Results for 'spin'

1000+ found
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  1. Vigier III.Spin Foam Spinors & Fundamental Space-Time Geometry - 2000 - Foundations of Physics 30 (1).
  2. Spin as a Determinable.Johanna Wolff - 2015 - Topoi 34 (2):379-386.
    In this paper I aim to answer two questions: Can spin be treated as a determinable? Can a treatment of spin as a determinable be used to understand quantum indeterminacy? In response to the first question I show that the relations among spin number, spin components and spin values cannot be captured by a single determination relation; instead we need to look at spin number and spin value separately. In response to the second (...)
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  3. Connecting Spin and Statistics in Quantum Mechanics.Arthur Jabs - 2014 - arXiv:0810.2399.
    The spin-statistics connection is derived in a simple manner under the postulates that the original and the exchange wave functions are simply added, and that the azimuthal phase angle, which defines the orientation of the spin part of each single-particle spin-component eigenfunction in the plane normal to the spin-quantization axis, is exchanged along with the other parameters. The spin factor (−1)2s belongs to the exchange wave function when this function is constructed so as to get (...)
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  4.  34
    Spin and Wind Directions I: Identifying Entanglement in Nature and Cognition.Diederik Aerts, Jonito Aerts Arguëlles, Lester Beltran, Suzette Geriente, Massimiliano Sassoli de Bianchi, Sandro Sozzo & Tomas Veloz - 2018 - Foundations of Science 23 (2):323-335.
    We present a cognitive psychology experiment where participants were asked to select pairs of spatial directions that they considered to be the best example of Two different wind directions. Data are shown to violate the CHSH version of Bell’s inequality with the same magnitude as in typical Bell-test experiments with entangled spins. Wind directions thus appear to be conceptual entities connected through meaning, in human cognition, in a similar way as spins appear to be entangled in experiments conducted in physics (...)
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  5.  72
    The Spin-Echo System Reconsidered.D. A. Lavis - 2004 - Foundations of Physics 34 (4):669-688.
    Simple models have played an important role in the discussion of foundational issues in statistical mechanics. Among them the spin-echo system is of particular interest since it can be realized experimentally. This has led to inferences being drawn about approaches to the foundations of statistical mechanics, particularly with respect to the use of coarse-graining. We examine these claims with the help of computer simulations.
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  6.  54
    Spin and Statistics and First Principles.Sergio Doplicher - 2010 - Foundations of Physics 40 (7):719-732.
    It was shown in the early seventies that, in Local Quantum Theory (that is the most general formulation of Quantum Field Theory, if we leave out only the unknown scenario of Quantum Gravity) the notion of Statistics can be grounded solely on the local observable quantities (without assuming neither the commutation relations nor even the existence of unobservable charged field operators); one finds that only the well known (para)statistics of Bose/Fermi type are allowed by the key principle of local commutativity (...)
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  7.  10
    Spin Dictators: The Changing Face of Tyranny in the 21st Century.Erwin Warkentin - 2023 - The European Legacy 28 (6):683-685.
    In some ways, the timing of this book is both fortunate and unfortunate at the same time. Considering its emphasis, authoritarian dictators who govern by spin rather than fear, it is of particular...
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  8.  33
    Spin-Statistics Transmutation in Quantum Field Theory.P. A. Marchetti - 2010 - Foundations of Physics 40 (7):746-764.
    Spin-statistics transmutation is the phenomenon occurring when a “dressing” transformation introduced for physical reasons (e.g. gauge invariance) modifies the “bare” spin and statistics of particles or fields. Historically, it first appeared in Quantum Mechanics and in semiclassical approximation to Quantum Field Theory. After a brief historical introduction, we sketch how to describe such phenomenon in Quantum Field Theory beyond the semiclassical approximation, using a path-integral formulation of euclidean correlation functions, exemplifying with anyons, dyons and skyrmions.
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  9. The Spin-Echo Experiments and the Second Law of Thermodynamics.T. M. Ridderbos & M. L. G. Redhead - 1998 - Foundations of Physics 28 (8):1237-1270.
    We introduce a simple model for so-called spin-echo experiments. We show that the model is a mincing system. On the basis of this model we study fine-grained entropy and coarse-grained entropy descriptions of these experiments. The coarse-grained description is shown to be unable to provide an explanation of the echo signals, as a result of the way in which it ignores dynamically generated correlations. This conclusion is extended to the general debate on the foundations of statistical mechanics. We emphasize (...)
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  10.  56
    Spin and Wind Directions II: A Bell State Quantum Model.Diederik Aerts, Jonito Aerts Arguëlles, Lester Beltran, Suzette Geriente, Massimiliano Sassoli de Bianchi, Sandro Sozzo & Tomas Veloz - 2018 - Foundations of Science 23 (2):337-365.
    In the first half of this two-part article, we analyzed a cognitive psychology experiment where participants were asked to select pairs of directions that they considered to be the best example of Two Different Wind Directions, and showed that the data violate the CHSH version of Bell’s inequality, with same magnitude as in typical Bell-test experiments in physics. In this second part, we complete our analysis by presenting a symmetrized version of the experiment, still violating the CHSH inequality but now (...)
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  11.  42
    Do Spin-Offs Make the Academics' Heads Spin?Arend H. Zomer, Ben W. A. Jongbloed & Jürgen Enders - 2010 - Minerva 48 (3):331-353.
    As public research organisations are increasingly driven by their national and regional governments to engage in knowledge transfer, they have started to support the creation of companies. These research based spin-off companies (RBSOs) often keep contacts with the research institutes they originate from. In this paper we present the results of a study of four research institutes within two universities and two non-university public research organisations (PROs) in the Netherlands. We show that research organisations have distinct motivations to support (...)
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  12.  10
    Connecting Spin and Statistics in Quantum Mechanics.Arthur Jabs - 2010 - Foundations of Physics 40 (7):776-792.
    The spin-statistics connection is derived in a simple manner under the postulates that the original and the exchange wave functions are simply added, and that the azimuthal phase angle, which defines the orientation of the spin part of each single-particle spin-component eigenfunction in the plane normal to the spin-quantization axis, is exchanged along with the other parameters. The spin factor 2s belongs to the exchange wave function when this function is constructed so as to get (...)
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  13.  16
    Spin and Wind Directions I: Identifying Entanglement in Nature and Cognition.Robrecht Vanderbeeken & Frederik Le Roy - 2018 - Foundations of Science 23 (2):323-335.
    We present a cognitive psychology experiment where participants were asked to select pairs of spatial directions that they considered to be the best example of Two different wind directions. Data are shown to violate the CHSH version of Bell’s inequality with the same magnitude as in typical Bell-test experiments with entangled spins. Wind directions thus appear to be conceptual entities connected through meaning, in human cognition, in a similar way as spins appear to be entangled in experiments conducted in physics (...)
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  14. Magnets, spins, and neurons: The dissemination of model templates across disciplines.Tarja Knuuttila & Andrea Loettgers - 2014 - The Monist 97 (3):280-300.
    One of the most conspicuous features of contemporary modeling practices is the dissemination of mathematical and computational methods across disciplinary boundaries. We study this process through two applications of the Ising model: the Sherrington-Kirkpatrick model of spin glasses and the Hopfield model of associative memory. The Hopfield model successfully transferred some basic ideas and mathematical methods originally developed within the study of magnetic systems to the field of neuroscience. As an analytical resource we use Paul Humphreys's discussion of computational (...)
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  15.  16
    Spin and Wind Directions I: Identifying Entanglement in Nature and Cognition.Tomas Veloz, Sandro Sozzo, Massimiliano Sassoli de Bianchi, Suzette Geriente, Lester Beltran, Jonito Aerts Arguëlles & Diederik Aerts - 2018 - Foundations of Science 23 (2):323-335.
    We present a cognitive psychology experiment where participants were asked to select pairs of spatial directions that they considered to be the best example of Two different wind directions. Data are shown to violate the CHSH version of Bell’s inequality with the same magnitude as in typical Bell-test experiments with entangled spins. Wind directions thus appear to be conceptual entities connected through meaning, in human cognition, in a similar way as spins appear to be entangled in experiments conducted in physics (...)
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  16.  23
    Spin Factors as Generalized Hermitian Algebras.David J. Foulis & Sylvia Pulmannová - 2009 - Foundations of Physics 39 (3):237-255.
    We relate so-called spin factors and generalized Hermitian (GH-) algebras, both of which are partially ordered special Jordan algebras. Our main theorem states that positive-definite spin factors of dimension greater than one are mathematically equivalent to generalized Hermitian algebras of rank two.
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  17.  64
    Spin Path Integrals and Generations.Carl Brannen - 2010 - Foundations of Physics 40 (11):1681-1699.
    The spin of a free electron is stable but its position is not. Recent quantum information research by G. Svetlichny, J. Tolar, and G. Chadzitaskos have shown that the Feynman position path integral can be mathematically defined as a product of incompatible states; that is, as a product of mutually unbiased bases (MUBs). Since the more common use of MUBs is in finite dimensional Hilbert spaces, this raises the question “what happens when spin path integrals are computed over (...)
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  18.  21
    Identifying spin in health management evaluations.Ariel Linden - 2011 - Journal of Evaluation in Clinical Practice 17 (6):1223-1230.
  19.  40
    Spin-Dependent Bohmian Electronic Trajectories for Helium.J. A. Timko & E. R. Vrscay - 2009 - Foundations of Physics 39 (9):1055-1071.
    We examine “de Broglie-Bohm” causal trajectories for the two electrons in a nonrelativistic helium atom, taking into account the spin-dependent momentum terms that arise from the Pauli current. Given that this many-body problem is not exactly solvable, we examine approximations to various helium eigenstates provided by a low-dimensional basis comprised of tensor products of one-particle hydrogenic eigenstates.First to be considered are the simplest approximations to the ground and first-excited electronic states found in every introductory quantum mechanics textbook. For example, (...)
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  20.  33
    Spin-Statistics Connection for Relativistic Quantum Mechanics.A. F. Bennett - 2015 - Foundations of Physics 45 (4):370-381.
    The spin-statistics connection has been proved for nonrelativistic quantum mechanics . The proof is extended here to the relativistic regime using the parametrized Dirac equation. A causality condition is not required.
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  21. Spinning gold from straw: On cause, law and probability.Henry A. Walker - 1987 - Sociological Theory 5 (1):28-33.
  22.  13
    Spin and Contextuality in Extended de Broglie-Bohm-Bell Quantum Mechanics.Jeroen C. Vink - 2022 - Foundations of Physics 52 (5):1-27.
    This paper introduces an extension of the de Broglie-Bohm-Bell formulation of quantum mechanics, which includes intrinsic particle degrees of freedom, such as spin, as elements of reality. To evade constraints from the Kochen-Specker theorem the discrete spin values refer to a specific basis – i.e., a single spin vector orientation for each particle; these spin orientations are, however, not predetermined, but dynamic and guided by the wave function of the system, which is conditional on the realized (...)
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  23.  44
    Is spin coherence like Humpty-Dumpty? I. Simplified treatment.Berthold-Georg Englert, Julian Schwinger & Marlan O. Scully - 1988 - Foundations of Physics 18 (10):1045-1056.
    When Humpty-Dumpty had his great fall nobody could put him together again. A vastly more moderate challenge is to reunite the two partial beams of a Stern-Gerlach apparatus with such precision that the original spin state is recovered. Nevertheless, as we demonstrate, a substantial loss of spin coherence always occurs, unless the experimenter is able to control the magnetic field's inhomogeneity with an accuracy of at least one part in 105.
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  24.  52
    Deriving Spin within a Discrete-Time Theory.Erasmo Recami & Giovanni Salesi - 2007 - Foundations of Physics 37 (2):277-294.
    We prove that the classical theory with a discrete time (chronon) is a particular case of a more general theory in which spinning particles are associated with generalized Lagrangians containing time-derivatives of any order (a theory that has been called “Non-Newtonian Mechanics”). As a consequence, we get, for instance, a classical kinematical derivation of Hamiltonian and spin vector for the mentioned chronon theory (e.g., in Caldirola et al.’s formulation). Namely, we show that the extension of classical mechanics obtained by (...)
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  25.  75
    Spinning strands into aspects: Realism, idealism, and finite modes in Spinoza.Noa Shein - 2020 - European Journal of Philosophy 28 (2):323-336.
    There is a long tradition of reading Spinoza as committed, perhaps unwillingly, to the non-reality of finite modes. While acknowledging that Spinoza does seem to rely on the reality of modes in certain places, Michael Della Rocca has called attention to what he labels an “idealist strand.” As a concluding remark in “Steps Toward Eleaticism in Spinoza's Philosophy of Action,” he claims that faced with these two conflicting strands, which are genuinely to be found in the text, it is better (...)
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  26.  25
    Spin and Wind Directions II: A Bell State Quantum Model.Tomas Veloz, Sandro Sozzo, Massimiliano Sassoli de Bianchi, Suzette Geriente, Lester Beltran, Jonito Aerts Arguëlles & Diederik Aerts - 2018 - Foundations of Science 23 (2):337-365.
    In the first half of this two-part article, we analyzed a cognitive psychology experiment where participants were asked to select pairs of directions that they considered to be the best example of Two Different Wind Directions, and showed that the data violate the CHSH version of Bell’s inequality, with same magnitude as in typical Bell-test experiments in physics. In this second part, we complete our analysis by presenting a symmetrized version of the experiment, still violating the CHSH inequality but now (...)
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  27. Spinning the Wheel or Tossing a Coin?Robert Huseby - 2011 - Utilitas 23 (2):127-139.
    In the literature on the so-called numbers problem, some authors have recently argued that the individualist lottery (IL) avoids the flaws of the proportional lottery. This article first presents two recent defenses of the IL, and then argues that both are implausible if we focus, as we should, strictly on their non-consequentialist aspects. This conclusion holds even if we take account of the fact that the IL is arguably that solution to the numbers problem which best meets the marginal difference (...)
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  28.  4
    Spin in the reporting, interpretation, and extrapolation of adverse effects of orthodontic interventions: protocol for a cross-sectional study of systematic reviews.Reint A. Meursinge Reynders, Nicola Di Girolamo & Pauline A. J. Steegmans - 2019 - Research Integrity and Peer Review 4 (1).
    BackgroundTitles and abstracts are the most read sections of biomedical papers. It is therefore important that abstracts transparently report both the beneficial and adverse effects of health care interventions and do not mislead the reader. Misleading reporting, interpretation, or extrapolation of study results is called “spin”. In this study, we will assess whether adverse effects of orthodontic interventions were reported or considered in the abstracts of both Cochrane and non-Cochrane reviews and whether spin was identified and what type (...)
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  29.  52
    Spinning the Genome: Why Science Hype Matters.Timothy Caulfield - 2018 - Perspectives in Biology and Medicine 61 (4):560-571.
    Genetic research attracts significant attention from the popular press, and often these representations are less than ideal, skewing toward hyperbole and promises of near-future benefits. Indeed, revolutionary language has permeated public discourse since the start of the Human Genome Project in the early 1990s. If the near constant parade of enthusiastic headlines is to be believed, we have been in the midst of a "genetic revolution" for over three decades, yet, the promised revolutionary changes never fully materialize, at least not (...)
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  30.  85
    Spinning in the NAPLAN Ether: 'Postscript on the Control Societies' and the Seduction of Education in Australia.Ian Cook & Greg Thompson - 2012 - Deleuze and Guatarri Studies 6 (4):564-584.
    This paper applies concepts Deleuze developed in his ‘Postscript on the Societies of Control’, especially those relating to modulatory power, dividuation and control, to aspects of Australian schooling to explore how this transition is manifesting itself. Two modulatory machines of assessment, NAPLAN and My Schools, are examined as a means to better understand how the disciplinary institution is changing as a result of modulation. This transition from discipline to modulation is visible in the declining importance of the disciplinary teacher–student relationship (...)
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  31.  56
    Spin precession revisited.Ph A. Martin & M. Sassoli de Bianchi - 1994 - Foundations of Physics 24 (10):1371-1378.
    The passage of a spin-1/2neutral particle through a region of uniform magnetic field and the corresponding precession mechanism is analyzed from the viewpoint of scattering theory, with particular consideration of the role of the field boundaries.
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  32. Spin: All is not what it seems.Margaret Morrison - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (3):529-557.
  33.  27
    Spin correlation in stochastic mechanics.William G. Faris - 1982 - Foundations of Physics 12 (1):1-26.
    Stochastic mechanics may be used to described the spin of atomic particles. The spin variables have the same expectations as in quantum mechanics, but not the same distributions. They play the role of hidden variables that influence, but do not determine, the results of Stern-Gerlach experiments involving magnets. During the course of such an experiment spin becomes correlated with position. The case of two particles with zero total spin occurs in Bohm's version of the Einstein-Rosen-Podolsky experiment.
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  34.  35
    Spin: All is not what it seems.Margaret Morrison - 2007 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 38 (3):529-557.
  35.  12
    Academic spin-offs and innovative start-ups : Two of the same.Maximilian Goethner - 2010 - Analysis.
    It has become commonplace to consider start-ups originating from the science field usually referred to as academic spin-offs as drivers of innovation, productivity, and employment. However, only little is known about the process of spin-off creation (e.g., Goethner et al., 2009) and development (e.g., Mustar et al., 2006; Vohora et al., 2004). Specifically, there has not been sufficient empirical research directly comparing equivalently matched groups of academic spin-offs and non-academic start-ups in order to draw definitive conclusions on (...)
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  36.  32
    The spin of the electron according to stochastic electrodynamics.L. de la Peña & A. Jáuregui - 1982 - Foundations of Physics 12 (5):441-465.
    By making use of the method of moments we study some aspects of the statistical behavior of the nonrelativistic harmonic oscillator according to stochastic electrodynamics. We show that the random rotations induced on the particle by the zero-point field account for the magnitude of the spin of the electron, the result differing from the correct one(3/4)h 2 by a factor of2. Assuming that the measurement of a spin projection may be effectively taken into account by considering the action (...)
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  37. Spin quasi-distribution functions.M. O. Scully & K. Wódkiewicz - 1994 - Foundations of Physics 24 (1):85-107.
    Two-classes of phase-space spin quasi-distribution functions are introduced and discussed. The first class of these distributions is based on the delta function construction. It is shown that such a construction can be carried out for an arbitrary spin s and an arbitrary ordering of the spin operators. The second class of the spin distributions is constructed with the help of the spin coherent states. The connection of the spin coherent states to the Stratonovich formalism (...)
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  38.  72
    Spin State Determination Using a Stern-Gerlach Device.M. I. Shirokov - 1998 - Foundations of Physics 28 (6):985-997.
    The well-known Stern-Gerlach device is proposed here for determination of a particle spin state instead of using it for measurement of spin observables. It is shown that measurement of particle momentum distributions (before and after the action of the device magnetic field) allows one to determine the particle initial spin state in the case of an arbitrary spin value. It is demonstrated that one cannot use for this purpose the usual treatment of the Stern-Gerlach experiment based (...)
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  39. Higher Spin Fields and Non-Holonomic Constraints.E. C. G. Sudarshan - 2003 - Foundations of Physics 33 (5):707-717.
    I review theories and problems of inconsistencies in the description of higher spin wave equations.
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  40.  17
    The Spin Structure of the Nucleon; A COMPASS Perspective.Andrea Bressan - 2010 - Foundations of Physics 40 (7):1030-1041.
    The COMPASS experiment at CERN is carrying on an experimental investigation of the spin structure of the nucleon, covering both longitudinal and transverse spin phenomena. In the first case, the central topic is the direct measurement of the gluon polarisation with the hope to solve the spin crisis first observed by EMC. The result shows that Δg/g is small around x g ≃0.1, and its first moment should not be larger than 0.2—0.3 in absolute value. About transverse (...)
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  41.  89
    Spin doctors.Michael Loughlin - 2010 - The Philosophers' Magazine 51 (51):68-73.
    Evidence Based Medicine is a thesis about reasoning: it champions a certain way of thinking about practice, one based not on the particular, not on thecontext-specific, but on broad statistical concerns. It emphasises “the increasing realisation of the power of probabilistic reasoning” to establish “a new epidemiologic standard”. So the claims of the “EBMers” imply a whole position in medical epistemology. But authors seem unwilling to give a detailed exposition, let alone defence of this position to critics. Hence the accusations (...)
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  42.  31
    How many properties of spin does a particle have?Alberto Corti & Marco Sanchioni - 2021 - Studies in History and Philosophy of Science Part A:111–121.
    A common assumption in non-relativistic quantum mechanics is that self-adjoint operators mathematically represent properties of quantum systems. Focusing on spin, we argue that a natural view considers observables as determinable properties and their eigenvalues as their corresponding determinates. We provide a taxonomy of the different views that one can hold, once it is accepted that spin can be modelled with the determinable-determinate relation. In particular, we present the two main families of views, dubbed Spin Monism and Pluralism, (...)
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  43. Spinning Shadows.Roy Sorensen - 2006 - Philosophy and Phenomenological Research 72 (2):345 - 365.
    If a spinning sphere casts a shadow, does the shadow also spin? This riddle is the point of departure for an investigation into the nature of shadow movement. A general theory of motion will encompass all moving things, not just physical objects. Ultimately, I argue that round shadows do indeed spin. Shadows are followers of the objects that cast them. Parts of the shadow correspond to parts of the leader, so motion of the caster's parts accounts for motions (...)
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  44. Unified spin gauge model and the top quark mass.J. S. R. Chisholm & R. S. Farwell - 1995 - Foundations of Physics 25 (10):1511-1522.
    Spin gauge models use a real Clifford algebraic structure Rp,q associated with a real manifold of dimension p + q to describe the fundamental interactions of elementary particles. This review provides a comparison between those models and the standard model, indicating their similarities and differences. By contrast with the standard model, the spin gauge model based on R3,8 generates intermediate boson mass terms without the need to use the Higgs-Kibble mechanism and produces a precise prediction for the mass (...)
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  45.  18
    SUSY, Spin-Statistics, and all that... On the contrast between Spin-Statistics and Wigner’s Theorem.Marco Sanchioni & Enrico Cinti - forthcoming - British Journal for the Philosophy of Science.
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  46.  62
    Spin and space.Robert Weingard & Gerrit Smith - 1982 - Synthese 50 (2):213 - 231.
    In this paper we will take a careful look at the well-known fact that a complete 2 rotation in three dimensional space, while leaving vectors, tensors and generally the integral representations of the rotation group unchanged, causes a sign change in the half-integral spinor representations of the rotation group. First, in a brief introduction, we review the origin of the sign change of spinors by a 2 rotation. Next, we analyze Aharonov and Susskind's (hereafter referred to as A. & S.) (...)
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  47.  63
    High-spin yrast states in the gamma-soft nuclei Pr-135 and Ce-134.E. S. Paul, C. Fox, A. J. Boston, H. J. Chantler, C. J. Chiara, R. M. Clark, M. Cromaz, M. Descovich, P. Fallon, D. B. Fossan, A. A. Hecht, T. Koike, I. Y. Lee, A. O. Macchiavelli, P. J. Nolan, K. Starosta, R. Wadsworth, I. Ragnarsson & Bob Wadsworth - unknown
    High-spin states have been studied in Pr-135(59), populated through the Cd-116(Na-23,4n) reaction at 115 MeV, using the Gammasphere gamma-ray spectrometer. The negative-parity yrast band has been significantly extended to spin similar to 45 (h) over bar and excitation energy 21.5 MeV, showing evidence for several rotational alignments. The positive-parity yrast band of Ce-135(58), populated through the p4n channel of this reaction, was also populated to spin similar to 38 (h) over bar and excitation energy 18 MeV. Cranking (...)
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  48.  52
    Making Sense of Spin.Neil C. Manson - 2012 - Journal of Applied Philosophy 29 (3):200-213.
    Spin” is a pejorative term for a ubiquitous form of communication. Spin is viewed by many as deceptive, and by others as bending or twisting the truth. But spin need not be deceptive and the metaphors are less than clear. The aim here is to clarify what spin is: spin is identified as a form of selective claim-making, where the process of selection is governed by an intention to bring about promotional perlocutionary effects. The process (...)
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  49. Relativistic spin on the Poincaré group.Ludger Hannibal - 1997 - Foundations of Physics 27 (1):43-56.
    Classical spinning particles are interpreted in terms of an underlying geometric theory. They are described by trajectories on the Poincaré group. Upon quantization an eleven-dimensional Kaluza-Klein type theory is obtained which incorporates spin and isospin in a local SL(2, C)×U(1)×SU(2) gauge theory, unifying gravity and the pre-Higgs standard model. The relation to parametrized relativistic quantum theory is discussed.
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  50. Electron spin or “classically non-describable two-valuedness”.Domenico Giulini - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):557-578.
    In December 1924 Wolfgang Pauli proposed the idea of an inner degree of freedom of the electron, which he insisted should be thought of as genuinely quantum mechanical in nature. Shortly thereafter Ralph Kronig and, independently, Samuel Goudsmit and George Uhlenbeck took up a less radical stance by suggesting that this degree of freedom somehow corresponded to an inner rotational motion, though it was unclear from the very beginning how literal one was actually supposed to take this picture, since it (...)
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