Results for 'colloid chemistry'

181 found
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  1. Heads and Tails: Molecular Imagination and the Lipid Bilayer, 1917–1941.Daniel Liu - 2018 - In Karl Matlin, Jane Maienschein & Manfred Laubichler (eds.), Visions of Cell Biology: Reflections Inspired by Cowdry's General Cytology. University of Chicago Press. pp. 209-245.
    Today, the lipid bilayer structure is nearly ubiquitous, taken for granted in even the most rudimentary introductions to cell biology. Yet the image of the lipid bilayer, built out of lipids with heads and tails, went from having obscure origins deep in colloid chemical theory in 1924 to being “obvious to any competent physical chemist” by 1935. This chapter examines how this schematic, strictly heuristic explanation of the idea of molecular orientation was developed within colloid physical chemistry, (...)
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  2. The Artificial Cell, the Semipermeable Membrane, and the Life that Never Was, 1864–1901.Daniel Liu - 2019 - Historical Studies in the Natural Sciences 49 (5):504-555.
    Since the early nineteenth century a membrane or wall has been central to the cell’s identity as the elementary unit of life. Yet the literally and metaphorically marginal status of the cell membrane made it the site of clashes over the definition of life and the proper way to study it. In this article I show how the modern cell membrane was conceived of by analogy to the first “artificial cell,” invented in 1864 by the chemist Moritz Traube (1826–1894), and (...)
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  3. Reducing Chemistry to Physics: Limits, Models, Consequences.Hinne Hettema - 2012 - Createspace.
    Chemistry and physics are two sciences that are hard to connect. Yet there is significant overlap in their aims, methods, and theoretical approaches. In this book, the reduction of chemistry to physics is defended from the viewpoint of a naturalised Nagelian reduction, which is based on a close reading of Nagel's original text. This naturalised notion of reduction is capable of characterising the inter-theory relationships between theories of chemistry and theories of physics. The reconsideration of reduction also (...)
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  4. Models, Parameterization, and Software: Epistemic Opacity in Computational Chemistry.Frédéric Wieber & Alexandre Hocquet - 2020 - Perspectives on Science 28 (5):610-629.
    . Computational chemistry grew in a new era of “desktop modeling,” which coincided with a growing demand for modeling software, especially from the pharmaceutical industry. Parameterization of models in computational chemistry is an arduous enterprise, and we argue that this activity leads, in this specific context, to tensions among scientists regarding the epistemic opacity transparency of parameterized methods and the software implementing them. We relate one flame war from the Computational Chemistry mailing List in order to assess (...)
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  5. The chemistry of substances and the philosophy of mass terms.J. Brakel - 1986 - Synthese 69 (3):291 - 324.
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  6.  96
    The Chemistry of the Stars.Baigrie Brian - 2002 - Optics and Photonics News 13:47-49.
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  7. Mechanistic trends in chemistry.Louis Caruana - 2018 - Substantia 2 (1):29-40.
    During the twentieth century, the mechanistic worldview came under attack mainly because of the rise of quantum mechanics but some of its basic characteristics survived and are still evident within current science in some form or other. Many scholars have produced interesting studies of such significant mechanistic trends within current physics and biology but very few have bothered to explore the effects of this worldview on current chemistry. This paper makes a contribution to fill this gap. It presents first (...)
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  8. Life is physics and chemistry and communication.Gunther Witzany - 2015 - In Guenther Witzany (ed.), DNA Habitats and Their RNA Inhabitants. pp. 1-9.
    Manfred Eigen extended Erwin Schroedinger’s concept of “life is physics and chemistry” through the introduction of information theory and cybernetic systems theory into “life is physics and chemistry and information.” Based on this assumption, Eigen developed the concepts of quasispecies and hypercycles, which have been dominant in molecular biology and virology ever since. He insisted that the genetic code is not just used metaphorically: it represents a real natural language.However, the basics of scientific knowledge changed dramatically within the (...)
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  9. Philosophy of chemistry: unkempt jungle and fertile ground: Eric Scerri and Lee McIntyre : Philosophy of chemistry: Growth of a new discipline . Dordrecht: Springer, 2015. xii+233pp, $99 HB.Micah Newman - 2016 - Metascience 25 (3):473-477.
    Invited review of the anthology of new papers _Philosophy of Chemistry: Growth of a New Discipline_.
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  10. Revolutionary poetry and liquid crystal chemistry: Herman Gorter, Ada Prins and the interface between literature and science.Hub Zwart - 2020 - Foundations of Chemistry 23 (1):115-132.
    In the Netherlands, the poet Herman Gorter is mostly known as the author of the neo-romantic poem May and the “sensitivistic” Poems, but internationally he became famous as a propagandist of radical Marxism: the author of influential brochures and of an “open letter” to comrade W.I. Lenin in 1920. During the 1890s, Gorter became increasingly dissatisfied with his poetry, considering it as ego-centric, disinterested and “bourgeois”, unconnected with what was happening in the real world. He wanted to put his poetry (...)
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  11. The toys of organic chemistry: Material manipulatives and inductive reasoning.Kate McKinney Maddalena - 2013 - Teorie Vědy / Theory of Science 35 (2):227-248.
    Chemical visualizations and models are special kinds of situated, inductive arguments. In this paper, I examine several historical case studies—an archive of images from museums, special collections, and popular magazines—as examples of emergent practices of physical modeling as theoretical play which became the basis for molecular biology and structural chemistry. Specifically, I trace a legacy of visualization tools that starts with Archibald Scott Cooper and Friedrich Kekulé in the late 1800s, crystallizes as material manipulatives in Kekulé’s student Jacobus Henricus (...)
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  12. 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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  13. Chemistry as Technoscience?Bensaude-Vincent Bernadette & Bernadette Bensaude-Vincent - 2013 - In Jean-Pierre Llored (ed.), The Philosophy of Chemistry: Practices, Methodologies, and Concepts. Cambridge Scholars Press. pp. 330-341.
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  14. Concepts of Emergence in Chemistry.Alexandru Manafu - 2013 - In Jean-Pierre Llored (ed.), The Philosophy of Chemistry: Practices, Methodologies, and Concepts. Cambridge Scholars Press. pp. 659-674.
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  15. Bibliography on philosophy of chemistry.E. R. Scerri - 1997 - Synthese 111 (3):305-324.
    The term philosophy of chemistry is here construed broadly to include some publications from the history of chemistry and chemical education. Of course this initial selection of material has inevitably been biased by the interests of the author. This bibliography supersedes that of van Brakel and Vermeeren (1981), although no attempt has been made to include every single one of their entries, especially in languages other than English. Also, readers interested particularly in articles in German may wish to (...)
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  16. (1 other version)A Failed Encounter in Mathematics and Chemistry: The Folded Models of van ‘t Hoff and Sachse.Michael Friedman - 2016 - Teorie Vědy / Theory of Science 38 (3):359-386.
    Three-dimensional material models of molecules were used throughout the 19th century, either functioning as a mere representation or opening new epistemic horizons. In this paper, two case studies are examined: the 1875 models of van ‘t Hoff and the 1890 models of Sachse. What is unique in these two case studies is that both models were not only folded, but were also conceptualized mathematically. When viewed in light of the chemical research of that period not only were both of these (...)
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  17. (1 other version)How the Models of Chemistry Vie.James R. Hofmann - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:405 - 419.
    Building upon Nancy Cartwright's discussion of models in How the Laws of Physics Lie, this paper addresses solid state research in transition metal oxides. Historical analysis reveals that in this domain models function both as the culmination of phenomenology and the commencement of theoretical explanation. Those solid state chemists who concentrate on the description of phenomena pertinent to specific elements or compounds assess models according to different standards than those who seek explanation grounded in approximate applications of the Schroedinger equation. (...)
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  18. Distal Content in Informational Teleosemantics: Challenges from Colour Constancy and Colour Chemistry.Lance Balthazar - forthcoming - The British Journal for the Philosophy of Science.
    In general, visual experiences represent determinately. And visual experiences, generally, represent properties of distal objects like their colour, shape, and size, but they do not, generally, represent properties of proximal states like that of incoming light or the retina. By making perceptual constancies central to perceptual representation, Peter Schulte extends Karen Neander’s Causal-Informational Teleosemantic theory in order to accommodate these facts. However, by appealing to the psychophysics and chemistry of how light-related properties interact to produce stimulation to the visual (...)
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  19. The Artificial Intelligence Explanatory Trade-Off on the Logic of Discovery in Chemistry.José Ferraz-Caetano - 2023 - Philosophies 8 (2):17.
    Explanation is a foundational goal in the exact sciences. Besides the contemporary considerations on ‘description’, ‘classification’, and ‘prediction’, we often see these terms in thriving applications of artificial intelligence (AI) in chemistry hypothesis generation. Going beyond describing ‘things in the world’, these applications can make accurate numerical property calculations from theoretical or topological descriptors. This association makes an interesting case for a logic of discovery in chemistry: are these induction-led ventures showing a shift in how chemists can problematize (...)
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  20. The Image of Chemistry and Curriculum Changes.Johan Alfredo Linthorst - 2012 - Educación Química 23 (2):240-242.
    Since the 1980's, the influence of context-based curricula has been growing in curricula and has been taking place in advance of improving the image of chemistry. This article argues that chemical societies should focus on a better understanding of the negative image of chemistry, by supporting historical and philosophical research. Based on that, chemistry curricula should change.
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  21. Language of Chemistry: from the Formal Structures to the Experimental Facts لغة الكيمياء: من البني الصورية إلى الوقائع التجريبية.Salah Osman - 2004 - In Osman Salah (ed.), Towards a Philosophy of the Chemistry نحو فلسفة للكيمياء. Al Maaref Establishment Press. pp. 92 - 113.
    الكيمياء علمٌ تجريبي بطبيعته، يشتغل معمليًا بالجواهر تحليلاً وتركيبًا، ويُقيم بناءاته النسقية استرشادًا بقواعد محددة تحكم إجراءات البحث التجريبي ونتائجه. وكشأن أي نشاط علمي آخر، تستلزم الممارسة الكيميائية لغة جزئية خاصة تصف بناءاتها التجريبية وتُنمّط أشكالها. وما دام التحليل والتركيب – كإجراءين تجريبيين – هما عمادا البحث الكيميائي وجوهره، فمن الضروري أن تحوي لغة الكيمياء تمثيلات صورية توصف بدورها بأنها صيغٌ أو عبارات تحليلية وتركيبية. يمكننا إذن الزعم بأن ثمة علاقة اعتماد متبادلة بين لغة الكيمياء وممارساتها المعملية؛ فاللغة تؤثر مباشرة (...)
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  22.  75
    Whence the Chemistry of Hume’s Mind? [REVIEW]Miren Boehm - 2016 - Hume Studies 42 (1/2):241-242.
    Reading Tamás Demeter's recent book, "David Hume and the Culture of Scottish Newtonianism," feels like visiting a curiosity shop. There are some general themes that are meant to harmonize the work, such as the emphasis on the conceptual and methodological unity of natural and moral philosophy. This merging of cultures of inquiry is nicely illustrated with the case study of anger in the period. There is the main thesis: that Hume's science of mind was influenced, not as much by Newton's (...)
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  23. 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. Berlin: Springer. pp. 39-55.
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  24. From The Principle Of Least Action To The Conservation Of Quantum Information In Chemistry: Can One Generalize The Periodic Table?Vasil Penchev - 2019 - Chemistry: Bulgarian Journal of Science Education 28 (4):525-539.
    The success of a few theories in statistical thermodynamics can be correlated with their selectivity to reality. These are the theories of Boltzmann, Gibbs, end Einstein. The starting point is Carnot’s theory, which defines implicitly the general selection of reality relevant to thermodynamics. The three other theories share this selection, but specify it further in detail. Each of them separates a few main aspects within the scope of the implicit thermodynamic reality. Their success grounds on that selection. Those aspects can (...)
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  25. Effectiveness of Microlearning-based Lessons in Teaching Grade 9 Chemistry.Lovelyn A. Calixtro - 2023 - Universal Journal of Educational Research 2 (4):351-356.
    Microlearning-based lessons are still new in the field of education because it primarily focuses on corporate training and adult learning. Hence, limited research was conducted in basic education even in higher education. Microlearning-based lessons are designed and delivered in the form of small, bite-sized information which allows students to achieve a certain learning objective. The main purpose of this research is to determine the effectiveness of Microlearning-based Lessons in Chemistry in the level of academic performance of 18 Grade 9 (...)
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  26. On Some Features of the Scientific Hylorealistic Background of Crystal Chemistry.Matias Velázquez - 2022 - Mεtascience: Scientific General Discourse 2:96-128.
    In this paper, we try to understand how Bunge’s scientific hylorealism can fit with several crystal chemistry’s objects and their properties. It is found that many of them, lying at the very core of this discipline, bring support to ontologi-cal emergentism. Building units, such as vacancies, their chemical potential, the crystal quantum number and many aspects of the spectroscopic properties of 4f electrons in ionic crystals, are presented as striking examples of emergent (or submergent) objects or properties encountered in (...)
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  27. Mixtures and Mass Terms.David Nicolas - 2021 - Dialectica 75 (1).
    In this article, I show that the semantics one adopts for mass terms constrains the metaphysical claims one can make about mixtures. I first expose why mixtures challenge a singularist approach based on mereological sums. After discussing an alternative, non-singularist approach, I take chemistry into account and explain how it changes our perspective on these issues.
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  28. The periodic table and the turn to practice.Eric R. Scerri - forthcoming - Studies in History and Philosophy of Science Part A.
    The philosopher of chemistry Andrea Woody has recently published a wide-ranging article concerning the turn to practice in the philosophy of science. Her primary example consists of the use of different forms of representations by Lothar Meyer and Mendeleev when they presented their views on chemical periodicity. Woody believes that this distinction can cast light on various issues including why Mendeleev was able to make predictions while Meyer was not. Secondly, she claims that it can clarify the much-debated question (...)
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  29. Josiah Parsons Cooke Jr.: Epistemology in the Service of Science, Pedagogy, and Natural Theology.Stephen M. Contakes & Christopher Willard Kyle - 2011 - Hyle 17 (1):1 - 23.
    Josiah Parsons Cooke established chemistry education at Harvard University, initiated an atomic weight research program, and broadly impacted American chemical education through his students, the introduction of laboratory instruction, textbooks, and influence on Harvard's admissions requirements. The devoutly Unitarian Cooke also articulated and defended a biogeochemical natural theology, which he defended by arguing for commonalities between the epistemologies of science and religion. Cooke's pre-Mendeleev classification scheme for the elements and atomic weight research were motivated by his interest in numerical (...)
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  30. A New ‘Idea of Nature’ for Chemical Education.Joseph E. Earley - 2013 - Science & Education 22 (7):1775-1786.
    This paper recommends that chemistry educators shift to a different ‘idea of nature’, an alternative ‘worldview.’ Much of contemporary science and technology deals in one way or another with dynamic coherences that display novel and important properties. The notion of how the world works that such studies and practices generate (and require) is quite different from the earlier concepts that are now integrated into science education. Eventual success in meeting contemporary technological and social challenges requires general diffusion of an (...)
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  31. 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 his (...)
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  32. When can a Computer Simulation act as Substitute for an Experiment? A Case-Study from Chemisty.Johannes Kästner & Eckhart Arnold - manuscript
    In this paper we investigate with a case study from chemistry under what conditions a simulation can serve as a surrogate for an experiment. The case-study concerns a simulation of H2-formation in outer space. We find that in this case the simulation can act as a surrogate for an experiment, because there exists comprehensive theoretical background knowledge in form of quantum mechanics about the range of phenomena to which the investigated process belongs and because any particular modelling assumptions as (...)
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  33. Natural Kind Essentialism Revisited.Tuomas E. Tahko - 2015 - Mind 124 (495):795-822.
    Recent work on Natural Kind Essentialism has taken a deflationary turn. The assumptions about the grounds of essentialist truths concerning natural kinds familiar from the Kripke-Putnam framework are now considered questionable. The source of the problem, however, has not been sufficiently explicated. The paper focuses on the Twin Earth scenario, and it will be demonstrated that the essentialist principle at its core (which I call IDENT)—that necessarily, a sample of a chemical substance, A, is of the same kind as another (...)
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  34. A neglected aspect of the puzzle of chemical structure: how history helps.Joseph E. Earley - 2012 - Foundations of Chemistry 14 (3):235-243.
    Intra-molecular connectivity (that is, chemical structure) does not emerge from computations based on fundamental quantum-mechanical principles. In order to compute molecular electronic energies (of C 3 H 4 hydrocarbons, for instance) quantum chemists must insert intra-molecular connectivity “by hand.” Some take this as an indication that chemistry cannot be reduced to physics: others consider it as evidence that quantum chemistry needs new logical foundations. Such discussions are generally synchronic rather than diachronic —that is, they neglect ‘historical’ aspects. However, (...)
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  35. What is an element? What is the periodic table? And what does quantum mechanics contribute to the question?Eric R. Scerri - 2011 - Foundations of Chemistry 14 (1):69-81.
    This article considers two important traditions concerning the chemical elements. The first is the meaning of the term “element” including the distinctions between element as basic substance, as simple substance and as combined simple substance. In addition to briefly tracing the historical development of these distinctions, I make comments on the recent attempts to clarify the fundamental notion of element as basic substance for which I believe the term “element” is best reserved. This discussion has focused on the writings of (...)
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  36.  24
    On Democritean Rhysmos.Gustavo Laet Gomes - 2019 - Archai: Revista de Estudos Sobre as Origens Do Pensamento Ocidental 27:e02702.
    In Metaphysics A.4, Aristotle provides crucial information about fundamental aspects of the chemistry and microphysics of the atomic theory of Leucippus and Democritus of Abdera. Besides the plenum and the void, which he identifies as the elements of the atomic theory, he presents what he himself names as differences. These fundamental differences are named so because they ought to be responsible for the emergence of all other differences in the physical world, and especially the ones that hit our senses. (...)
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  37. Meta-Incommensurability between Theories of Meaning: Chemical Evidence.Nicholas W. Best - 2015 - Perspectives on Science 23 (3):361-378.
    Attempting to compare scientific theories requires a philosophical model of meaning. Yet different scientific theories have at times—particularly in early chemistry—pre-supposed disparate theories of meaning. When two theories of meaning are incommensurable, we must say that the scientific theories that rely upon them are meta-incommensurable. Meta- incommensurability is a more profound sceptical threat to science since, unlike first-order incommensurability, it implies complete incomparability.
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  38. I principi epistemologici della botanica di Guy de La Brosse.Matteo Fornasier - 2020 - Noctua 7 (2):225-269.
    This paper investigates some core aspects of Guy de La Brosse’s botanical work. In the first section, the focus is on the epistemological principles of La Brosse’s botany by analyzing the first and second book of the treatise De la nature, vertu et utilité des plantes. In the second section, the author discusses the role of Paracelsus’s chemistry in La Brosse’s work, with a particular attention to the third book of the De la nature. The final section deals with (...)
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  39. MARIE CURIE. PASIÓN POR LA INVESTIGACIÓN CIENTÍFICA.Miguel Acosta - 2008 - In Borrego Gutiérrez Mª José (ed.), La mujer en la Historia de la Ciencia. CEU Ediciones. pp. 35-48.
    Marie Curie is the first scientist woman awarded the Nobel Prize in Physics (1903) and another in Chemistry (1911). Her life and her work summarize the tenacity, effort and passion for knowing aspects related to the reality of a new physical-chemical phenomenon: radioactivity. In this semblance, in addition to the scientific aspect, the human aspect that accompanies and sometimes overshadows the lives of great men is shown.
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  40. The Genius of Prof. Puran Singh.Devinder Pal Singh - 2004 - The Sikh Review 8 (52):60-63.
    A great visionary, renowned scientist, a humanist and a mystic poet - Professor Puran Singh was perhaps the first eminent chemist born in Punjab. The founder head of the Department of Chemistry of forest products at the Forest Research Institute, Dehradun, Puran Singh pioneered many chemical efforts in the utilization of forest products. He was one of the new breeds of scientists who flowered in the subcontinent at the fag end of the nineteenth century and founded the base on (...)
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  41. Alkimia Operativa and Alkimia Speculativa. Some Modern Controversies on the Historiography of Alchemy.Florin George Calian - 2010 - Annual of Medieval Studies at CEU 16:166-190.
    The accent on scientific and empirical character of alchemy, especially from the field of the history of science, promotes the idea that one can understand the cryptic and metaphorical language of alchemy mainly through the laboratory chemical practice. As a result, the tendency is to interpret the spiritual and esoteric language of alchemy, as metaphors for laboratory work and the most representative research on historiography of alchemy that point the spiritual character as being contaminated by esoteric sciences and Victorian occultism. (...)
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  42. What Is A Chemical Element? A Collection of Essays by Chemists, Philosophers, Historians, and Educators. Edited by Eric Scerri and Elena Ghibaudi. New York, NY: Oxford University Press, 2020, 312 pp. ISBN: 9780190933784, £65.00. [REVIEW]Pieter Thyssen - 2023 - International Studies in the Philosophy of Science (3-4):1-4.
    Compared to its sister disciplines—philosophy of physics and philosophy of biology—philosophy of chemistry remains a relatively young field of philosophical endeavour. Having originated in the late...
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  43. Hasok Chang on the nature of acids.Eric R. Scerri - 2022 - Foundations of Chemistry 24 (3):389-404.
    For a period of several years the philosopher of science Hasok Chang has promoted various inter-related views including pluralism, pragmatism, and an associated view of natural kinds. He has also argued for what he calls the persistence of everyday terms in the scientific view. Chang claims that terms like phlogiston were never truly abandoned but became transformed into different concepts that remain useful. On the other hand, Chang argues that some scientific terms such as acidity have suffered a form of (...)
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  44. Emergence, Supervenience, and Introductory Chemical Education.Micah Newman - 2013 - Science & Education 22 (7):1655-1667.
    In learning chemistry at the entry level, many learners labor under misconceptions about the subject matter that are so fundamental that they are typically never addressed. A fundamental misconception in chemistry appears to arise from an adding of existing phenomenal concepts to newly-acquired chemical concepts, so that beginning learners think of chemical entities as themselves having the very same ‘macro’ properties that we observe through the senses. Those who teach or practice chemistry never acquire these misconceptions because (...)
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  45. Jacob's Ladder and Scientific Ontologies.Julio Michael Stern - 2014 - Cybernetics and Human Knowing 21 (3):9-43.
    The main goal of this article is to use the epistemological framework of a specific version of Cognitive Constructivism to address Piaget’s central problem of knowledge construction, namely, the re-equilibration of cognitive structures. The distinctive objective character of this constructivist framework is supported by formal inference methods of Bayesian statistics, and is based on Heinz von Foerster’s fundamental metaphor of objects as tokens for eigen-solutions. This epistemological perspective is illustrated using some episodes in the history of chemistry concerning the (...)
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  46. Symmetry and Symmetry Breaking in the Periodic Table: Towards a Group-Theoretical Classification of the Chemical Elements.Pieter Thyssen - 2013 - Dissertation, Ku Leuven
    At the heart of chemistry lies the periodic system of chemical elements. Despite being the cornerstone of modern chemistry, the overall structure of the periodic system has never been fully understood from an atomic physics point of view. Group-theoretical models have been proposed instead, but they suffer from several limitations. Among others, the identification of the correct symmetry group and its decomposition into subgroups has remained a problem to this day. In an effort to deepen our limited understanding (...)
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  47. Form, Matter, Substance.Kathrin Koslicki - 2021 - Chroniques Universitaires 2020:99-119.
    This inaugural lecture, delivered on 17 November 2021 at the University of Neuchâtel, addresses the question: Are material objects analyzable into more basic constituents and, if so, what are they? It might appear that this question is more appropriately settled by empirical means as utilized in the natural sciences. For example, we learn from physics and chemistry that water is composed of H2O-molecules and that hydrogen and oxygen atoms themselves are composed of smaller parts, such as protons, which are (...)
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  48. Why Evolution is Not True.Bhakti Madhava Puri - 2013 - The Harmonizer.
    Are physics and chemistry sufficient to provide a basis for a theory of everything? The worldview of materialist naturalism that forms the foundation of NeoDarwinian evolution, Big Bang cosmogony, and molecular biology in general has been subjected to challenge for its monumental failure to explain life, consciousness and other mind-related aspects of reality. Two recent books, Why Evolution is True by Jerry Coyne [1], and Thomas Nagel’s Mind and Cosmos: Why the Materialist NeoDarwinian Conception of Nature Is Almost Certainly (...)
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  49. The Problem of Molecular Structure Just Is The Measurement Problem.Alexander Franklin & Vanessa Angela Seifert - forthcoming - The British Journal for the Philosophy of Science.
    Whether or not quantum physics can account for molecular structure is a matter of considerable controversy. Three of the problems raised in this regard are the problems of molecular structure. We argue that these problems are just special cases of the measurement problem of quantum mechanics: insofar as the measurement problem is solved, the problems of molecular structure are resolved as well. In addition, we explore one consequence of our argument: that claims about the reduction or emergence of molecular structure (...)
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  50. Where Do You Get Your Protein? Or: Biochemical Realization.Tuomas E. Tahko - 2020 - British Journal for the Philosophy of Science 71 (3):799-825.
    Biochemical kinds such as proteins pose interesting problems for philosophers of science, as they can be studied from the points of view of both biology and chemistry. The relationship between the biological functions of biochemical kinds and the microstructures that they are related to is the key question. This leads us to a more general discussion about ontological reductionism, microstructuralism, and multiple realization at the biology-chemistry interface. On the face of it, biochemical kinds seem to pose a challenge (...)
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