Results for 'high energy physics'

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  1.  85
    High energy physics and constructive empiricism.Richard Dawid - unknown
    Progress in elementary particle physics in recent decades has changed the status of the visible phenomena in the context of scientific research. Empiricist positions in philosophy of science, which put particular emphasis on the pre-eminence of the visible regime, are affected by this development. In spite of its less radical claims, constructive empiricism turns out to run into more serious problems than straightforward instrumentalism. The constructive empiricist’s emphasis on the scientist’s aims makes it essential for her to provide a (...)
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  2.  43
    High Energy Physics and the Marginalization of The Phenomena.Richard Dawid - 2010 - Manuscrito 33 (1):165-206.
    It is argued that the evolution of fundamental microphysics throughout the twentieth century is characterised by two interrelated developments. On the one hand, the experimental signatures which confirm theoretical statements are moving towards the fringes of the phenomenal world and, at the same time, leave increasingly wide spaces for entirely theoretical reasoning with little or no empirical interference. On the other hand, assessments of limitations to scientific underdetermination gain importance within the theoretical process.
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  3.  57
    Scientific Realism and High Energy Physics.Richard Dawid - 2018 - In Juha Saatsi (ed.), The Routledge Handbook of Scientific Realism. Routledge. pp. 279-290.
    The paper discusses major implications of high energy physics for the scientific realism debate. The first part analyses the ways in which aspects of the empirically well-confirmed standard model of particle physics are relevant for a reassessment of entity realism, ontological realism and structural realism. The second part looks at the implications of more far-reaching concepts like string theory. While those theories have not found empirical confirmation, if they turned out viable, their implications for the realism (...)
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  4. Computer Simulations, Machine Learning and the Laplacean Demon: Opacity in the Case of High Energy Physics.Florian J. Boge & Paul Grünke - forthcoming - In Andreas Kaminski, Michael Resch & Petra Gehring (eds.), The Science and Art of Simulation II.
    In this paper, we pursue three general aims: (I) We will define a notion of fundamental opacity and ask whether it can be found in High Energy Physics (HEP), given the involvement of machine learning (ML) and computer simulations (CS) therein. (II) We identify two kinds of non-fundamental, contingent opacity associated with CS and ML in HEP respectively, and ask whether, and if so how, they may be overcome. (III) We address the question of whether any kind (...)
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  5.  19
    The Statistical Philosophy of High Energy Physics: Pragmatism.Kent Staley - unknown
    The recent discovery of a Higgs boson prompted increased attention of statisticians and philosophers of science to the statistical methodology of High Energy Physics. Amidst long-standing debates within the field, HEP has adopted a mixed statistical methodology drawing upon both frequentist and Bayesian methods, but with standard frequentist techniques such as significance testing and confidence interval estimation playing a primary role. Physicists within HEP typically deny that their methodological decisions are guided by philosophical convictions, but are instead (...)
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  6.  84
    The Jeffreys–Lindley paradox and discovery criteria in high energy physics.Robert D. Cousins - 2017 - Synthese 194 (2):395-432.
    The Jeffreys–Lindley paradox displays how the use of a \ value ) in a frequentist hypothesis test can lead to an inference that is radically different from that of a Bayesian hypothesis test in the form advocated by Harold Jeffreys in the 1930s and common today. The setting is the test of a well-specified null hypothesis versus a composite alternative. The \ value, as well as the ratio of the likelihood under the null hypothesis to the maximized likelihood under the (...)
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  7.  6
    Relativity and high energy physics.W. G. V. Rosser - 1969 - London,: Wykeham Publications. Edited by R. K. McCulloch.
  8.  10
    What Composition of High-Energy Physics Collaborations is Epistemically Optimal?Vitaly Pronskikh - 2022 - Social Epistemology 36 (4):502-515.
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  9.  19
    Symmetry, beauty and belief in high-energy physics.Arianna Borrelli - 2017 - Approaching Religion 7 (2):22-36.
    This paper engages with the aesthetics of knowl-edge, both in its sense as the connection between knowledge and ‘aesthetic’ judgements of beauty, or ugliness, and of the many ‘aesthetic’ – that is to say sensually perceivable – dimensions of knowledge, which are always to be seen to be constituting an epistemic factor in its production and consumption. On the one hand I analyse how in recent decades the connection between beauty and truth has been systematically employed to both inspire and (...)
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  10. Models and methodologies in current theoretical high-energy physics.James T. Cushing - 1982 - Synthese 50 (1):5 - 101.
    A case study of the development of quantum field theory and of S-matrix theory, from their inceptions to the present, is presented. The descriptions of science given by Kuhn and by Lakatos are compared and contrasted as they apply to this case study. The episodes of the developments of these theories are then considered as candidates for competing research programs in Lakatos' methodology of scientific research programs. Lakatos' scheme provides a reasonable overall description and a plausible assessment of the relative (...)
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  11.  41
    Epistemic Cultures in Conflict: The Case of Astronomy and High Energy Physics.Richard Heidler - 2017 - Minerva 55 (3):249-277.
    The article presents an in-depth analysis of epistemic cultures in conflict by exemplifying the epistemic conflict between high energy physics and astronomy which emerged after the discovery of “dark energy” and the accelerating expansion of the universe. It suggests a theoretical framework combining Knorr-Cetina’s concept of epistemic cultures with Whitley’s theory of dependencies in the sciences system, which explains that epistemic conflicts occur, if the strategic and functional dependency of two incommensurable epistemic cultures is suddenly growing. (...)
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  12. Machine learning in scientific grant review: algorithmically predicting project efficiency in high energy physics.Vlasta Sikimić & Sandro Radovanović - 2022 - European Journal for Philosophy of Science 12 (3):1-21.
    As more objections have been raised against grant peer-review for being costly and time-consuming, the legitimate question arises whether machine learning algorithms could help assess the epistemic efficiency of the proposed projects. As a case study, we investigated whether project efficiency in high energy physics can be algorithmically predicted based on the data from the proposal. To analyze the potential of algorithmic prediction in HEP, we conducted a study on data about the structure and outcomes of HEP (...)
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  13.  59
    The case of the composite Higgs: The model as a “Rosetta stone” in contemporary high-energy physics.Arianna Borrelli - 2012 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 43 (3):195-214.
    This paper analyses the practice of model-building “beyond the Standard Model” in contemporary high-energy physics and argues that its epistemic function can be grasped by regarding models as mediating between the phenomenology of the Standard Model and a number of “theoretical cores” of hybrid character, in which mathematical structures are combined with verbal narratives and analogies referring back to empirical results in other fields . Borrowing a metaphor from a physics research paper, model-building is likened to (...)
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  14.  38
    What is a data model?: An anatomy of data analysis in high energy physics.Antonis Antoniou - 2021 - European Journal for Philosophy of Science 11 (4):1-33.
    Many decades ago Patrick Suppes argued rather convincingly that theoretical hypotheses are not confronted with the direct, raw results of an experiment, rather, they are typically compared with models of data. What exactly is a data model however? And how do the interactions of particles at the subatomic scale give rise to the huge volumes of data that are then moulded into a polished data model? The aim of this paper is to answer these questions by presenting a detailed case (...)
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  15.  91
    Pragmatic warrant for frequentist statistical practice: the case of high energy physics.Kent W. Staley - 2017 - Synthese 194 (2).
    Amidst long-running debates within the field, high energy physics has adopted a statistical methodology that primarily employs standard frequentist techniques such as significance testing and confidence interval estimation, but incorporates Bayesian methods for limited purposes. The discovery of the Higgs boson has drawn increased attention to the statistical methods employed within HEP. Here I argue that the warrant for the practice in HEP of relying primarily on frequentist methods can best be understood as pragmatic, in the sense (...)
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  16.  10
    Program FAKE: Monte Carlo Event Generators as Tools of Theory in Early High Energy Physics.Arianna Borrelli - 2019 - NTM Zeitschrift für Geschichte der Wissenschaften, Technik und Medizin 27 (4):479-514.
    The term Monte Carlo method indicates any computer-aided procedure for numerical estimation that combines mathematical calculations with randomly generated numerical input values. Today it is an important tool in high energy physics while physicists and philosophers also often consider it a sort of virtual experiment. The Monte Carlo method was developed in the 1940s, in the context of U.S. American nuclear weapons research, an event often regarded as the origin of both computer simulation and “artificial reality” (Galison (...)
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  17.  51
    Order out of Chaos? A Case Study in High Energy Physics.Rafaela Hillerbrand - 2012 - Studia Philosophica Estonica 5 (2):61-78.
    In recent years, computational sciences such as computational hydrodynamics or computational field theory have supplemented theoretical and experimental investigations in many scientific fields. Often, there is a seemingly fruitful overlap between theory, experiment, and numerics. The computational sciences are highly dynamic and seem a fairly successful endeavor---at least if success is measured in terms of publications or engineering applications. However, for theories, success in application and correctness are two very different things; and just the same may hold for "methodologies" like (...)
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  18. Heisenberg’s Uncertainty Relation and Bell Inequalities in High Energy Physics: An effective formalism for unstable two-state systems.Antonio Di Domenico, Andreas Gabriel, Beatrix C. Hiesmayr, Florian Hipp, Marcus Huber, Gerd Krizek, Karoline Mühlbacher, Sasa Radic, Christoph Spengler & Lukas Theussl - 2012 - Foundations of Physics 42 (6):778-802.
    An effective formalism is developed to handle decaying two-state systems. Herewith, observables of such systems can be described by a single operator in the Heisenberg picture. This allows for using the usual framework in quantum information theory and, hence, to enlighten the quantum features of such systems compared to non-decaying systems. We apply it to systems in high energy physics, i.e. to oscillating meson–antimeson systems. In particular, we discuss the entropic Heisenberg uncertainty relation for observables measured at (...)
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  19.  17
    Science policy and politics in post-war Japan: the establishment of the KEK high energy physics laboratory.Satio Hayakawa & Morris F. Low - 1991 - Annals of Science 48 (3):207-229.
    This paper provides a detailed account of the prehistory of the KEK National Laboratory for High Energy Physics at Tsukuba in Japan. Attempts to establish Japan's first truly national laboratory marked the beginning of ‘big science’ in Japan. An examination of the debate and decision-making processes, which spanned over a decade, provide insight into the political aspects of policy making in the post-war period. History shows that even in Japan, self-interest has taken precedence over group interests in (...)
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  20. Scientific realism and experimental practice in high-energy physics.Michael J. Hones - 1991 - Synthese 86 (1):29 - 76.
    The issue of scientific realism is discussed in terms of the specific details of the practice of experimental meson and baryon spectroscopy in the field of High-Energy Physics (HEP), during the period from 1966 to 1970. The philosophical positions of I. Hacking, A. Fine, J. Leplin, and N. Rescher that concern scientific realism are presented in such a manner as to allow for the evaluation of their appropriateness in the description of this experimental research field. This philosophical (...)
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  21.  21
    The case of the composite Higgs: The model as a “Rosetta stone” in contemporary high-energy physics.Arianna Borrelli - 2012 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 43 (3):195-214.
  22.  10
    The locus of legitimate interpretation in Big Data sciences: Lessons for computational social science from -omic biology and high-energy physics.Neil Stephens, Luis Reyes-Galindo, Jamie Lewis & Andrew Bartlett - 2018 - Big Data and Society 5 (1).
    This paper argues that analyses of the ways in which Big Data has been enacted in other academic disciplines can provide us with concepts that will help understand the application of Big Data to social questions. We use examples drawn from our Science and Technology Studies analyses of -omic biology and high energy physics to demonstrate the utility of three theoretical concepts: primary and secondary inscriptions, crafted and found data, and the locus of legitimate interpretation. These help (...)
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  23.  41
    Marginalisation Of The Phenomena And The Limits Of Scientific Knowledge In High Energy Physics.Richard Dawid - 2010 - Manuscrito 33 (1):165-206.
    It is argued that the evolution of fundamental microphysics throughout the twentieth century is characterised by two interrelated developments. On the one hand, the experimental signatures which confirm theoretical statements are moving towards the fringes of the phenomenal world and, at the same time, leave increasingly wide spaces for entirely theoretical reasoning with little or no empirical interference. On the other hand, assessments of limitations to scientific underdetermination gain importance within the theoretical process.
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  24.  68
    On the eve of the LHC: Conceptual questions in high-energy physics.Alexei Grinbaum - unknown
    We start by remarks on the scientific and societal context of today's theoretical physics. Major classes of models for physics to be explored at the LHC are then reviewed. This leads us to propose an LHC timeline and a list of potential effects on theoretical physics and the society. We then explore three conceptual questions connected with the LHC physics: symmetry (and symmetry breaking), effective field theory, and fine tuning.
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  25.  23
    Models, High-Energy Theoretical Physics and Realism.James T. Cushing - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:31 - 56.
    Examples of theory development in quantum field theory and in S-matrix theory are related to three questions of interest to the philosophy of science. The first is the central role of highly abstract, mathematical models in the creation of theories. Second, the process of creation and justification actually used make it plausible that a successful theory is equally well characterized as being stable against attack rather than as being objectively correct. Lastly, the issue of the reality of theoretical entities is (...)
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  26.  20
    Egalitarian Paradise or Factory Drudgery? Organizing Knowledge Production in High Energy Physics (HEP) Laboratories.Slobodan Perović - 2018 - Social Epistemology 32 (4):241-261.
    The organization of cutting-edge HEP laboratories has evolved in the intersection of academia, state agencies, and industry. Exponentially ever-larger and more complex knowledge-intensive operations, the laboratories have often faced the challenges of, and required organizational solutions similar to, those identified by a cluster of diverse theories falling under the larger heading of organization theory. The cluster has either shaped or accounted for the organization of industry and state administration. The theories also apply to HEP laboratories, as they have gradually and (...)
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  27.  88
    For or against structural realism? A verdict from high energy physics.Antigone M. Nounou - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 49:84-101.
  28. The Methodology of Scientific Research Programmes and Some Developments in High Energy Physics in Imre Lakatos and Theories of Scientific Change.K. Gavroglu - 1989 - Boston Studies in the Philosophy of Science 111:123-133.
  29.  16
    The Importance of Heisenberg's S-Matrix Program for the Theoretical High-Energy Physics of the 1950's.James T. Cushing - 1986 - Centaurus 29 (2):110-149.
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  30.  35
    Erratum to: The Jeffreys–Lindley paradox and discovery criteria in high energy physics.Robert D. Cousins - 2020 - Synthese 197 (8):3643-3643.
  31.  24
    Internal criteria for scientific choice: An evaluation of research in high-energy physics using electron accelerators.Benjamin R. Martin & John Irvine - 1981 - Minerva 19 (3):408-432.
  32.  6
    Rochester Roundabout: The Story of High Energy Physics. John Polkinghorne.Samuel S. Schweber - 1992 - Isis 83 (2):359-361.
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  33.  4
    Rochester Roundabout: The Story of High Energy Physics by John Polkinghorne. [REVIEW]Samuel Schweber - 1992 - Isis 83:359-361.
  34.  46
    Theory construction in high-energy particle physics.Adam Koberinski - 2019 - Dissertation, University of Western Ontario
    Science is a process, through which theoretical frameworks are developed, new phenomena defined and discovered, and properties of entities tested. The goal of this dissertation is to illustrate how high-energy physics exemplified the process of theory construction from the 1950s to 1970s, and the promising ways in which it can continue to do so today. The lessons learned from the case studies examined here can inform future physics, and may provide methodological clues as to the best (...)
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  35.  63
    Beamtimes and Lifetimes: The World of High Energy Physics. Sharon Traweek. [REVIEW]Sal Restivo - 1991 - Philosophy of Science 58 (3):507-509.
  36.  5
    Originality and Competition in Science. A Study of the British High Energy Physics Community by Jerry Gaston. [REVIEW]Paul Forman - 1975 - Isis 66:152-152.
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  37.  14
    Originality and Competition in Science. A Study of the British High Energy Physics Community. Jerry Gaston. [REVIEW]Paul Forman - 1975 - Isis 66 (1):152-152.
  38. 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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  39.  40
    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.  74
    Theory construction and experimentation in high energy particle physics, circa 1960-1970.Koray Karaca - unknown
    In this paper, I address the issue of to what extent the theory-dominated view of scientific experimentation describes scientific practice. I rely on a time period from the history of High Energy Physics (HEP), which spans from early 1960s to early 1970s. I argue that theory-ladenness of experimentation (TLE), which grounds theory-dominated conception of experimentation is too coarse-grained inasmuch as it prevents us from seeing the correct relationship that exists between theorizing and experimenting in the scientific practice (...)
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  41.  31
    Comments on the Papers of Cushing and Redhead: "Models, High-Energy Theoretical Physics and Realism" and "Quantum Field Theory for Philosophers".Paul Teller - 1982 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1982:100 - 111.
    In response to Cushing it is urged that the vicissitudes of quantum field theory do not press towards a nonrealist attitude towards the theory as strongly as he suggests. A variety of issues which Redhead raises are taken up, including photon localizability, the wave-particle distinction in the classical limit, and the interpretation of quantum statistics, vacuum fluctuations, virtual particles, and creation and annihilation operators. It is urged that quantum field theory harbors an unacknowledged inconsistency connected with the fact that the (...)
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  42. Something from nothing: 'non-discovery' and transformations in high energy experimental physics at the Large Hadron Collider.Sophie Ritson - 2023 - In Milena Ivanova & Alice Murphy (eds.), The Aesthetics of Scientific Experiments. New York, NY: Routledge.
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  43.  5
    Phenomenological theories of high energy scattering.V. Barger - 1969 - New York,: W. A. Benjamin. Edited by D. Cline.
  44.  79
    Atomism in crisis: An analysis of the current high energy paradigm.K. Shrader-Frechette - 1977 - Philosophy of Science 44 (3):409-440.
    Since the appearance of T. S. Kuhn's The Structure of Scientific Revolutions, scholars from various fields have sought to evaluate their disciplines in the light of Kuhnian criteria for scientific change. In this paper I argue that a new paradigm seems needed in high energy physics, and that there is no more reason to say that matter is made of elementary particles, than to say that it is not. My argument, that high energy physics (...)
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  45. High energy phenomenology: proceedings of the Sixth Rencontre de Moriond, Méribel-lès-Allues (France), March 7-9 [i.e. 7-19].J. Thanh Van Tran (ed.) - 1971 - Orsay, France: The Laboratoire.
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  46. Proceedings of the KEK Summer Institute on High Energy Phenomenology: KEK, Tsukuba, Japan, August 21-25, 1990.Kenʾichi Hikasa (ed.) - 1990 - Tsukuba-shi, Ibaraki-ken, Japan: National Laboratory for High Energy Physics.
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  47. Radiative corrections, quasi-Monte Carlo methods and discrepancy: computational aspects of high energy phenomenology.Jiri Kamiel Hoogland - 1996 - [Amsterdam: Universiteit van Amsterdam.
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  48.  67
    A New Qualitative Prediction of the Parton Model for High-Energy Hadron Collisions.Victor T. Kim, Grigorii B. Pivovarov & James P. Vary - 2000 - Foundations of Physics 30 (4):519-527.
    Inclusive single jet production in hadron collisions is considered. It is shown that the QCD parton model predicts a nonmonotonic dependence of the inclusive cross section on the fraction of the energy deposited in the jet registered, if it is normalized on the same cross section measured at another collision energy. Specifically, if the cross section is normalized by the one measured at a higher collision energy, it possesses a minimum which depends on jet rapidity. This prediction (...)
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  49.  19
    Energy dependence of opaqueness for pp collisions at high energies.T. T. Chou - 1978 - Foundations of Physics 8 (5-6):319-328.
    Opaqueness of pp collisions is evaluated at three CERN-ISR energies. Comparisons with predictions of the factorizable eikonal models and the scaling hypothesis are made. It appears that results are in favor of the factorizable models.
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  50.  38
    Physical basis for minimal time-energy uncertainty relation.Y. S. Kim & Marilyn E. Noz - 1979 - Foundations of Physics 9 (5-6):375-387.
    A physical basis for the minimal time-energy uncertainty relation is formulated from basic high-energy hadronic properties such as the resonance mass spectrum, the form factor behavior, and the peculiarities of Feynman's parton picture. It is shown that the covariant oscillator formalism combines covariantly this time-energy uncertainty relation with Heisenberg's space-momentum uncertainty relation. A pictorial method is developed to describe the spacetime distribution of the localized probability density.
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