Results for 'Particle physics'

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  1.  49
    Elementary particle physics from general relativity.Mendel Sachs - 1981 - Foundations of Physics 11 (3-4):329-354.
    This paper presents a qualitative comparison of opposing views of elementary matter—the Copenhagen approach in quantum mechanics and the theory of general relativity. It discusses in detail some of their main conceptual differences, when each theory is fully exploited as a theory of matter, and it indicates why each of these theories, at its presently accepted state, is incomplete without the other. But it is then argued on logical grounds that they cannot be fused, thus indicating the need for a (...)
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  2. Reflecting Particle Physics. On the relationship between the natural sciences and the humanities in the research group "The Epistemology of the Large Hadron Collider" (Manuscript).Gregor Schiemann - manuscript
  3. Taking particle physics seriously: A critique of the algebraic approach to quantum field theory.David Wallace - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 42 (2):116-125.
    I argue against the currently prevalent view that algebraic quantum field theory (AQFT) is the correct framework for philosophy of quantum field theory and that “conventional” quantum field theory (CQFT), of the sort used in mainstream particle physics, is not suitable for foundational study. In doing so, I defend that position that AQFT and CQFT should be understood as rival programs to resolve the mathematical and physical pathologies of renormalization theory, and that CQFT has succeeded in this task (...)
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  4.  56
    Scientific Realism in Particle Physics: A Causal Approach.Matthias Egg - 2014 - De Gruyter.
    Does particle physics really describe the basic constituents of the material world or is it just a useful tool for deriving empirical predictions? This book proposes a novel answer to that question, emphasizing the importance of causal reasoning for the justification of scientific claims. It thereby responds to general worries about scientific realism as well as to more specific challenges stemming from the interpretation of quantum physics.
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  5.  25
    Elementary Particle Physics in a Nutshell.Christopher G. Tully - 2011 - Princeton University Press.
    The new experiments underway at the Large Hadron Collider at CERN in Switzerland may significantly change our understanding of elementary particle physics and, indeed, the universe.
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  6.  32
    Phenomenology of particle physics.André Rubbia - 2022 - New York, NY: Cambridge University Press.
    Particle physics intertwines theory and experiments, and this text demonstrates and develops the interplay between the two, following the author's detailed and original approach. This complete and comprehensive treatise, written for a two-semester Master's or graduate course, covers all aspects of modern particle physics. Richly illustrated with more than 450 figures, this text guides students through all the intricacies of quantum mechanics and quantum field theory in an intuitive manner that few books achieve. Featuring rigorous step-by-step (...)
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  7. Philosophy of Particle Physics.Porter Williams - 2023 - Cambridge University Press.
    This Element offers an introduction to selected philosophical issues that arise in contemporary particle physics, aimed at philosophers who have limited prior exposure to quantum field theory. One the one hand, it critically surveys philosophical work on the representation of particles in quantum field theory, the formal machinery and conceptual implications of renormalization and renormalization group methods, and ontological and methodological questions raised by the use of effective field theory techniques in particle physics. On the other, (...)
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  8. Some Philosophical Aspects of Particle Physics.M. L. G. Redhead - 1980 - Studies in History and Philosophy of Science Part A 11 (4):279.
    The paper is concerned with explaining some of the principal theoretical developments in elementary particle physics and discussing the associated methodological problems both in respect of heuristics and appraisal. Particular reference is made to relativistic quantum field theory, renormalization, Feynman diagram techniques, the analytic S-matrix and the Chew — Frautschi bootstrap.
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  9. Many-Particle Physics: Calculational Complications That Become a Blessing for Methodology in Imre Lakatos and Theories of Scientific Change.Y. Goudaroulis - 1989 - Boston Studies in the Philosophy of Science 111:135-145.
     
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  10. Inferring conservation laws in particle physics: A case study in the problem of induction.Oliver Schulte - 2000 - British Journal for the Philosophy of Science 51 (4):771-806.
    This paper develops a means–end analysis of an inductive problem that arises in particle physics: how to infer from observed reactions conservation principles that govern all reactions among elementary particles. I show that there is a reliable inference procedure that is guaranteed to arrive at an empirically adequate set of conservation principles as more and more evidence is obtained. An interesting feature of reliable procedures for finding conservation principles is that in certain precisely defined circumstances they must introduce (...)
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  11.  55
    Exchange Forces in Particle Physics.Gregg Jaeger - 2021 - Foundations of Physics 51 (1):1-31.
    The operation of fundamental forces in quantum field theory is explicated here as the exchange of particles, consistently with the standard methodology of particle physics. The particles involved are seen to bear little relation to any classical particle but, rather, comprise unified collections of compresent, conserved quantities indicated by propagators. The exchange particles, which supervene upon quantum fields, are neither more fundamental than fields nor replace them as has often previously been assumed in models of exchange forces. (...)
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  12.  23
    Spontaneous Symmetry Breaking in Particle Physics : Invited Lecture Given at Sugimoto Campus, Osaka City University on June 14, 2009.Hiroshi Itoyama - 2010 - Journal of the Japan Association for Philosophy of Science 37 (2):87-94.
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  13.  90
    Particle physics after the Higgs discovery: Philosophical perspectives.Simon Friederich & Dennis Lehmkuhl - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 51:69-70.
  14. Causal Warrant for Realism about Particle Physics.Matthias Egg - 2012 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 43 (2):259-280.
    While scientific realism generally assumes that successful scientific explanations yield information about reality, realists also have to admit that not all information acquired in this way is equally well warranted. Some versions of scientific realism do this by saying that explanatory posits with which we have established some kind of causal contact are better warranted than those that merely appear in theoretical hypotheses. I first explicate this distinction by considering some general criteria that permit us to distinguish causal warrant from (...)
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  15.  11
    Validation of Particle Physics Simulation.Peter Mättig - 2019 - In Claus Beisbart & Nicole J. Saam, Computer Simulation Validation: Fundamental Concepts, Methodological Frameworks, and Philosophical Perspectives. Springer Verlag. pp. 631-660.
    The procedures of validating computer simulations of particle physicsParticle physics events at the LHCLarge Hadron Collider are summarized. Because of the strongly fluctuating particle content of LHC events and detectorDetector interactions, particle-based Monte Carlo methods are an indispensable tool for dataData analysis analysis. Simulation in particle physicsParticle physics is founded on factorizationFactorization and thus its global validation can be realized by validating each individual step in the simulation. This can be accomplished by drawing on (...)
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  16.  27
    9 Particle Physics without Particles? On Causal Realism in Quantum Field Theory.Matthias Egg - 2014 - In Scientific Realism in Particle Physics: A Causal Approach. De Gruyter. pp. 149-174.
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  17. Ontic Structuralism and the Symmetries of Particle Physics.Aharon Kantorovich - 2009 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 40 (1):73-84.
    According to structural realism, in mature science there is structural continuity along theoretical change. A major counterexample to this thesis is the transition from the Eightfold Way to the Standard Model in particle physics. Nevertheless, the notion of structure is significantly important in comprehending the theoretical picture of particle physics, where particles change and undergo transmutations, while the only thing which remains unchanged is the basic structure, i.e. the symmetry group which controls the transmutations. This kind (...)
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  18.  48
    Probing the Vacuum of Particle Physics with Precise Laser Interferometry.Maurizio Consoli - 2015 - Foundations of Physics 45 (1):22-43.
    The discovery of the Higgs boson at LHC confirms that what we experience as empty space should actually be thought as a condensate of elementary quanta. This condensate characterizes the physically realized form of relativity and could play the role of preferred reference frame in a modern Lorentzian approach. This observation suggests a new interpretative scheme to understand the unexplained residuals in the old ether-drift experiments where light was still propagating in gaseous systems. Differently from present vacuum experiments, where anyhow (...)
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  19.  11
    Socio-Cultural Aspects of the Standard Model in Elementary Particles Physics and the History of Its Creation.Vladimir P. Vizgin - 2020 - Epistemology and Philosophy of Science 57 (3):160-175.
    The article соnsiders the socio-cultural aspects of the standard model (SM) in elementary particle physics and history of its creation. SM is a quantum field gauge theory of electromagnetic, weak and strong interactions, which is the basis of the modern theory of elementary particles. The process of its elaboration covers a twenty-year period: from 1954 (the concept of gauge fields by C. Yang and R. Mills) to the early 1970s., when the construction of renormalized quantum chromodynamics and electroweak (...)
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  20. The Strong and Weak Senses of Theory-Ladenness of Experimentation: Theory-Driven versus Exploratory Experiments in the History of High-Energy Particle Physics.Koray Karaca - 2013 - Science in Context 26 (1):93-136.
    ArgumentIn the theory-dominated view of scientific experimentation, all relations of theory and experiment are taken on a par; namely, that experiments are performed solely to ascertain the conclusions of scientific theories. As a result, different aspects of experimentation and of the relations of theory to experiment remain undifferentiated. This in turn fosters a notion of theory-ladenness of experimentation (TLE) that is toocoarse-grainedto accurately describe the relations of theory and experiment in scientific practice. By contrast, in this article, I suggest that (...)
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  21. How to take particle physics seriously: A further defence of axiomatic quantum field theory.Doreen Fraser - 2011 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 42 (2):126-135.
    Further arguments are offered in defence of the position that the variant of quantum field theory (QFT) that should be subject to interpretation and foundational analysis is axiomatic quantum field theory. I argue that the successful application of renormalization group (RG) methods within alternative formulations of QFT illuminates the empirical content of QFT, but not the theoretical content. RG methods corroborate the point of view that QFT is a case of the underdetermination of theory by empirical evidence. I also urge (...)
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  22. Missing experimental challenges to the Standard Model of particle physics.Slobodan Perovic - 2011 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 42 (1):32-42.
    The success of particle detection in high energy physics colliders critically depends on the criteria for selecting a small number of interactions from an overwhelming number that occur in the detector. It also depends on the selection of the exact data to be analyzed and the techniques of analysis. The introduction of automation into the detection process has traded the direct involvement of the physicist at each stage of selection and analysis for the efficient handling of vast amounts (...)
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  23. Priority and Particle Physics: Ontic Structural Realism as a Fundamentality Thesis.Kerry McKenzie - 2014 - British Journal for the Philosophy of Science 65 (2):353-380.
    In this article, I address concerns that the ontological priority claims definitive of ontic structural realism are as they stand unclear, and I do so by placing these claims on a more rigorous formal footing than they typically have been hitherto. I first of all argue that Kit Fine’s analysis of ontological dependence furnishes us with an ontological priority relation that is particularly apt for structuralism. With that in place, and with reference to two case studies prominent within the structuralist (...)
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  24.  76
    Review of particle physics[REVIEW]C. Patrignani, K. Agashe, G. Aielli, C. Amsler, M. Antonelli, D. M. Asner, H. Baer, S. Banerjee, R. M. Barnett, T. Basaglia, C. W. Bauer, J. J. Beatty, V. I. Belousov, J. Beringer, S. Bethke, H. Bichsel, O. Biebel, E. Blucher, G. Brooijmans, O. Buchmueller, V. Burkert, M. A. Bychkov, R. N. Cahn, M. Carena, A. Ceccucci, A. Cerri, D. Chakraborty, M. C. Chen, R. S. Chivukula, K. Copic, G. Cowan, O. Dahl, G. D'Ambrosio, T. Damour, D. De Florian, A. De Gouvêa, T. DeGrand, P. De Jong, G. Dissertori, B. A. Dobrescu, M. D'Onofrio, M. Doser, M. Drees, H. K. Dreiner, P. da DwyerEerola, S. Eidelman, J. Ellis, J. Erler, V. V. Ezhela, W. Fetscher, B. D. Fields, B. Foster, A. Freitas, H. Gallagher, L. Garren, H. J. Gerber, G. Gerbier, T. Gershon, T. Gherghetta, A. A. Godizov, M. Goodman, C. Grab, A. V. Gritsan, C. Grojean, M. de GroomGrünewald, A. Gurtu, T. Gutsche, H. E. Haber, K. Hagiwara, C. Hanhart, S. Hashimoto, Y. Hayato, K. G. Hayes, A. Hebecker, B. Heltsley, J. J. Hernández-Rey, K. Hikasa, J. Hisano, A. Höcker, J. Holder, A. Holtkamp, J. Huston, T. Hyodo, K. Irwin & Jackson - unknown
    © 2016 Regents of the University of California.The Review summarizes much of particle physics and cosmology. Using data from previous editions, plus 3,062 new measurements from 721 papers, we list, evaluate, and average measured properties of gauge bosons and the recently discovered Higgs boson, leptons, quarks, mesons, and baryons. We summarize searches for hypothetical particles such as supersymmetric particles, heavy bosons, axions, dark photons, etc. All the particle properties and search limits are listed in Summary Tables. We (...)
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  25. Kant, Schlick and Friedman on Space, Time and Gravity in Light of Three Lessons from Particle Physics.J. Brian Pitts - 2018 - Erkenntnis 83 (2):135-161.
    Kantian philosophy of space, time and gravity is significantly affected in three ways by particle physics. First, particle physics deflects Schlick’s General Relativity-based critique of synthetic a priori knowledge. Schlick argued that since geometry was not synthetic a priori, nothing was—a key step toward logical empiricism. Particle physics suggests a Kant-friendlier theory of space-time and gravity presumably approximating General Relativity arbitrarily well, massive spin-2 gravity, while retaining a flat space-time geometry that is indirectly observable (...)
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  26. Philosophical problems of elementary particle physics.I. V. Kuznet︠s︡ov & M. E. Omelʹi︠a︡novsʹkyĭ (eds.) - 1965 - Jerusalem,: Israel Program for Scientific Translations.
     
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  27. Unobservability of short-lived particles: ground for skepticism about observational claims in elementary particle physics.Marcoen J. T. F. Cabbolet - manuscript
    The physics literature contains many claims that elementary particles have been observed: such observational claims are, of course, important for the development of existential knowledge. Regarding claimed observations of short-lived unstable particles in particular, the use of the word 'observation' is based on the convention in physics that the observation of a short-lived unstable particle can be claimed when its predicted decay products have been observed with a significance of 5 sigma. This paper, however, shows that this (...)
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  28. The priority of internal symmetries in particle physics.Aharon Kantorovich - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (4):651-675.
    In this paper, I try to decipher the role of internal symmetries in the ontological maze of particle physics. The relationship between internal symmetries and laws of nature is discussed within the framework of “Platonic realism.” The notion of physical “structure” is introduced as representing a deeper ontological layer behind the observable world. I argue that an internal symmetry is a structure encompassing laws of nature. The application of internal symmetry groups to particle physics came about (...)
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  29.  25
    Staying On-shell: Manifest Properties and Reformulations in Particle Physics.Josh Hunt - 2024 - Synthese 204 (4):1-25.
    The empirical success of particle physics rests largely on an approximation method: perturbation theory. Yet even within perturbative quantum field theory, there are a variety of different formulations. This variety teaches us that reformulating approximation methods can provide a tremendous source of progress in science. Along with enabling the solution of otherwise intractable problems, reformulations clarify what we need to know to obtain solutions, which can in turn make previously hidden properties manifest. To develop these lessons, I compare (...)
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  30.  10
    Ahead of Evidence: Computer Simulation and Epistemic Risks in Particle Physics.Marianne van Panhuys & Rafaela Hillerbrand - 2025 - Perspectives on Science 33 (1):65-87.
    In present-day particle physics, empirical reasoning is highly inferential as experiments rely on complex instruments and an intensive use of computer-based methods. This paper investigates how these methods impact the evidential status of the data produced, using an expanded epistemic risk framework. Based on a case study from a top-quark physics experiment, we clarify the relationship between inductive and other epistemic risks. We argue that various epistemic risks that arise ahead of evidence affect the inductive risk of (...)
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  31.  40
    The Birth of Particle Physics In Spain.Víctor Navarro-Brotóns, Jorge Velasco González & José Doménech Torres - 2005 - Minerva 43 (2):183-196.
    Experimental high-energy and nuclear physics was created in Spain thanks to Joaquín Catalá de Alemany, who founded the Institute of Corpuscular Physics (IFIC) at the University of Valencia in 1950. The physics of photographic emulsions, cheap and easy to manipulate, were well adapted to the depressed situation in Spain following the Civil War. This essay describes how, using these techniques, Catalá de Alemany created a group, established links with international laboratories, and fostered a tradition that continues today.
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  32. Constructing Quarks: A sociological history of particle physics.Andrew Pickering - 1984 - University of Chicago Press.
    Inviting a reappraisal of the status of scientific knowledge, Andrew Pickering suggests that scientists are not mere passive observers and reporters of nature.
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  33. Quanta: The Toll of Unacknowledged Metaphysics'(joint paper with P. Teller).Particle Lables Particles - 1991 - Foundations of Physics 21:43-62.
  34.  32
    Progress and Gravity: Overcoming Divisions between General Relativity and Particle Physics and between Physics and HPS.J. Brian Pitts - 2017 - In Khalil Chamcham, John Barrow, Simon Saunders & Joe Silk, The Philosophy of Cosmology. Cambridge, United Kingdom: Cambridge University Press. pp. 263-282.
    Reflective equilibrium between physics and philosophy, and between GR and particle physics, is fruitful and rational. I consider the virtues of simplicity, conservatism, and conceptual coherence, along with perturbative expansions. There are too many theories to consider. Simplicity supplies initial guidance, after which evidence increasingly dominates. One should start with scalar gravity; evidence required spin 2. Good beliefs are scarce, so don't change without reason. But does conservatism prevent conceptual innovation? No: considering all serious possibilities could lead (...)
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  35. Philosophical problems of elementary particle physics, de IV Kuznetsov y ME Omel'Yanovskii.Pascual Casañ Muñoz - 1973 - Teorema: International Journal of Philosophy 3 (4):591-594.
     
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  36. Andrew Pickering, "Constructing Quarks. A Sociological History of Particle Physics".Roberto Torretti - 1986 - Diálogos. Revista de Filosofía de la Universidad de Puerto Rico 21 (47):183.
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  37. Research guiding principles in modern physics: Case studies in elementary particle physics.K. Gavroglu - 1976 - Zeitschrift Für Allgemeine Wissenschaftstheorie 7 (2):223-248.
    Summary Some case studies in elementary particle physics are presented in this work, that can be used for the critical appraisal of specific criteria which were proposed to account for the development of Heisenberg's work. It is attempted to define the philosophical problems associated with and emerging from the structures of theories, rather than analyse the philosophical aspects of concepts used in elementary particle physics. This necessitates the discussion of the relationship between theory and experiment, and (...)
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  38.  19
    A new theorem in particle physics enabled by machine discovery.Raúl E. Valdés-Pérez - 1996 - Artificial Intelligence 82 (1-2):331-339.
  39.  60
    The Strong and Weak Senses of Theory-Ladenness of Experimentation: Theory-Driven versus Exploratory Experiments in the History of High-Energy Particle Physics – ERRATUM.Koray Karaca - 2013 - Science in Context 26 (4):665-666.
    In the theory-dominated view of scientific experimentation, all relations of theory and experiment are taken on a par; namely, that experiments are performed solely to ascertain the conclusions of scientific theories. As a result, different aspects of experimentation and of the relation of theory to experiment remain undifferentiated. This in turn fosters a notion of theory-ladenness of experimentation that is too coarse-grained to accurately describe the relations of theory and experiment in scientific practice. By contrast, in this article, I suggest (...)
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  40.  20
    Time in Particle Physics.J. G. Taylor - 1972 - In J. T. Fraser, F. C. Haber & G. H. Mueller, The Study of Time. Springer Verlag. pp. 53--58.
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  41.  14
    Intermittency in particle physics.R. Peschanski - 1995 - In Robert J. Russell, Nancey Murphy & Arthur R. Peacocke, Chaos and Complexity. Vatican Observatory Publications. pp. 155.
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  42. Supernatural Resurrection and its Incompatibility with the Standard Model of Particle Physics: Second Rejoinder to Stephen T. Davis.Robert Greg Cavin & Carlos A. Colombetti - 2021 - Socio-Historical Examination of Religion and Ministry 3 (2):253-277.
    In response to Stephen Davis’s criticism of our previous essay, we revisit and defend our arguments that the Resurrection hypothesis is logically incompatible with the Standard Model of particle physics—and thus is maximally implausible—and that it cannot explain the sensory experiences of the Risen Jesus attributed to various witnesses in the New Testament—and thus has low explanatory power. We also review Davis’s reply, noting that he evades our arguments, misstates their conclusions, and distracts the reader with irrelevancies regarding, (...)
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  43. From the mendeleev periodic table to particle physics and back to the periodic table.Maurice R. Kibler - 2007 - Foundations of Chemistry 9 (3):221-234.
    We briefly describe in this paper the passage from Mendeleev’s chemistry (1869) to atomic physics (in the 1900’s), nuclear physics (in 1932) and particle physics (from 1953 to 2006). We show how the consideration of symmetries, largely used in physics since the end of the 1920’s, gave rise to a new format of the periodic table in the 1970’s. More specifically, this paper is concerned with the application of the group SO(4,2)⊗SU(2) to the periodic table (...)
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  44.  45
    Underconsideration in Space-time and Particle Physics.J. Brian Pitts - unknown
    The idea that a serious threat to scientific realism comes from unconceived alternatives has been proposed by van Fraassen, Sklar, Stanford and Wray among others. Peter Lipton's critique of this threat from underconsideration is examined briefly in terms of its logic and its applicability to the case of space-time and particle physics. The example of space-time and particle physics indicates a generic heuristic for quantitative sciences for constructing potentially serious cases of underdetermination, involving one-parameter family of (...)
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  45. The development of renormalization group methods for particle physics: Formal analogies between classical statistical mechanics and quantum field theory.Doreen Fraser - 2020 - Synthese 197 (7):3027-3063.
    Analogies between classical statistical mechanics and quantum field theory played a pivotal role in the development of renormalization group methods for application in the two theories. This paper focuses on the analogies that informed the application of RG methods in QFT by Kenneth Wilson and collaborators in the early 1970's. The central task that is accomplished is the identification and analysis of the analogical mappings employed. The conclusion is that the analogies in this case study are formal analogies, and not (...)
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  46.  90
    Atomism and the illusion of crisis: The danger of applying Kuhnian categories to current particle physics.R. E. Hendrick & Anthony Murphy - 1981 - Philosophy of Science 48 (3):454-468.
    This paper responds to a recent claim by Shrader-Frechette that current particle physics, with its essentially atomist paradigm, is in a state of Kuhnian crisis. We respond to Shrader-Frechette's claim in two ways: first, we argue directly against much of the evidence used by Shrader-Frechette as indicators of Kuhnian crisis; second, we question Shrader-Frechette's application of Kuhnian categories to current research in general, pointing out the dangers inherent in such an analysis.
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  47. Constructing Quarks: A Sociological History of Particle Physics.Andrew Pickering - 1990 - Synthese 82 (1):163-174.
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  48.  68
    Multiplex and Unfolding: Computer Simulation in Particle Physics.Martina Merz - 1999 - Science in Context 12 (2):293-316.
    The ArgumentWhat kind of objects are computer programs used for simulation purposes in scientific settings? The current investigation treats a special case. It focuses on “event generators,” the program packages that particle physicists construct and use to simulate mechanisms of particle production. The paper is an attempt to bring the multiplex and unfolding character of such knowledge objects to the fore: Multiple meanings and functions are embodied in the object and can be drawn out selectively according to the (...)
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  49. Scanning the Invisible: Framing Diagrammatic Cognition in Experimental Particle Physics.Javier Anta - 2018 - In Peter Chapman, Gem Stapleton, Amirouche Moktefi, Sarah Perez-Kriz & Francesco Bellucci, Diagrammatic Representation and Inference10th International Conference, Diagrams 2018, Edinburgh, UK, June 18-22, 2018, Proceedings. Cham, Switzerland: Springer-Verlag.
    In this study I aim to develop a cognitive evaluation of how semantically-driven and rule-based diagrammatic reasoning were psychologically plausible for partic-ular cases of scientific practice: an actual trackless path reconstruction in bubble chamber experiments, as reported by Galison (1997). I will propose “cognitive imagery projection and manipulation” (CIPM) as the most plausible psychologi-cal (perceptual/attentional/cognitive) mechanism matching the specific explanatory requirements for the case study, outlining the most significant current theories about this mental phenomenon (Shimojima; 2011).
     
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  50.  13
    Computer simulation in data analysis: A case study from particle physics.Brigitte Falkenburg - 2024 - Studies in History and Philosophy of Science Part A 105 (C):99-108.
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