Results for 'Protochemical atom'

971 found
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  1.  48
    Elements of the third kind and the spin-dependent chemical force.R. Garth Kidd - 2010 - Foundations of Chemistry 13 (2):109-119.
    A lively philosophical debate has lately arisen over the nature of elementhood in chemistry. Two different senses in which the technical term ELEMENT is currently in use by chemists have been identified, leaving chemistry open to the logical fallacy of equivocation. This paper introduces a third, more elemental candidate: the high-enthalpy short-lived unbonded atom. An enthalpy index based on free-atoms-as-elements is established, whereby one can monitor the degree to which an atom’s spin-based attractive force is implemented exo-enthalpically when (...)
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  2.  25
    1. Preliminaries.on Atomic Join-Semilattices - 1989 - Bulletin of the Section of Logic 18 (3):105-111.
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  3. Hibbert~ journal.Iii Atomic Energy & Lp Jacks - 1946 - Hibbert Journal: A Quarterly Review of Religion, Theology, and Philosophy 44:1.
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  4.  54
    The scattering of α and β particles by matter and the structure of the atom.E. Rutherford - 2012 - Philosophical Magazine 92 (4):379-398.
  5. (1 other version)Atomic physics and human knowledge.Niels Bohr - 1958 - New York,: Wiley.
    These articles and speeches by the Nobel Prize-winning physicist date from 1934 to 1958. Rather than expositions on quantum physics, the papers are philosophical in nature, exploring the relevance of atomic physics to many areas of human endeavor. Includes an essay in which Bohr and Einstein discuss quantum and_wave equation theories. 1961 edition.
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  6.  40
    Embeddings between the elementary ontology with an atom and the monadic second-order predicate logic.Mitio Takano - 1987 - Studia Logica 46 (3):247 - 253.
    Let EOA be the elementary ontology augmented by an additional axiom S (S S), and let LS be the monadic second-order predicate logic. We show that the mapping which was introduced by V. A. Smirnov is an embedding of EOA into LS. We also give an embedding of LS into EOA.
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  7.  79
    Atomic theory and the description of nature.Niels Bohr - 1934 - Woodbridge, Conn.: Ox Bow Press.
    Introductory survey -- Atomic theory and mechanics -- The quantum postulate and the recent development of atomic theory -- The quantum of action and the description of nature -- The atomic theory and the fundamental principles underlying the description of nature.
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  8.  33
    Self-consistent screening of a pseudo-atom in a nearly-free electron metal.Md M. Islam & M. A. Ball - 1970 - Philosophical Magazine 22 (180):1227-1241.
  9. Atomically Precise Manufacturing and Responsible Innovation: A Value Sensitive Design Approach to Explorative Nanophilosophy.Steven Umbrello - 2019 - International Journal of Technoethics 10 (2):1-21.
    Although continued investments in nanotechnology are made, atomically precise manufacturing (APM) to date is still regarded as speculative technology. APM, also known as molecular manufacturing, is a token example of a converging technology, has great potential to impact and be affected by other emerging technologies, such as artificial intelligence, biotechnology, and ICT. The development of APM thus can have drastic global impacts depending on how it is designed and used. This paper argues that the ethical issues that arise from APM (...)
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  10.  51
    Molecular geneticists and moral responsibility: “Maybe if we were working on the atom bomb I would have a different argument”.Barbara Nicholas - 1999 - Science and Engineering Ethics 5 (4):515-530.
    Senior molecular geneticists were interviewed about their perceptions of the ethical and social implications of genetic knowledge. Inductive analysis of these interviews identified a number of strategies through which the scientists negotiated their moral responsibilities as they participated in generating knowledge that presents difficult ethical questions. These strategies included: further analysis and application of scientific method; clarification of multiple roles; negotiation with the public through public debate, institutional processes of funding, ethics committees and legislation; and personal responsibility.
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  11.  14
    Lowest energy structures of self-interstitial atom clusters in α-iron from a combination of Langevin molecular dynamics and the basin-hopping technique.Y. Abe & S. Jitsukawa - 2009 - Philosophical Magazine 89 (4):375-388.
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  12.  25
    Influence of field evaporation on Radial Distribution Functions in Atom Probe Tomography.D. Haley, T. Petersen, G. Barton & S. P. Ringer - 2009 - Philosophical Magazine 89 (11):925-943.
  13.  67
    Bohr's theory of the atom 1913–1923: A case study in the progress of scientific research programmes.Hinne Hettema - 1995 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 26 (3):307-323.
  14. Anthropic web of the universe: Atom and ātman.Plamen Gradinarov - 1989 - Philosophy East and West 39 (1):27-45.
  15.  97
    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 the (...)
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  16.  30
    The Kossel-Sommerfeld Theory and the Ring Atom.John Heilbron - 1967 - Isis 58 (4):450-485.
  17.  32
    Investigation of the elemental partitioning behaviour and site preference in ternary model nickel-based superalloys by atom probe tomography and first-principles calculations.S. H. Liu, C. P. Liu, W. Q. Liu, X. N. Zhang, P. Yan & C. Y. Wang - 2016 - Philosophical Magazine 96 (21):2204-2218.
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  18.  61
    Atomic number and isotopy before nuclear structure: multiple standards and evolving collaboration of chemistry and physics.Jordi Cat & Nicholas W. Best - 2022 - Foundations of Chemistry 25 (1):67-99.
    We provide a detailed history of the concepts of atomic number and isotopy before the discovery of protons and neutrons that draws attention to the role of evolving interplays of multiple aims and criteria in chemical and physical research. Focusing on research by Frederick Soddy and Ernest Rutherford, we show that, in the context of differentiating disciplinary projects, the adoption of a complex and shifting concept of elemental identity and the ordering role of the periodic table led to a relatively (...)
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  19.  20
    Why do we believe that an atom is colourless? Reflections about the teaching of the particle model.Alessandro Albanese & Matilde Vicentini - 1997 - Science & Education 6 (3):251-261.
  20.  41
    Niels Bohr and the Quantum Atom: The Bohr Model of Atomic Structure 1913–1925.Arianna Borrelli - 2013 - International Studies in the Philosophy of Science 27 (2):222-224.
  21.  24
    Aristotle on Splitting the Semantic Atom.John Thorp - 2009 - Apeiron 42 (2):153-166.
  22. The Jaynes-Cummings model and the one-atom-maser.H. Walther - 1993 - In E. T. Jaynes, Walter T. Grandy & Peter W. Milonni (eds.), Physics and probability: essays in honor of Edwin T. Jaynes. New York: Cambridge University Press. pp. 33.
     
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  23.  19
    Baroque tower on a gothic base: A Lakatosian reconstruction of students' and teachers' understanding of structure of the atom.Rafael Blanco & Mansoor Niaz - 1998 - Science & Education 7 (4):327-360.
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  24. Atoms in molecules as non-overlapping, bounded, space-filling open quantum systems.Richard F. W. Bader & Chérif F. Matta - 2012 - Foundations of Chemistry 15 (3):253-276.
    The quantum theory of atoms in molecules (QTAIM) uses physics to define an atom and its contribution to observable properties in a given system. It does so using the electron density and its flow in a magnetic field, the current density. These are the two fields that Schrödinger said should be used to explain and understand the properties of matter. It is the purpose of this paper to show how QTAIM bridges the conceptual gulf that separates the observations of (...)
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  25.  28
    Hardness of Al-based quasicrystals evaluated via cluster-plus-glue-atom model.Hua Chen, Lingjie Luo, Jianbing Qiang, Yingmin Wang & Chuang Dong - 2014 - Philosophical Magazine 94 (13):1463-1477.
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  26. The Case Against the Nuclear Atom.D. B. Larson - 1963
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  27.  25
    Alan F. Chalmers: The Scientist’s Atom and the Philosopher’s Stone: How Science Succeeded and Philosophy Failed to Gain Knowledge of Atoms.Michael R. Matthews - 2011 - Science & Education 20 (2):173-190.
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  28.  24
    On the interaction between a vacancy and self-interstitial atom clusters in metals.M. A. Puigví, N. de Diego, A. Serra, Yu N. Osetsky & D. J. Bacon - 2007 - Philosophical Magazine 87 (23):3501-3517.
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  29.  21
    Corroboration of a multiscale approach with all atom calculations in analysis of dislocation nucleation from surface steps.D. E. Segall, C. Li & G. Xu - 2006 - Philosophical Magazine 86 (32):5083-5101.
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  30.  32
    Studies of dislocations by field ion microscopy and atom probe tomography.G. D. W. Smith, D. Hudson, P. D. Styman & C. A. Williams - 2013 - Philosophical Magazine 93 (28-30):3726-3740.
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  31.  71
    The atom in the chemistry curriculum: Fundamental concept, teaching model or epistemological obstacle?Keith S. Taber - 2003 - Foundations of Chemistry 5 (1):43-84.
    Research into learners' ideas aboutscience suggests that school and collegestudents often hold alternative conceptionsabout `the atom'. This paper discusses whylearners acquire ideas about atoms which areincompatible with the modern scientificunderstanding. It is suggested that learners'alternative ideas derive – at least in part –from the way ideas about atoms are presented inthe school and college curriculum. Inparticular, it is argued that the atomicconcept met in science education is anincoherent hybrid of historical models, andthat this explains why learners commonlyattribute to atoms (...)
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  32. Werkstatt der Schöpfung: vom Atom zum Weltstaat.Georg Pick - 1966 - Prien am Chiemsee: A. Winkler.
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  33.  22
    Theory of solute clustering in materials for atom probe.Leigh T. Stephenson, Michael P. Moody & Simon P. Ringer - 2011 - Philosophical Magazine 91 (17):2200-2215.
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  34. Human atoms.Eric T. Olson - 1998 - Australasian Journal of Philosophy 76 (3):396-406.
    In this paper I shall explore a novel alternative to these familiar views. In his recent book Sub ects of Ex erience, E. J. Lowe argues, as many others have done before, that you and I are not animals. It follows from this, he says, that we must be simple substances without parts. That may sound like Cartesian dualism. But Lowe is no Cartesian. He argues from premises that many present-day materialists accept. And he claims that our being mereologically simple (...)
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  35.  12
    Atomic doctors: conscience and complicity at the dawn of the nuclear age.James L. Nolan - 2020 - Cambridge, Massachusetts: The Belknap Press of Harvard University Press.
    After his father passed away, James Nolan's mother gave him a box of materials that his dad had kept private. To Nolan's complete surprise, the contents revealed the role his grandfather had played as a doctor in the Manhattan Project. Dr. Nolan, it turned out, had been a significant figure. A talented radiologist, he cared for the scientists on the Project, helped organize the safety and evacuation plans for the Trinity Test at Alamogordo, escorted the "Little Boy" bomb from Los (...)
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  36. Atomic event concepts in perception, action and belief.Lucas Thorpe - 2022 - Journal of the American Philosophical Association 8 (1):110-127.
    Event concepts are unstructured atomic concepts that apply to event types. A paradigm example of such an event type would be that of diaper changing, and so a putative example of an atomic event concept would be DADDY'S-CHANGING-MY-DIAPER.1 I will defend two claims about such concepts. First, the conceptual claim that it is in principle possible to possess a concept such as DADDY'S-CHANGING-MY-DIAPER without possessing the concept DIAPER. Second, the empirical claim that we actually possess such concepts and that they (...)
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  37.  12
    Atomic order.Enrico Cantore - 1969 - Cambridge, Mass.,: MIT Press.
    The intention of Atomic Order is to encourage and contribute to the dialogue between philosophers and scientists by discussing a concrete example of scientific discovery according to a method acceptable and understandable to both sides. This discussion takes simultaneously into account the scientific and philosophical methodologies and mentalities. By regarding "pure" science or "pure" philosophy as limiting cases, it becomes evident that basic questions are best posed and answered by emphasiz ing the deeply embedded complementary relationship between the two. The (...)
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  38.  22
    The Atom Laser.John Cramer - unknown
    The words "atom laser" appearing in a science fiction magazine conjure up visions of death rays and space battles. The real device is rather different in its implications and ultimately is much less likely to be a weapon than a tool for probing the innermost secrets of Nature. Therefore, let's begin by reviewing some basic facts about quantum statistics and the ground rules for the operation of lasers.
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  39.  23
    Atomic Theory and Multiple Combining Proportions: The Search for Whole Number Ratios: Essay in Honour of Alan J. Rocke.Todd A. Brown & Melvyn C. Usselman - 2015 - Annals of Science 72 (2):153-169.
    SummaryJohn Dalton's atomic theory, with its postulate of compound formation through atom-to-atom combination, brought a new perspective to weight relationships in chemical reactions. A presumed one-to-one combination of atoms A and B to form a simple compound AB allowed Dalton to construct his first table of relative atomic weights from literature analyses of appropriate binary compounds. For such simple binary compounds, the atomic theory had little advantages over affinity theory as an explanation of fixed proportions by weight. For (...)
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  40. The atom in a molecule as a mereological construct in chemistry.N. Sukumar - 2012 - Foundations of Chemistry 15 (3):303-309.
    In this paper I discuss some consequences and manifestations of a mereology of structured wholes in chemistry, with particular reference to the concept of atoms in molecules.
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  41.  76
    Nietzsche's Brave New World of Force: On Nietzsche's 1873 "Time Atom Theory" Fragment and the Matter of Boscovich's Influence on Nietzsche.Keith Ansell Pearson - 2000 - Journal of Nietzsche Studies 20:5-33.
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  42.  91
    Atomicity and Causal Completeness.Zalán Gyenis & Miklós Rédei - 2014 - Erkenntnis 79 (3):1-15.
    The role of measure theoretic atomicity in common cause closedness of general probability theories with non-distributive event structures is raised and investigated. It is shown that if a general probability space is non-atomic then it is common cause closed. Conditions are found that entail that a general probability space containing two atoms is not common cause closed but it is common cause closed if it contains only one atom. The results are discussed from the perspective of the Common Cause (...)
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  43.  39
    Atomic mechanism of the Re and Ru strengthening effect on the γ-γ′ interface of Ni-based single-crystal superalloys: A first-principles study.K. Chen, L. Zhao & John Tse - 2003 - Philosophical Magazine 83 (14):1685-1698.
    A possible atomic mechanism underlying the Re- and Ru-induced strengthening effects on the n - n ' interface in Ni-based single-crystal superalloys has been investigated using the DMol3 molecular orbital package based on density functional theory. The calculation of bonding properties has been performed on a cluster designed to model Re and Ru strengthening effects within the interface. The stronger Re--Ni bonds are formed mainly as a result of d- hybridization, while the Ni--Ni bonding become weaker accompanying the Re substitution. (...)
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  44.  24
    Super-Atoms and Mystery Particles.John G. Cramer - unknown
    The path to a new discovery in physics is often a very twisted one. The subject of this Alternate View column is an example of this process. A major accelerator, built with with the prospect of discovering super-heavy elements, is now being used in an experiment to produce "super-atoms" with very large electric fields, and this work has quite unexpectedly revealed what looks like a new and mysterious particle. It is reminiscent of the SF of the 1930's where one of (...)
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  45.  25
    Patricia Fara. An Entertainment for Angels: Electricity in the Enlightenment. . 177 pp., illus., bibl., notes. New York: Columbia University Press, 2002. $19.50 .Jeff Hughes. The Manhattan Project: Big Science and the Atom Bomb. 170 pp., illus., bibl. New York: Columbia University Press, 2002. $19.50 .John Waller. The Discovery of the Germ: Twenty Years That Transformed the Way We Think about Disease. 197 pp., illus., bibl. New York: Columbia University Press, 2002. $19.50. [REVIEW]Marjorie C. Malley - 2006 - Isis 97 (3):546-547.
  46.  29
    Alan Chalmers, The Scientist's Atom and the Philosopher's Stone: How Science Succeeded and Philosophy Failed to Gain Knowledge of Atoms. Heidelberg, London and New York: Springer, 2009. Pp xii+287. ISBN 978-90-481-2361-2. £90.00. [REVIEW]Seth Suman - 2011 - British Journal for the History of Science 44 (3):463-465.
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  47.  69
    Book Review:The Nature of the Atom G. K. T. Conn; The Nature of Crystals A. G. Ward; The Wave Nature of the Electron G. K. T. Conn; The Cyclotron W. B. Mann. [REVIEW]M. M. W. - 1940 - Philosophy of Science 7 (3):387-.
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  48. Atom and aether in nineteenth-century physical science.Alan F. Chalmers - 2008 - Foundations of Chemistry 10 (3):157-166.
    This paper suggests that the cases made for atoms and the aether in nineteenth-century physical science were analogous, with the implication that the case for the atom was less than compelling, since there is no aether. It is argued that atoms did not play a productive role in nineteenth-century chemistry any more than the aether did in physics. Atoms and molecules did eventually find an indispensable home in chemistry but by the time that they did so they were different (...)
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  49. Atom's empirical eve: Methodological disputes and how to evaluate them.Peter Achinstein - 2007 - Perspectives on Science 15 (3):359-390.
    : This paper examines the debate in the late 19th and early 20th centuries over the acceptability of atomic and molecular physics. It focuses on three prominent figures: Maxwell, who defended atomic physics, Ostwald, who initially rejected it but changed his mind as a result of experiments by Thomson and Perrin, and Duhem, who never accepted it. Each scientist defended the position he did in the light of strongly held methodological views concerning empirical evidence. The paper critically evaluates each of (...)
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  50.  35
    Atomic guildswomen.Redell Olsen - 2017 - Angelaki 22 (3):149-153.
    Atomic Guildswomen is a hybrid poem-essay that combines art writing and critical reflection on the contexts and sources initially suggested by “A Provisional Memorial to Nuclear Disarmament” by the artist David Mabb. The ironies implicit in the choice of a William Morris fabric design to decorate the interiors of Vanguard Class nuclear-powered ballistic missile submarines by the Ministry of Defence are explored alongside the history and writings of the women's peace movement in the United Kingdom – especially those of the (...)
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