Results for 'Particles (Nuclear physics)'

89 found
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  1.  12
    Nuclear Physics in a Nutshell.Carlos A. Bertulani - 2007 - Princeton University Press.
    This title provides an overview of the atomic nucleus and the theories that seek to explain it. Bringing together a systematic explanation of hadrons, nuclei, and stars for the first time, the author provides the core material needed by students of physics to acquire a solid understanding of nuclear and particle science.
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  2.  91
    Majorana and the Quasi-Stationary States in Nuclear Physics.E. Di Grezia & S. Esposito - 2008 - Foundations of Physics 38 (3):228-240.
    A complete theoretical model describing artificial disintegration of nuclei by bombardment with α-particles, developed by Majorana as early as 1930, is discussed in detail jointly with the basic experimental evidences that motivated it. By following the quantum dynamics of a state resulting from the superposition of a discrete state with a continuum one, whose interaction is described by a given potential term, Majorana obtained (among the other predictions) the explicit expression for the integrated cross section of the nuclear (...)
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  3.  33
    Nuclear Democracy: Political Engagement, Pedagogical Reform, and Particle Physics in Postwar America.David Kaiser - 2002 - Isis 93 (2):229-268.
    The influential Berkeley theoretical physicist Geoffrey Chew renounced the reigning approach to the study of subatomic particles in the early 1960s. The standard approach relied on a rigid division between elementary and composite particles. Partly on the basis of his new interpretation of Feynman diagrams, Chew called instead for a “nuclear democracy” that would erase this division, treating all nuclear particles on an equal footing. In developing his rival approach, which came to dominate studies of (...)
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  4.  26
    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 derivations and (...)
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  5. Philosophical problems of elementary particle physics.I. V. Kuznet︠s︡ov & M. E. Omelʹi︠a︡novsʹkyĭ (eds.) - 1965 - Jerusalem,: Israel Program for Scientific Translations.
     
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  6.  77
    Theories of Variable Mass Particles and Low Energy Nuclear Phenomena.Mark Davidson - 2014 - Foundations of Physics 44 (2):144-174.
    Variable particle masses have sometimes been invoked to explain observed anomalies in low energy nuclear reactions (LENR). Such behavior has never been observed directly, and is not considered possible in theoretical nuclear physics. Nevertheless, there are covariant off-mass-shell theories of relativistic particle dynamics, based on works by Fock, Stueckelberg, Feynman, Greenberger, Horwitz, and others. We review some of these and we also consider virtual particles that arise in conventional Feynman diagrams in relativistic field theories. Effective Lagrangian (...)
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  7.  17
    On nuclear energy levels and elementary particles.J. A. de Wet - 1982 - Foundations of Physics 12 (3):285-300.
    Considering only exchange forces, the binding energies and excited states of nuclei up to 24 Mg are predicted to within charge independence, and there is no reason why the model should not be extended to cover all of the elements. A comparison of theory with experiment shows that the energy of one exchange is 2.56 MeV. Moreover, there is an attractive well of depth 30 MeV, corresponding to the helium nucleus, before exchange forces become operative. A possible explanation of the (...)
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  8.  29
    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 (...)
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  9. 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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  10.  21
    The cosmic code: quantum physics as the language of nature.Heinz R. Pagels - 1982 - Mineola, N.Y.: Dover Publications.
    This is one of the most important books on quantum mechanics ever written for lay readers, in which an eminent physicist and successful science writer, Heinz Pagels, discusses and explains the core concepts of physics without resorting to complicated mathematics. "Can be read by anyone. I heartily recommend it!" -- New York Times Book Review. 1982 edition.
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  11.  29
    The uses of isospin in early nuclear and particle physics.Arianna Borrelli - 2017 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 60:81-94.
  12.  7
    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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  13. Tropes and Physics.Matteo Morganti - 2009 - Grazer Philosophische Studien 78 (1):185--205.
    Th is paper looks at quantum theory and the Standard Model of elementary particles with a view to suggesting a detailed empirical implementation of trope ontology in harmony with our best physics.
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  14.  20
    A nuclear periodic table.K. Hagino & Y. Maeno - 2020 - Foundations of Chemistry 22 (2):267-273.
    There has been plenty of empirical evidence which shows that the single-particle picture holds to a good approximation in atomic nuclei. In this picture, protons and neutrons move independently inside a mean-field potential generated by an interaction among the nucleons. This leads to the concept of nuclear shells, similar to the electronic shells in atoms. In particular, the magic numbers due to closures of the nucleonic shells, corresponding to noble gases in elements, have been known to play an important (...)
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  15.  2
    Fields and/or particles.Dipak Kumar Sen - 1968 - New York,: Academic Press.
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  16.  9
    A terminological history of early elementary particle physics.Helge Kragh - 2023 - Archive for History of Exact Sciences 77 (1):73-120.
    By 1933, the class of generally accepted elementary particles comprised the electron, the photon, the proton as well as newcomers in the shape of the neutron, the positron, and the neutrino. During the following decade, a new and poorly understood particle, the mesotron or meson, was added to the list. By paying close attention to the names of these and other particles and to the sometimes controversial proposals of names, a novel perspective on this well-researched line of development (...)
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  17.  5
    Problems of fundamental physics: proceedings, 7th Lomonosov Conference on Elementary Particle Physics (24-30 August 1995, Moscow, Russia).A. I. Studenikin (ed.) - 1997 - Moscow: URSS.
  18.  74
    Encounters with Einstein: and other essays on people, places, and particles.Werner Heisenberg - 1983 - Princeton, N.J.: Princeton University Press.
    In nine essays and lectures composed in the last years of his life, Werner Heisenberg offers a bold appraisal of the scientific method in the twentieth century--and relates its philosophical impact on contemporary society and science to the particulars of molecular biology, astrophysics, and related disciplines. Are the problems we define and pursue freely chosen according to our conscious interests? Or does the historical process itself determine which phenomena merit examination at any one time? Heisenberg discusses these issues in the (...)
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  19.  6
    2nd Karl Schwarzschild Meeting on Gravitational Physics.Marcus Bleicher, Matthias Kaminski, Jonas Mureika & Piero Nicolini (eds.) - 2018 - Cham: Imprint: Springer.
    This book presents the proceedings of the 2nd Karl Schwarzschild Meeting on Gravitational Physics, focused on the general theme of black holes, gravity and information. Specialists in the field of black hole physics and rising young researchers present the latest findings on the broad topic of black holes, gravity, and information, highlighting its applications to astrophysics, cosmology, particle physics, and strongly correlated systems.
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  20.  6
    The Quark Structure of Hadrons: An Introduction to the Phenomenology and Spectroscopy.Claude Amsler - 2018 - Cham: Imprint: Springer.
    Novel forms of matter, such as states made of gluons (glueballs), multiquark mesons or baryons and hybrid mesons are predicted by low energy QCD, for which several candidates have recently been identified. Searching for such exotic states of matter and studying their production and decay properties in detail has become a flourishing field at the experimental facilities now available or being built - e.g. BESIII in Beijing, BELLE II at SuperKEKB, GlueX at Jefferson Lab, PANDA at FAIR, J-PARC and in (...)
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  21.  32
    Virtuality in Modern Physics in the 1920s and 1930s: Meaning(s) of an Emerging Notion.Jean-Philippe Martinez - 2024 - Perspectives on Science 32 (3):350-371.
    This article discusses the meaning of the notion of virtuality in modern physics. To this end, it develops considerations on the introduction and establishment in nuclear physics of two independent concepts at the turn of the 1920s and 1930s: that of the virtual state, used in the context of neutron scattering studies, and that of the virtual transition, useful for the theoretical understanding of strong nuclear forces, which forms the basis of what are now called virtual (...)
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  22. 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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  23. 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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  24.  20
    Solid State Insurrection: How the Science of Substance Made American Physics Matter.Joseph D. Martin - 2018 - Pittsburgh, PA, USA: University of Pittsburgh Press.
    Solid state physics, the study of the physical properties of solid matter, was the most populous subfield of Cold War American physics. Despite prolific contributions to consumer and medical technology, such as the transistor and magnetic resonance imaging, it garnered less professional prestige and public attention than nuclear and particle physics. Solid State Insurrection argues that solid state physics was essential to securing the vast social, political, and financial capital Cold War physics enjoyed in (...)
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  25.  2
    Philosophische probleme der Elementarteilchephysik.Bodo Wenzlaff, I. V. Kuznet︠s︡ov, [From Old Catalog] & M. E. Omelʹi︠a︡novsʹkyĭ (eds.) - 1976 - Berlin,: Deustcher Verlag der Wissenschaften.
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  26.  26
    International Scientific Cooperation During the 1930s. Bruno Rossi and the Development of the Status of Cosmic Rays into a Branch of Physics.Luisa Bonolis - 2014 - Annals of Science 71 (3):355-409.
    SummaryDuring the 1920s and 1930s, Italian physicists established strong relationships with scientists from other European countries and the United States. The career of Bruno Rossi, a leading personality in the study of cosmic rays and an Italian pioneer of this field of research, provides a prominent example of this kind of international cooperation. Physics underwent major changes during these turbulent years, and the traditional internationalism of physics assumed a more institutionalized character. Against this backdrop, Rossi's early work was (...)
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  27.  43
    Unstable Particles, Gauge Invariance and the Δ++ Resonance Parameters.Gabriel López Castro & Alejandro Mariano - 2003 - Foundations of Physics 33 (5):719-734.
    The elastic and radiative π + p scattering are studied in the framework of an effective Lagrangian model for the Δ ++ resonance and its interactions. The finite width effects of this spin-3/2 resonance are introduced in the scattering amplitudes through a complex mass scheme to respect electromagnetic gauge invariance. The resonant pole (Δ ++) and background contributions (ρ 0, σ, Δ, and neutron states) are separated according to the principles of the analytic S-matrix theory. The mass and width parameters (...)
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  28. The physical theories and infinite hierarchical nesting of matter, Volume 1.Sergey G. Fedosin - 2014 - LAP LAMBERT Academic Publishing.
    With the help of syncretiсs as a new philosophical logic, the philosophy of carriers, the theory of similarity and the theory of Infinite Hierarchical Nesting of Matter, the problems of modern physics are analyzed. We consider the classical and relativistic mechanics, the special and general theories of relativity, the theory of electromagnetic and gravitational fields, of weak and strong interactions. The goal is axiomatization of these theories, building models of elementary particles and of their interactions with each other. (...)
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  29.  68
    The history of the discovery of nuclear fission.Jack E. Fergusson - 2011 - Foundations of Chemistry 13 (2):145-166.
    Following with the discovery of the electron by J. J. Thomson at the end of the nineteenth century a steady elucidation of the structure of the atom occurred over the next 40 years culminating in the discovery of nuclear fission in 1938–1939. The significant steps after the electron discovery were: discovery of the nuclear atom by Rutherford (Philos Mag 6th Ser 21:669–688, 1911 ), the transformation of elements by Rutherford (Philos Mag 37:578–587, 1919 ), discovery of artificial radioactivity (...)
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  30.  20
    Nuclear structure on a Grassmann manifold.J. A. de Wet - 1987 - Foundations of Physics 17 (10):993-1018.
    Products of particlelike representations of the homogeneous Lorentz group are used to construct the degrees of spin angular momentum of a composite system of protons and neutrons. If a canonical labeling system is adopted for each state, a shell structure emerges. Furthermore the use of the Dirac ring ensures that the spin is characterized by half-angles in accord with the neutron-rotation experiment. It is possible to construct a Clebsch-Gordan decomposition to reduce a state of complex angular momentum into simpler states (...)
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  31.  26
    A simple model for nuclear forces which exhibits bound states.J. P. Kobus & M. Z. Nashed - 1971 - Foundations of Physics 1 (4):329-337.
    A repulsive core force is derived which, assuming π mesons are the field particles, gives binding energies in good agreement with binding energies per nucleon of heavy nuclei. The physical model consists of a field of relatively short range, in which emission of a π meson by a nucleon and subsequent absorption by a neighboring nucleon is equivalent to a potential well. The binding energy at the equilibrium spacing of the nucleons is the self-energy of the π mesons, which (...)
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  32. Fluctuations in hadronic and nuclear collisions.Yogiro Hama, Takeshi Kodama & Samya Paiva - 1997 - Foundations of Physics 27 (11):1601-1621.
    We investigate several fluctuation effects in high-energy hadronic and nuclear collisions through the analysis of different observables. To introduce fluctuations in the initial stage of collisions, we use the interacting gluon model (IGM) modified by the inclusion of the impact parameter. The inelasticity and leading-particle distributions follow directly from this model. The fluctuation effects on rapidity distributions are then studied using Landau's hydrodynamic model in one dimension. To investigage further the effects of the multiplicity fluctuation, we use the longitudinal (...)
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  33.  11
    Memorial volume for Y. Nambu.Lars Brink, L. N. Chang, M. Y. Han, K. K. Phua & Yoichiro Nambu (eds.) - 2016 - Hackensack, NJ: World Scientific Publishing Co. Pte..
    We have lost one of the giants of the twentieth century physics when Yoichiro Nambu passed away in July, 2015, at the age of 94. Today's Standard Model, though still incomplete in many respects, is the culmination of the most successful theory of the Universe to date, and it is built upon foundations provided by discoveries made by Nambu in the 1960s: the mechanism of spontaneously broken symmetry in Nature (with G Jona-Lasinio) and the hidden new SU(3) symmetry of (...)
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  34.  3
    1st Karl Schwarzschild Meeting on Gravitational Physics.Piero Nicolini, Matthias Kaminski, Jonas Mureika & Marcus Bleicher (eds.) - 2016 - Cham: Imprint: Springer.
    These proceedings collect the selected contributions of participants of the First Karl Schwarzschild Meeting on Gravitational Physics, held in Frankfurt, Germany to celebrate the 140th anniversary of Schwarzschild's birth. They are grouped into 4 main themes: I. The Life and Work of Karl Schwarzschild; II. Black Holes in Classical General Relativity, Numerical Relativity, Astrophysics, Cosmology, and Alternative Theories of Gravity; III. Black Holes in Quantum Gravity and String Theory; IV. Other Topics in Contemporary Gravitation. Inspired by the foundational principle (...)
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  35.  7
    On the Second Dipole Moment of Dirac’s Particle.Engel Roza - 2020 - Foundations of Physics 50 (8):828-849.
    An analysis is presented of the possible existence of the second anomalous dipole moment of Dirac’s particle next to the one associated with the angular momentum. It includes a discussion why, in spite of his own derivation, Dirac has doubted about its relevancy. It is shown why since then it has been overlooked and why it has vanished from leading textbooks. A critical survey is given on the reasons of its reject, including the failure of attempts to measure and the (...)
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  36. 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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  37. Kont︠s︡ept︠s︡ii ėlementarnosti v nauchnom poznanii.Nikolai Ivanovich Stepanov - 1976 - Moskva: Nauka.
     
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  38.  5
    LHC Phenomenology.Einan Gardi, Nigel Glover & Aidan Robson (eds.) - 2015 - Cham: Imprint: Springer.
    This book covers a very broad spectrum of experimental and theoretical activity in particle physics, from the searches for the Higgs boson and physics beyond the Standard Model, to detailed studies of Quantum Chromodynamics, the B-physics sectors and the properties of hadronic matter at high energy density as realised in heavy-ion collisions. Starting with a basic introduction to the Standard Model and its most likely extensions, the opening section of the book presents an overview of the theoretical (...)
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  39.  9
    Giulio Racah and theoretical physics in Jerusalem.Nissan Zeldes - 2009 - Archive for History of Exact Sciences 63 (3):289-323.
    The present article considers Giulio Racah’s contributions to general physical theory and his establishment of theoretical physics as a discipline in Israel. Racah developed mathematical methods that are based on tensor operators and continuous groups. These methods revolutionized spectroscopy. Currently, these are essential research tools in atomic, nuclear and elementary particle physics. He himself applied them to modernizing theoretical atomic spectroscopy. Racah laid the foundations of theoretical physics in Israel. He educated several generations of Israeli physicists, (...)
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  40.  42
    Non-paulian Nuclear Processes in Highly Radiopure NaI(Tl): Status and Perspectives. [REVIEW]R. Bernabei, P. Belli, F. Cappella, R. Cerulli, C. J. Dai, A. D’Angelo, H. L. He, A. Incicchitti, H. H. Kuang, X. H. Ma, F. Montecchia, F. Nozzoli, D. Prosperi, X. D. Sheng & Z. P. Ye - 2010 - Foundations of Physics 40 (7):807-813.
    Searches for non-paulian nuclear processes, i.e. processes normally forbidden by the Pauli–Exclusion–Principle (PEP) with highly radiopure NaI(Tl) scintillators allow the test of this fundamental principle with high sensitivity. Status and perspectives are addressed.
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  41.  6
    The Discovery of Isotopes: A Complete Compilation.Michael Thoennessen - 2016 - Cham: Imprint: Springer.
    This book describes the exciting discovery of every isotope observed on earth to date, which currently numbers some 3000. For each isotope a short essay highlights the authors of the first publication for the isotope, the laboratory and year where and when the isotope was discovered, as well as details about the production and detection methods used. In controversial cases previously claims are also discussed. At the end a comprehensive table lists all isotopes sorted by elements and a complete list (...)
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  42.  65
    An Effective Field Theory Model to Describe Nuclear Matter in Heavy-Ion Collisions.M. M. Islam & H. Weigel - 2000 - Foundations of Physics 30 (4):577-597.
    Relativistic mean field theory with mesons σ, ω, π and ρ mediating interactions and nucleons as basic fermions has been very successful in describing nuclear matter and finite nuclei. However, in heavy-ion collisions, where the c. m. energy of two colliding nucleons will be in the hundreds of GeV region, nucleons are not expected to behave as point-like particles. Analyses of elastic pp and ¯pp scattering data in the relevant c. m. energy range show that the nucleon is (...)
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  43.  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 1997). (...)
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  44.  1
    Experimentation in Physics.Yves Gingras - 2024 - In Catherine Allamel-Raffin, Jean-Luc Gangloff & Yves Gingras (eds.), Experimentation in the Sciences: Comparative and Long-Term Historical Research on Experimental Practice. Springer Nature Switzerland. pp. 9-19.
    This chapter presents the different purposes of observation and experiment in physics using examples that allow us to grasp the historical transformations linked to the development of instrumentation. We cover both the observational and experimental aspects of this discipline, which range from astronomy and astrophysics to nuclear and particle physics, including optics and solid-state physics.
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  45.  87
    How do “virtual” photons and mesons transmit forces between charged particles and nucleons?C. W. Rietdijk - 1977 - Foundations of Physics 7 (5-6):351-374.
    Examining the process of action at a distance, we arrive at the following conclusions: (a) The virtual photons and mesons transmitting Coulomb and nuclear forces, respectively, do not arise from “temporary violations of energy conservation,” but, on the contrary, exactly embody the potential energy corresponding to the relevant forceF that they transmit on their collision with the charged particles or nucleons via the formula Δp=FΔt. (b) In the case of an attractive force, the energy of these photons and (...)
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  46.  8
    The Lost Notebook of Enrico Fermi: The True Story of the Discovery of Neutron-Induced Radioactivity.Francesco Guerra & Nadia Robotti - 2018 - Cham: Springer Verlag. Edited by Nadia Robotti.
    This book tells the curious story of an unexpected finding that sheds light on a crucial moment in the development of physics: the discovery of artificial radioactivity induced by neutrons. The finding in question is a notebook, clearly written in Fermi's handwriting, which records the frenzied days and nights that Fermi spent experimenting alone, driven by his theoretical ideas on beta decay. The notebook was found by the authors while browsing through documents left by Oscar D'Agostino, the chemist among (...)
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  47.  5
    The postulates of Marxism and the laws of nature.Dimitriĭ Mikhaĭlovich Panin - 1977 - Kingston, Ont.: Panin.
  48.  6
    The New Age in Physics[REVIEW]P. K. H. - 1968 - Review of Metaphysics 21 (3):556-556.
    The "new age" to which Sir Harrie refers in his title is none other than the contemporary one of particle accelerators, electronic devices, high-powered rockets, space probes, nuclear reactors and other fancy "things" which have their intellectual foundations in the theories of relativity, quanta and particle physics. This volume is a sort of intelligent layman's guide to the huge enterprise which is modern physics. The author refuses to recognize any artificial distinction between experimental and theoretical physics, (...)
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  49. Problemy poznanii︠a︡ mikromira.A. I. Korneeva - 1978 - Moskva: Myslʹ.
     
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  50.  7
    Tradition in science.Werner Heisenberg - 1981 - New York: Continuum.
1 — 50 / 89