumptions were impediments to understanding the chemical world. The only way to normalize (...)
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  10.  18
    Chemistry in a Physical Mode: Molecular Spectroscopy and the Emergence of NMR.Carsten Reinhardt - 2004 - Annals of Science 61 (1):1-32.
    In the 1940s and 1950s, nuclear magnetic resonance , one of the most important analytical techniques in chemistry, grew to maturity in the intermediate research field of chemical physics. Chemists and physicists adapted the new technology to the experimental culture of molecular spectroscopy which was based on a pragmatic experimental style. In molecular spectroscopy, the purpose of experiments was the establishment of methods that suited both the physicists' quest for precision and theoretical model building and the chemists' longing for (...)
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  11. On the non-existence of parallel universes in chemistry.Richard F. W. Bader - 2011 - Foundations of Chemistry 13 (1):11-37.
    This treatise presents thoughts on the divide that exists in chemistry between those who seek their understanding within a universe wherein the laws of physics apply and those who prefer alternative universes wherein the laws are suspended or ‘bent’ to suit preconceived ideas. The former approach is embodied in the quantum theory of atoms in molecules (QTAIM), a theory based upon the properties of a system’s observable distribution of charge. Science is experimental observation followed by appeal to theory that, (...)
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  12.  64
    Emergence in evolution.James Francis Salmon - 2008 - Foundations of Chemistry 11 (1):21-32.
    “Much as I dislike the idea of ages, I think a good case can be made that science has now moved from an Age of Reductionism to an Age of Emergence, a time when the search for ultimate causes of things shifts from the behavior of parts to the behavior of the collective” (Laughlin 2005 , p. 208). This quotation by Nobel laureate in physics, Robert B. Laughlin, in his recent book, A Different Universe , raises interesting scientific and (...)
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  13. In Defense of the Agent and Patient Distinction: The Case from Molecular Biology and Chemistry.Davis Kuykendall - forthcoming - British Journal for the Philosophy of Science.
    In this paper, I defend the agent/patient distinction against critics who argue that causal interactions are symmetrical. Specifically, I argue that there is a widespread type of causal interaction between distinct entities, resulting in a type of ontological asymmetry that provides principled grounds for distinguishing agents from patients. The type of interaction where the asymmetry is found is when one of the entities undergoes a change in kind, structure, powers, or intrinsic properties as a result of the interaction while the (...)
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  14.  16
    Sketching the Invisible to Predict the Visible: From Drawing to Modeling in Chemistry.Melanie M. Cooper, Mike Stieff & Dane DeSutter - 2017 - Topics in Cognitive Science 9 (4):902-920.
    Sketching as a scientific practice goes beyond the simple act of inscribing diagrams onto paper. Scientists produce a wide range of representations through sketching, as it is tightly coupled to model-based reasoning. Chemists in particular make extensive use of sketches to reason about chemical phenomena and to communicate their ideas. However, the chemical sciences have a unique problem in that chemists deal with the unseen world of the atomic-molecular level. Using sketches, chemists strive to develop causal mechanisms that emerge from (...)
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  15.  61
    The emergence of the philosophy of chemistry.Lee McIntyre - 1999 - Foundations of Chemistry 1 (1):57-63.
    After a long period of neglect, the philosophy of chemistry is slowly being recognized as a newly emerging branch of the philosophy of science. This paper endorses and defends this emergence given the difficulty of reducing all of the philosophical problems raised by chemistry to those already being considered within the philosophy of physics, and recognition that many of the phenomena in chemistry are epistemologically emergent.
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  16.  10
    It is not possible to reduce biological explanations to explanations in chemistry and/or physics.John Dupré - 2009 - In Francisco José Ayala & Robert Arp (eds.), Contemporary Debates in Philosophy of Biology. Oxford, UK: Wiley-Blackwell. pp. 32–47.
    This chapter contains sections titled: Introduction: No Need for Special Biological Laws? The Reductionist Principle Strong Emergence Complex Relations in Biology A Misinformed Slogan and Its Contributions Genes Causation Systems Biology Metaphysical Coda Postscript: Counterpoint Acknowledgments Notes References.
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  17.  53
    Emergence and quantum chemistry.Jean-Pierre Llored - 2012 - Foundations of Chemistry 14 (3):245-274.
    This paper first queries what type of concept of emergence, if any, could be connected with the different chemical activities subsumed under the label ‘quantum chemistry’. In line with Roald Hoffmann, we propose a ‘rotation to research laboratory’ in order to point out how practitioners hold a molecular whole, its parts, and the surroundings together within their various methods when exploring chemical transformation. We then identify some requisite contents that a concept of emergence must incorporate in order (...)
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  18.  35
    Two-step emergence: the quantum theory of atoms in molecules as a bridge between quantum mechanics and molecular chemistry.Chérif F. Matta, Olimpia Lombardi & Jesús Jaimes Arriaga - 2020 - Foundations of Chemistry 22 (1):107-129.
    By moving away from the traditional reductionist reading of the quantum theory of atoms in molecules, in this paper we analyze the role played by QTAIM in the relationship between molecular chemistry and quantum mechanics from an emergentist perspective. In particular, we show that such a relationship involves two steps: an intra-domain emergence and an inter-domain emergence. Intra-domain emergence, internal to quantum mechanics, results from the fact that the electron density, from which all the other QTAIM’s (...)
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  19. Part II. A walk around the emerging new world. Russia in an emerging world / excerpt: from "Russia and the solecism of power" by David Holloway ; China in an emerging world.Constraints Excerpt: From "China'S. Demographic Prospects Toopportunities, Excerpt: From "China'S. Rise in Artificial Intelligence: Ingredientsand Economic Implications" by Kai-Fu Lee, Matt Sheehan, Latin America in an Emerging Worldsidebar: Governance Lessons From the Emerging New World: India, Excerpt: From "Latin America: Opportunities, Challenges for the Governance of A. Fragile Continent" by Ernesto Silva, Excerpt: From "Digital Transformation in Central America: Marginalization or Empowerment?" by Richard Aitkenhead, Benjamin Sywulka, the Middle East in an Emerging World Excerpt: From "the Islamic Republic of Iran in an Age of Global Transitions: Challenges for A. Theocratic Iran" by Abbas Milani, Roya Pakzad, Europe in an Emerging World Sidebar: Governance Lessons From the Emerging New World: Japan, Excerpt: From "Europe in the Global Race for Technological Leadership" by Jens Suedekum & Africa in an Emerging World Sidebar: Governance Lessons From the Emerging New Wo Bangladesh - 2020 - In George P. Shultz (ed.), A hinge of history: governance in an emerging new world. Stanford, California: Hoover Institution Press, Stanford University.
     
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  20.  8
    Chemistry: Emergence without mystification.William Marias Malisoff - 1941 - Philosophy of Science 8 (1):39-52.
    In my last talk I introduced you to the system of the sciences and then went on to chat about the first of the natural series of the sciences, namely physics. To-night I shall discuss the other partner of the pair which could be called “the physical sciences”, namely chemistry.Of both of these sciences, physics and chemistry, it may be said that they are preeminently the study of matter-in-motion. Of both it may be said that the methods of (...)
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  21.  62
    In search of the chemical revolution: Interpretive strategies in the history of chemistry.John G. McEvoy - 2000 - Foundations of Chemistry 2 (1):47-73.
    In recent years the Chemical Revolution has become a renewed focus of interest among historians of science. This interest isshaped by interpretive strategies associated with the emergence anddevelopment of the discipline of the history of science. The disciplineoccupies a contested intellectual terrain formed in part by thedevelopment and cultural entanglements of science itself. Threestages in this development are analyzed in this paper. Theinterpretive strategies that characterized each stage are elucidatedand traced to the disciplinary interests that gave rise to them. (...)
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  22.  8
    Annals of the New York Academy of Sciences.Joseph E. Earley & International Society for the Philosophy of Chemistry (eds.) - 2003 - New York: New York Academy of Science.
    This volume addresses relations between macroscopic and microscopic description; essential roles of visualization and representation in chemical understanding; historical questions involving chemical concepts; the impacts of chemical ideas on wider cultural concerns; and relationships between contemporary chemistry and other sciences. The authors demonstrate, assert, or tacitly assume that chemical explanation is functionally autonomous. This volume should he of interest not only to professional chemists and philosophers, but also to workers in medicine, psychology, and other fields in which relationships between (...)
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  23.  4
    The Emergence of Physical Chemistry.Vello Past - 2001 - In Rein Vihalemm (ed.), Estonian Studies in the History and Philosophy of Science. Kluwer Academic Publishers. pp. 35--50.
  24.  51
    The emergence principle in biological hierarchies.Robert W. Korn - 2005 - Biology and Philosophy 20 (1):137-151.
    Emergent properties have been described by Mill, Lewes, Broad, Morgan and others, as novel, nonadditive, nonpredictable and nondeducible within a hierarchical context. I have developed a more definitive concept of a hierarchy that can be used to inspect the phenomenon of emergence in a new and detailed manner. A hierarchy is held together by descending constraints and new features can arise when an upper level entity restrains its components in new combinations that are not expected when viewing these components (...)
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  25.  41
    Emergence and Reduction in Science. A Case Study.Alexandru Manafu - unknown
    The past decade or so has witnessed an increase in the number of philosophical discussions about emergence and reduction in science. However, many of these discussions (though not all) remain too abstract and theoretical, and are wanting with respect to concrete examples taken from the sciences. This dissertation studies the topics of reduction and emergence in the context of a case study. I focus on the case of chemistry and investigate how emergentism can help us secure the (...)
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  26. The Prospects for Fusion Emergence.Alexandru Manafu - 2015 - In Ilie Parvu, Gabriel Sandu & Iulian D. Toader (eds.), Romanian Studies in Philosophy of Science. Boston Studies in the Philosophy and History of Science, vol. 313: Springer. pp. 221-235.
    This paper raises some concerns about Paul Humphreys’ fusion emergence in general and about his core example of fusion emergence (i.e., covalent bonding) in particular. It argues that the extent to which covalent bonding undermines the idea that our world’s ontology is wholly compositional has been overstated.
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  27.  41
    How Much Philosophy in the Philosophy of Chemistry?Alexandru Manafu - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):33-44.
    This paper aims to show that there is a lot of philosophy in the philosophy of chemistry—not only in the problems and questions specific to chemistry, which this science brings up in philosophical discussions, but also in the topics of wider interest like reductionism and emergence, for which chemistry proves to be an ideal case study. The fact that chemical entities and properties are amenable to a quantitative understanding, to measurement and experiment to a greater extent (...)
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  28.  10
    Chemistry and dynamics in the thought of G.W. Leibniz II.Miguel Escribano-Cabeza - 2020 - Foundations of Chemistry 23 (1):3-16.
    Is Leibnizian dynamics the New Physics sought in his youth to provide a solution to the problem of body unity/composition? This question can only be answered tentatively. The thesis that I will develop in this second part is that chemical-combinatoria project is not complete without some ideas of dynamics. The idea of form, which since the early Leibniz’s philosophy is projected to give a foundation to the corpuscular theory, only reaches this objective with the theory of conspiring movements that Leibniz (...)
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  29.  31
    The 'Hyperbola of Quantum Chemistry': the Changing Practice and Identity of a Scientific Discipline in the Early Years of Electronic Digital Computers, 1945-65.Buhm Soon B. S. Park - 2003 - Annals of Science 60 (3):219-247.
    In 1965, John A. Pope presented a paper entitled 'Two-Dimensional Chart of Quantum Chemistry' to illustrate the inverse relationship between the sophistication of computational methods and the size of molecules under study. This chart, later called the 'hyperbola of quantum chemistry', succinctly summarized the growing tension between the proponents of two different approaches to computation–the ab initio method and semiempirical method–in the early years of electronic digital computers. Examining the development of quantum chemistry after World War II, (...)
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  30.  16
    Whole-Parts Strategies in Quantum Chemistry: Some Philosophical and Mereological Lessons.Jean-Pierre Llored - 2014 - Hyle: International Journal for Philosophy of Chemistry 20 (1):141-163.
    Philosophers mainly refer to quantum chemistry in order to address questions about the reducibility or autonomy of chemistry relative to quantum physics, and to argue for or against ontological emergence. To make their point, they scrutinize quantum approximations and formalisms as if they were independent of the questions at stake. This paper proposes a return to history and to the laboratory so as to emphasize how quantum chemists never cease to negotiate the relationships between a molecule, its (...)
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  31.  19
    The Emergence of Modern Statistics in Agricultural Science: Analysis of Variance, Experimental Design and the Reshaping of Research at Rothamsted Experimental Station, 1919–1933.Giuditta Parolini - 2015 - Journal of the History of Biology 48 (2):301-335.
    During the twentieth century statistical methods have transformed research in the experimental and social sciences. Qualitative evidence has largely been replaced by quantitative results and the tools of statistical inference have helped foster a new ideal of objectivity in scientific knowledge. The paper will investigate this transformation by considering the genesis of analysis of variance and experimental design, statistical methods nowadays taught in every elementary course of statistics for the experimental and social sciences. These methods were developed by the mathematician (...)
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  32.  26
    The Emergence of New Scientific Disciplines in Portuguese Medicine: Marck Athias's Histophysiology Research School, Lisbon (1897–1946).Isabel Amaral - 2006 - Annals of Science 63 (1):85-110.
    Summary This paper discusses the emergence of new medical experimental specialties at the Medical School of Surgery (Escola Médico-Cirúrgica) and the Faculty of Medicine of Lisbon University (Faculdade de Medicina da Universidade de Lisboa) between 1897 and 1946, as a result of the activities of Marck Athias's (1875?1946) histophysiology research school. In 1897, Marck Athias, a Portuguese physician who had graduated from the Faculty of Medicine in Paris, founded a research school in Lisbon along the lines of Michael Foster's (...)
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  33.  23
    Chemistry, context and the objects of thought.Robert Prentner - 2017 - Foundations of Chemistry 19 (1):29-41.
    In this paper we wish to raise the following question: which conceptual obstacles need to be overcome to arrive at a scientific and theoretical understanding of the mind? In the course of this examination, we shall encounter methodological and explanatory challenges and discuss them from the point of view of the philosophy of chemistry and quantum mechanics. This will eventually lead us to a discussion of emergence and metaphysics, thereby focusing on the status of objects. The question remains (...)
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  34.  94
    Whence chemistry?Robert C. Bishop - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (2):171-177.
    Along with exploring some of the necessary conditions for the chemistry of our world given what we know about quantum mechanics, I will also discuss a different reductionist challenge than is usually considered in debates on the relationship of chemistry to physics. Contrary to popular belief, classical physics does not have a reductive relationship to quantum mechanics and some of the reasons why reduction fails between classical and quantum physics are the same as for why reduction fails between (...)
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  35.  33
    Chemistry: What does one need to know?Allen R. Utke - 1996 - Zygon 31 (3):497-507.
    The general knowledge and understanding that every teacher of religion and science should have relative to chemistry can be found in the answers to three major questions. In my own response to the first question, How did chemistry emerge as a discipline? I trace the origins, establishment, and subsequent historical significance of cosmology. I contend that chemistry is “the obvious, oldest science” and, as such, has played a key role among the sciences in agelong human efforts to (...)
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  36.  77
    Chemistry, Green Chemistry, and the Instrumental Valuation of Sustainability.Nathaniel Logar - 2011 - Minerva 49 (1):113-136.
    Using the Public Value Mapping framework, I address the values successes and failures of chemistry as compared to the emerging field of green chemistry, in which the promoters attempt to incorporate new and expanded values, such as health, safety, and environmental sustainability, to the processes of prioritizing and conducting chemistry research. I document how such values are becoming increasingly public. Moreover, analysis of the relations among the multiple values associated with green chemistry displays a greater internal (...)
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  37. The emancipation of chemistry.Gerald F. Thomas - 2011 - Foundations of Chemistry 14 (2):109-155.
    In his classic work The Mind and its Place in Nature published in 1925 at the height of the development of quantum mechanics but several years after the chemists Lewis and Langmuir had already laid the foundations of the modern theory of valence with the introduction of the covalent bond, the analytic philosopher C. D. Broad argued for the emancipation of chemistry from the crass physicalism that led physicists then and later—with support from a rabblement of philosophers who knew (...)
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  38. Gestalt switch in molecular image perception: The aesthetic origin of molecular nanotechnology in supramolecular chemistry[REVIEW]Joachim Schummer - 2004 - Foundations of Chemistry 8 (1):53-72.
    According to ‘standard histories’ of nanotechnology, the colorful pictures of atoms produced by scanning probe microscopists since the 1980s essentially inspired visions of molecular nanotechnology. In this paper, I provide an entirely different account that, nonetheless, refers to aesthetic inspiration, First, I argue that the basic idea of molecular nanotechnology, i.e., producing molecular devices, has been the goal of supramolecular chemistry that emerged earlier, without being called nanotechnology. Secondly, I argue that in supramolecular chemistry the production of molecular (...)
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  39.  26
    Institutional Struggles for Recognition in the Academic Field: The Case of University Departments in German Chemistry[REVIEW]Richard Münch & Christian Baier - 2012 - Minerva 50 (1):97-126.
    This paper demonstrates how the application of New Public Management (NPM) and the accompanying rise of academic capitalism in allocating research funds in the German academic field have interacted with a change from federal pluralism to a more stratified system of universities and departments. From this change, a tendency to build cartel-like structures of allocating symbolic capital resulting in oligopolistic structures of appropriating research funds has emerged. This macro level structure is complemented by the strengthening of the traditional oligarchic structures (...)
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  40.  5
    Green Chemistry as Social Movement?Steve Breyman & Edward J. Woodhouse - 2005 - Science, Technology, and Human Values 30 (2):199-222.
    Are there circumstances under which scientists and engineers doing their ordinary jobs can be thought of as participants in a social movement? The technoscientists analyzed in this article are at the forefront of a new way of doing chemistry; they are attempting to redesign chemical products and synthesis pathways to significantly reduce health effects and environmental damage from industrial chemicals. Green chemistry practitioners and entrepreneurs now constitute a small minority of chemists and chemical engineers in the university, government, (...)
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  41.  35
    Second-Guessing Scientists and Engineers: Post Hoc Criticism and the Reform of Practice in Green Chemistry and Engineering.William T. Lynch - 2015 - Science and Engineering Ethics 21 (5):1217-1240.
    The article examines and extends work bringing together engineering ethics and Science and Technology Studies, which had built upon Diane Vaughan’s analysis of the Challenger shuttle accident as a test case. Reconsidering the use of her term “normalization of deviance,” the article argues for a middle path between moralizing against and excusing away engineering practices contributing to engineering disaster. To explore an illustrative pedagogical case and to suggest avenues for constructive research developing this middle path, it examines the emergence (...)
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  42.  6
    The Philosophy of Chemistry: Practices, Methodologies, and Concepts.Jean-Pierre Llored (ed.) - 2013 - Cambridge Scholars Press.
    This volume connects chemistry and philosophy in order to face questions raised by chemistry in our present world. The idea is first to develop a kind of philosophy of chemistry which is deeply rooted in the exploration of chemical activities. We thus work in close contact with chemists. Following this line of reasoning, the first part of the book encourages current chemists to describe their workaday practices while insisting on the importance of attending to methodological, metrological, philosophical, (...)
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  43.  10
    Chemistry and Measurement: Some Philosophical Lessons.Jean-Pierre Llored - 2021 - Perspectives on Science 29 (6):782-801.
    How do chemists assign numbers to chemicals properties? What do these numbers refer to? To answer these questions, we will first point out both the context-dependence of chemicals and the epistemic limitations of chemistry. We will then investigate how chemists use various procedures to stabilize measurements and how they use mixtures of samples as “references” in order to determine the amount of different chemicals in a sample. This study will enable us to query how it is possible for chemists (...)
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  44. The Chemistry of Relations: Peirce, Perspicuous Representations, and Experiments with Diagrams.Chiara Ambrosio & Chris Campbell - 2017 - In Kathleen Hull & Richard Kenneth Atkins (eds.), Peirce on Perception and Reasoning: From Icons to Logic. New York: Routledge.
    This chapter shows that the combination of mathematical and chemical thinking in particular, as evidenced by Charles Sanders Peirce’s chemical training at Harvard, formed a solid conceptual basis for his account of diagrams. The connection between the Lawrence school and the chemical tradition established by Justus von Liebig in Giessen is of crucial importance to understand the context of Peirce’s own chemistry training. A completely different picture emerges if one pays greater attention to the nature of the chemistry (...)
     
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  45.  17
    An integrated vision of the Green Chemistry evolution along 25 years.Carlos Alberto Marques & Adelio A. S. C. Machado - 2021 - Foundations of Chemistry 23 (3):299-328.
    The objective of the present review on the evolution of Green Chemistry, since its emergence until 2016, aimed an integrated vision of its progress along the three phases of its development: emergence, divulgation and consolidation. The methodology involved the analysis of a selection of bibliography on the evolution of GC collected from issues of the ACS symposia series; editorials in specialized GC journals; and commemorative birthday papers/editorials of these journals and of the GC itself. The analysis allowed (...)
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  46. Fundamentality and Levels in Everettian Quantum Mechanics.Alastair Wilson - 2022 - In Valia Allori (ed.), Quantum Mechanics and Fundamentality: Naturalizing Quantum Theory between Scientific Realism and Ontological Indeterminacy. Cham: Springer.
    Distinctions in fundamentality between different levels of description are central to the viability of contemporary decoherence-based Everettian quantum mechanics (EQM). This approach to quantum theory characteristically combines a determinate fundamental reality (one universal wave function) with an indeterminate emergent reality (multiple decoherent worlds). In this chapter I explore how the Everettian appeal to fundamentality and emergence can be understood within existing metaphysical frameworks, identify grounding and concept fundamentality as promising theoretical tools, and use them to characterize a system of (...)
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  47.  33
    On The Philosophy of Chemistry.J. van Brakel & H. Vermeeren - 1981 - Philosophy Research Archives 7:501-552.
    While in the research area known,as ’philosophy of science' there is a growing interest in separate disciplines of the empirical sciences, applied sciences and even technologies, one can find hardly any reference to the discipline of chemistry other than some preliminary discussions of chemical concepts or studies concerning the rational reconstruction of the history of chemistry. No analyses, which might be called 'philosophy of chemistry’ can be found to date. It is hoped that this review paper on (...)
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  48.  54
    Emergence of Time.George F. R. Ellis & Barbara Drossel - 2020 - Foundations of Physics 50 (3):161-190.
    Microphysical laws are time reversible, but macrophysics, chemistry and biology are not. This paper explores how this asymmetry arises due to the cosmological context, where a non-local Direction of Time is imposed by the expansion of the universe. This situation is best represented by an Evolving Block Universe, where local arrows of time emerge in concordance with the Direction of Time because a global Past Condition results in the Second Law of Thermodynamics pointing to the future. At the quantum (...)
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  49.  8
    Reductionism, Emergence and Levels of Reality: The Importance of Being Borderline.Sergio Chibbaro - 2014 - Cham: Imprint: Springer. Edited by Lamberto Rondoni & Angelo Vulpiani.
    Scientists have always attempted to explain the world in terms of a few unifying principles. In the fifth century B.C. Democritus boldly claimed that reality is simply a collection of indivisible and eternal parts or atoms. Over the centuries his doctrine has remained a landmark, and much progress in physics is due to its distinction between subjective perception and objective reality. This book discusses theory reduction in physics, which states that the whole is nothing more than the sum of its (...)
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  50.  17
    The Hybrid Expert in the ‘Bergstaat’: Anton von Ruprecht as a Professor of Chemistry and Mining and as a Mining Official, 1779–1814. [REVIEW]Peter Konečný - 2012 - Annals of Science 69 (3):335-347.
    Summary In the course of the 18th century a new type of scientifically educated functional elites developed, who were trained to administer mines. The educational project that led to the formation of a corps of mining engineers was part of a programme of administrative and economic reforms that led to a new configuration of bonds between state, economy and science. At the same time the status of this new group of experts was predicated substantially by the new emerging corpora of (...)
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