Results for ' “The function of measurement in modern physical science”'

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  1. The Function of Measurement in Modern Physical Science.Thomas S. Kuhn - 1961 - Isis 52 (2):161-193.
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  2. The function of measurement in modern physical sciences.Thomas S. Kuhn - 1961 - Isis 52:161-193.
  3.  21
    Precision measurement and the genesis of physics teaching laboratories in Victorian Britain.Graeme Gooday - 1990 - British Journal for the History of Science 23 (1):25-51.
    The appearance and proliferation of physics laboratories in the academic institutions of Britain between 1865 and 1885 is an established feature of Victorian science. However, neither of the two existing modern accounts of this development have adequately documented the predominant function of these early physics laboratories as centres for theteachingof physics, characteristically stressing instead the exceptional cases of the research laboratories at Glasgow and Cambridge. Hence these accounts have attempted to explain, somewhat misleadingly, the genesis of these laboratories (...)
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  4.  9
    Relativism and the Sociology of Scientific Knowledge.David Bloor - 2011 - In Steven D. Hales (ed.), A Companion to Relativism. Oxford, UK: Wiley‐Blackwell. pp. 431–455.
    This chapter contains sections titled: Abstract Introduction Disentangling the Social The Definition of Relativism The Confusion of Relativism and Idealism The Confusion Between Relativism and Subjectivism The Confusion Between Relativism and Particularism Are All Truths Absolute Truths? Propositions Concept Satisfaction Rules The Naturalistic Framework Verbum Sat Sapienti References.
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  5. Two Kindred Neo-Kantian Philosophies of Science: Pap’s The A Priori in Physical Theory and Cassirer’s Determinism and Indeterminism in Modern Physics.Thomas Mormann - 2021 - Journal of Transcendental Philosophy 1 (1).
    The main thesis of this paper is that Pap’s The Functional A Priori of Physical Theory (Pap 1946, henceforth FAP) and Cassirer’s Determinism and Indeterminism in Modern Physics (Cassirer 1937, henceforth DI) may be conceived as two kindred accounts of a late Neo-Kantian philosophy of science. They elucidate and clarify each other mutually by elaborating conceptual possibilities and pointing out affinities of neo-Kantian ideas with other currents of 20th century’s philosophy of science, namely, pragmatism, conventionalism, and logical empiricism. (...)
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  6. THE PHYSICAL STRUCTURE AND FUNCTION OF MIND: A MODERN SCIENTIFIC TRANSLATION OF ADVAITA PHILOSOPHY WITH IMPLICATIONS AND APPLICATION TO COGNITIVE SCIENCES AND NATURAL LANGUAGE COMPREHENSION.Varanasi Ramabrahmam - 2008 - In Proceedings of the national seminar on Sanskrit in the Modern Context conducted by Department of Sanskrit Studies and the School of humanities, University of Hyderabad between11-13, February 2008.
    The famous advaitic expressions -/- Brahma sat jagat mithya jivo brahma eva na apraha and Asti bhaati priyam namam roopamcheti amsa panchakam AAdya trayam brahma roopam tato dwayam jagat roopam -/- will be analyzed through physics and electronics and interpreted. -/- Four phases of mind, four modes of language acquisition and communication and seven cognitive states of mind participating in human cognitive and language acquisition and communication processes will be identified and discussed. -/- Implications and application of such an identification (...)
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  7.  7
    The Rise and Fall of the Fifth Force: Discovery, Pursuit, and Justification in Modern Physics.Allan Franklin - 2016 - Cham: Imprint: Springer. Edited by Ephraim Fischbach.
    This book provides the reader with a detailed and captivating account of the story where, for the first time, physicists ventured into proposing a new force of nature beyond the four known ones - the electromagnetic, weak and strong forces, and gravitation - based entirely on the reanalysis of existing experimental data. Back in 1986, Ephraim Fischbach, Sam Aronson, Carrick Talmadge and their collaborators proposed a modification of Newton's Law of universal gravitation. Underlying this proposal were three tantalizing pieces of (...)
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  8.  53
    On the process of measurement in quantum mechanics.P. Jordan - 1949 - Philosophy of Science 16 (4):269-278.
    It is the purpose of this note to comment on some important problems which have been already vividly discussed by several authors. Besides the well known former discussions of Schrödinger and J. v. Neumann I should like to mention here especially H. Margenau's article, “Critical Points in Modern Physical Theory,” which strongly influenced my present discussion.
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  9.  32
    Reduction, Unity and the Nature of Science: Kant's Legacy?Margaret Morrison - 2008 - Royal Institute of Philosophy Supplement 63:37-62.
    One of the hallmarks of Kantian philosophy, especially in connection with its characterization of scientific knowledge, is the importance of unity, a theme that is also the driving force behind a good deal of contemporary high energy physics. There are a variety of ways that unity figures in modern science—there is unity of method where the same kinds of mathematical techniques are used in different sciences, like physics and biology; the search for unified theories like the unification of electromagnetism (...)
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  10.  13
    On the Meaning of the Constant “c” in Modern Physics.Peter Mittelstaedt - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):45-53.
    In modern physics, the constant “c” plays a twofold role. On the one hand, “c” is the well known velocity of light in an empty Minkowskian space–time, on the other hand “c” is a characteristic number of Special Relativity that governs the Lorentz transformation and its consequences for the measurements of space–time intervals. We ask for the interrelations between these two, at first sight different meanings of “c”. The conjecture that the value of “c” has any influence on the (...)
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  11.  51
    On the Meaning of the Constant "c" in Modern Physics.Peter Mittelstaedt - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):45 - 53.
    In modern physics, the constant "c" plays a twofold role. On the one hand, "c" is the well known velocity of light in an empty Minkowskian space—time, on the other hand "c" is a characteristic number of Special Relativity that governs the Lorentz transformation and its consequences for the measurements of space—time intervals. We ask for the interrelations between these two, at first sight different meanings of "c". The conjecture that the value of "c" has any influence on the (...)
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  12.  4
    The Formalisms of Quantum Mechanics: An Introduction.Francois David - 2015 - Cham: Imprint: Springer.
    These lecture notes present a concise and introductory, yet as far as possible coherent, view of the main formalizations of quantum mechanics and of quantum field theories, their interrelations and their theoretical foundations. The "standard" formulation of quantum mechanics (involving the Hilbert space of pure states, self-adjoint operators as physical observables, and the probabilistic interpretation given by the Born rule) on one hand, and the path integral and functional integral representations of probabilities amplitudes on the other, are the standard (...)
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  13. The Inconsistency of Empiricist Argumentation Concerning the Problem of the Lawfulness of Nature.Dieter Wandschneider - 1986 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 17:131–142.
    The well-known empiricist apories of the lawfulness of nature prevent an adequate philosophical interpretation of empirical science until this day. Clarification can only be expected through an immanent refutation of the empiricist point of view. My argument is that Hume’s claim, paradigmatic for modern empiricism, is not just inconsequent, but simply contradictory: Empiricism denies that a lawlike character of nature can be substantiated. But, as is shown, anyone who claimes experience to be the basis of knowledge (as the empiricist (...)
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  14.  15
    The Philosophy of Physics (review). [REVIEW]Martin Curd - 2000 - Journal of the History of Philosophy 38 (4):602-603.
    In lieu of an abstract, here is a brief excerpt of the content:Reviewed by:The Philosophy of PhysicsMartin CurdRoberto Torretti. The Philosophy of Physics. Cambridge: Cambridge University Press, 1999. Pp. xvi + 512. Cloth, $64.95. Paper, $23.95.This is the first volume in a new Cambridge series, "The Evolution of Modern Philosophy." It is a historical work, tracing the interaction between physics and philosophy from the scientific revolution of the seventeenth century through general relativity and quantum mechanics in the twentieth century. (...)
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  15. Reduction, unity and the nature of science: Kant's legacy?Margaret Morrison - 2008 - Royal Institute of Philosophy Supplement 63:37-62.
    One of the hallmarks of Kantian philosophy, especially in connection with its characterization of scientific knowledge, is the importance of unity, a theme that is also the driving force behind a good deal of contemporary high energy physics. There are a variety of ways that unity figures in modern science—there is unity of method where the same kinds of mathematical techniques are used in different sciences, like physics and biology; the search for unified theories like the unification of electromagnetism (...)
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  16.  76
    Interpreting Bodies: Classical and Quantum Objects in Modern Physics.Elena Castellani (ed.) - 1998 - Princeton University Press.
    Bewildering features of modern physics, such as relativistic space-time structure and the peculiarities of so-called quantum statistics, challenge traditional ways of conceiving of objects in space and time. Interpreting Bodies brings together essays by leading philosophers and scientists to provide a unique overview of the implications of such physical theories for questions about the nature of objects. The collection combines classic articles by Max Born, Werner Heisenberg, Hans Reichenbach, and Erwin Schrodinger with recent contributions, including several papers that (...)
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  17. Beyond measure: modern physics, philosophy, and the meaning of quantum theory.Jim Baggott - 2004 - New York: Oxford University Press.
    Quantum theory is one the most important and successful theories of modern physical science. It has been estimated that its principles form the basis for about 30 per cent of the world's manufacturing economy. This is all the more remarkable because quantum theory is a theory that nobody understands. The meaning of Quantum Theory introduces science students to the theory's fundamental conceptual and philosophical problems, and the basis of its non-understandability. It does this with the barest minimum of (...)
     
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  18. Feyerabend's ‘The concept of intelligibility in modern physics’ (1948).Daniel Kuby - 2016 - Studies in History and Philosophy of Science Part A 57:57–63.
    This essay introduces the transcription and translation of Paul Feyerabend's "Der Begriff der Verständlichkeit in der modernen Physik" [The concept of intelligibility in modern physics] (1948), which is an early essay written by Paul Feyerabend in 1948 on the topic of intelligibility (Verständlichkeit) and visualizability (Anschaulichkeit) of physical theories. The existence of such essay was likely. It is listed in his bibliography as his first publication. Yet the content of the essay was unknown, as no original or copy (...)
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  19.  28
    On the origin of irreversibility in classical electrodynamic measurement processes.Darryl Leiter - 1984 - Foundations of Physics 14 (9):849-863.
    We present a new formalism for the microscopic classical electrodynamics of point charges in which the dynamic absence of self-interactions is enforced by the action principle, without eliminating the field degrees of freedom. In this context, free local radiation fields are dynamically prohibited. Instead radiation is carried by charge-field functionals of the current which have a negative parity under mathematical time reversal. This leads to the dynamic requirement of a physical time arrow in the equations of motion in order (...)
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  20.  11
    The institutionalization of global strategies for the transformation of society and education in the context of critical theory.Viktor V. Zinchenko - 2015 - Anthropological Measurements of Philosophical Research 7:50-66.
    The purpose. Critical social philosophy of education strives to provide a radical critique of existing models of education in the so-called Western models of democracy, creating progressive alternative models. In this context, the proposed integrative metatheory, which is based on classical and modern sources, concepts, aims for a comprehensive understanding and reconstruction of the phenomenon of education. One of the main tasks in the sphere of education’s democratization today, therefore, is to bring to education the results of restructuring and (...)
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  21.  11
    The institutionalization of global strategies for the transformation of society and education in the context of critical theory.Viktor V. Zinchenko - 2015 - Anthropological Measurements of Philosophical Research 7:50-66.
    The purpose. Critical social philosophy of education strives to provide a radical critique of existing models of education in the so-called Western models of democracy, creating progressive alternative models. In this context, the proposed integrative metatheory, which is based on classical and modern sources, concepts, aims for a comprehensive understanding and reconstruction of the phenomenon of education. One of the main tasks in the sphere of education’s democratization today, therefore, is to bring to education the results of restructuring and (...)
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  22. Physics and Philosophy: The Revolution in Modern Science.Werner Heisenberg - 1958 - New York: Harper.
    The seminal work by one of the most important thinkers of the twentieth century, Physics and Philosophy is Werner Heisenberg's concise and accessible narrative of the revolution in modern physics, in which he played a towering role. The outgrowth of a celebrated lecture series, this book remains as relevant, provocative, and fascinating as when it was first published in 1958. A brilliant scientist whose ideas altered our perception of the universe, Heisenberg is considered the father of quantum physics; he (...)
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  23.  4
    Electrical Brain Activity and Its Functional Connectivity in the Physical Execution of Modern Jazz Dance.Johanna Wind, Fabian Horst, Nikolas Rizzi, Alexander John & Wolfgang I. Schöllhorn - 2020 - Frontiers in Psychology 11.
    Besides the pure pleasure of watching a dance performance, dance as a whole-body movement is becoming increasingly popular for health-related interventions. However, the science-based evidence for improvements in health or well-being through dance is still ambiguous and little is known about the underlying neurophysiological mechanisms. This may be partly related to the fact that previous studies mostly examined the neurophysiological effects of imagination and observation of dance rather than the physical execution itself. The objective of this pilot study was (...)
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  24.  73
    On the Structure of Rationality in the Thought and Invention or Creation of Physical Theories.Michel Paty - 2011 - Principia: An International Journal of Epistemology 15 (2):303.
    We want to consider anew the question, which is recurrent along the history of philosophy, of the relationship between rationality and mathematics, by inquiring to which extent the structuration of rationality, which ensures the unity of its function under a variety of forms (and even according to an evolution of these forms), could be considered as homeomorphic with that of mathematical thought, taken in its movement and made concrete in its theories. This idea, which is as old as philosophy (...)
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  25.  45
    Ernst Cassirer and the Structural Conception of Objects in Modern Science: The Importance of the “Erlanger Programm”.Karol-Nobert Ihmig - 1999 - Science in Context 12 (4):513-529.
    The ArgumentCassirer's analyses of twentieth-century physics from the perspective of the philosophy of science focuses on the concept of the object of scientific experience. Within his concept of functional knowledge, he takes a structural stance and claims that it is specifically this concept of the object that has paved the way for modern science. This article aims, first, to show that Cassirer's interpretation of Felix Klein's “Erlanger Programm” provided the impetus for this view. Then, it analyzes Kant's conception of (...)
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  26.  73
    Philosophical problems concerning the meaning of measurement in physics.Henry Margenau - 1958 - Philosophy of Science 25 (1):23-33.
    The trouble with the idea of measurement is its seeming clarity, its obviousness, its implicit claim to finality in any inquisotory discourse. Its status in philosophy of science is taken to be utterly primitive; hence the difficulties it embodies, if any, tend to escape detection and scrutiny. Yet it cannot be primitive in the sense of being exempt from analysis; for if it were every measurement would require to be simply accepted as a protocol of truth, and one (...)
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  27. Causal potency of consciousness in the physical world.Danko D. Georgiev - 2024 - International Journal of Modern Physics B 38 (19):2450256.
    The evolution of the human mind through natural selection mandates that our conscious experiences are causally potent in order to leave a tangible impact upon the surrounding physical world. Any attempt to construct a functional theory of the conscious mind within the framework of classical physics, however, inevitably leads to causally impotent conscious experiences in direct contradiction to evolution theory. Here, we derive several rigorous theorems that identify the origin of the latter impasse in the mathematical properties of ordinary (...)
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  28. Forces and fields: the concept of action at a distance in the history of physics.Mary B. Hesse - 1961 - Mineola, N.Y.: Dover Publications.
    This history of physics focuses on the question, "How do bodies act on one another across space?" The variety of answers illustrates the function of fundamental analogies or models in physics as well as the role of so-called unobservable entities. Forces and Fields presents an in-depth look at the science of ancient Greece, and it examines the influence of antique philosophy on seventeenth-century thought. Additional topics embrace many elements of modern physics--the empirical basis of quantum mechanics, wave-particle duality (...)
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  29.  47
    The concept of intelligibility in modern physics.Paul K. Feyerabend - 2016 - Studies in History and Philosophy of Science Part A 57:64-66.
  30.  35
    Critical points in modern physical theory.Henry Margenau - 1937 - Philosophy of Science 4 (3):337-370.
    Recent discussions in the physical literature, designed to clarify the logical position of modern physical theory, have brought to light an amazing divergence of fundamental attitudes which may well bewilder the careful student of physics as well as philosophy. Quantum mechanics, representing an abstract formalism, should be capable of having its logical structure analyzed with great precision like any other mathematical discipline. Its consequences in all problems to which its method can be applied are so unambiguous, consistent, (...)
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  31.  50
    The Function of Boundary Conditions in the Physical Sciences.Julia R. S. Bursten - 2021 - Philosophy of Science 88 (2):234-257.
    Early philosophical accounts of explanation mistook the function of boundary conditions for that of contingent facts. I diagnose where this misunderstanding arose and establish that it persists. I...
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  32.  15
    Does the Conception of Spirit of the Muteqaddimūn Period Theologians Have a Correspondence in Modern Science?Mehmet Ödemi̇ş - 2023 - Kader 21 (1):270-300.
    The nature of the human being in general and the existence and nature of the soul in particular has been discussed throughout the history of thought. As a knowing subject, man firstly tried to know himself. While making this questioning, he not only wondered about his phenomenal existence (body), but also about his spiritual identity, which he did not doubt was out there somewhere. This curiosity has created an ongoing scientific journey from anatomy to physiology, from science to philosophy, from (...)
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  33.  26
    Betting on the outcomes of measurements: a Bayesian theory of quantum probability.Itamar Pitowsky - 2003 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (3):395-414.
    We develop a systematic approach to quantum probability as a theory of rational betting in quantum gambles. In these games of chance the agent is betting in advance on the outcomes of several incompatible measurements. One of the measurements is subsequently chosen and performed and the money placed on the other measurements is returned to the agent. We show how the rules of rational betting imply all the interesting features of quantum probability, even in such finite gambles. These include the (...)
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  34.  20
    Theoretical functions in physical science.John Forge - 1984 - Erkenntnis 21 (1):1 - 29.
    The aim of this paper is to give an account of theoreticity which captures the preanalytic conception of a theoretical function, which is precise and yet which expresses what is significant about theoretical functions. The point of departure for this account is a recent discussion of the topic by Balzer and Moulines. On the basis of criticism of this discussion and on the basis of an examination of laboratory measurement, an account of theoreticity is proposed.
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  35. Betting on the outcomes of measurements: A bayesian theory of quantum probability.Itamar Pitowsky - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 34 (3):395-414.
    We develop a systematic approach to quantum probability as a theory of rational betting in quantum gambles. In these games of chance, the agent is betting in advance on the outcomes of several (finitely many) incompatible measurements. One of the measurements is subsequently chosen and performed and the money placed on the other measurements is returned to the agent. We show how the rules of rational betting imply all the interesting features of quantum probability, even in such finite gambles. These (...)
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  36.  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 particles. Their comparative (...)
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  37.  62
    The Role of Mathematics in Modern Physical Theory.Alexander William Stern - 1929 - The Monist 39 (2):263-272.
  38.  22
    The Concept of Time in Early Twentieth-Century Philosophy: A Philosophical Thematic Atlas.Flavia Santoianni (ed.) - 2015 - Cham: Springer Verlag.
    Augustine’s analysis of time in Book XI of Confessions represents for Ludwig Wittgenstein a good example of a philosophical question. In dealing with such theme, his thought undergoes relevant changes. In the Philosophical Remarks, written more than 10 years after the drafting of the Tractatus, the Austrian philosopher holds that the essence of the world can be expressed in the grammar of language. Philosophy as “custodian” of grammar can grasp the essence of the world by excluding nonsensical combinations of signs. (...)
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  39.  43
    Physics and speculative philosophy: potentiality in modern science.David Ray Griffin, Michael Epperson & Timothy E. Eastman (eds.) - 2016 - Boston: De Gruyter.
    Through both an historical and philosophical analysis of the concept of possibility, we show how including both potentiality and actuality as part of the real is both compatible with experience and contributes to solving key problems of fundamental process and emergence. The book is organized into four main sections that incorporate our routes to potentiality: (1) potentiality in modern science [history and philosophy; quantum physics and complexity]; (2) Relational Realism [ontological interpretation of quantum physics; philosophy and logic]; (3) Process (...)
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  40.  15
    Physics and Speculative Philosophy: Potentiality in Modern Science.Timothy E. Eastman, Michael Epperson & David Ray Griffin (eds.) - 2016 - Boston: De Gruyter.
    Through both an historical and philosophical analysis of the concept of possibility, we show how including both potentiality and actuality as part of the real is both compatible with experience and contributes to solving key problems of fundamental process and emergence. The book is organized into four main sections that incorporate our routes to potentiality: potentiality in modern science [history and philosophy; quantum physics and complexity]; Relational Realism [ontological interpretation of quantum physics; philosophy and logic]; Process Physics [ontological interpretation (...)
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  41.  60
    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 the search for (...)
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  42.  21
    The Estimative Functions of Physical Theory.Paul M. Quay - 1975 - Studies in History and Philosophy of Science Part A 6 (2):125.
    Attention is drawn to two closely related functions served by scientific theory which are of fundamental importance in physical science but as yet little discussed in philosophy. As indicated by their names, they constitute the theoretical basis of physical measurements. After analysing some historically important examples and sketching the historical development of these ideas, this paper examines the similarities and differences between the estimate functions of theory and such well-known functions as prediction and explanation. The pervasiveness of the (...)
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  43.  3
    The Significance of Philosophical Anthropology in Determining the Methodology of Modern Scientific Research.O. N. Kubalskyi - 2023 - Anthropological Measurements of Philosophical Research 24:37-45.
    _Purpose._ This research involves revealing the methodological significance of the anthropological understanding of values for conducting modern scientific research. _Theoretical basis._ Philosophical anthropology acts as an epistemological basis for answers to ontological questions that are part of the structure of such problems in modern science as the construction of a scientific picture of the world, the ordering of data of natural attitude, and anthropocosmism. The ontological basis for the formation of the anthropological theory of values is the teaching (...)
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  44.  46
    On the Challenges of Measurement in the Human Sciences.Cristian Larroulet Philippi - 2023 - Dissertation, University of Cambridge
    Measurement practices are central to most sciences. In the human sciences, however, it remains controversial whether the measurement of human attributes—depression, happiness, intelligence, etc.—has been successful. Are, say, widely used depression questionnaires valid measuring instruments? Can we trust self-reported happiness scales to deliver quantitative measurements as it is sometimes claimed? These and related questions are till today hotly disputed. There are two main frameworks under which human measurements are studied and criticized. One is the so-called construct validity framework. (...)
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  45.  11
    On the Structure of Rationality in the Thought and Invention or Creation of Physical Theories DOI:10.5007/1808-1711.2011v15n2p303. [REVIEW]Michel Paty - 2011 - Principia: An International Journal of Epistemology 15 (2):303-332.
    We want to consider anew the question, which is recurrent along the history of philosophy, of the relationship between rationality and mathematics, by inquiring to which extent the structuration of rationality, which ensures the unity of its function under a variety of forms, could be considered as homeomorphic with that of mathematical thought, taken in its movement and made concrete in its theories. This idea, which is as old as philosophy itself, although it has not been dominant, has still (...)
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  46.  4
    The history of physics: a very short introduction.J. L. Heilbron - 2018 - Oxford: Oxford University Press.
    How does the physics we know today-- a highly professionalized enterprise, inextricably linked to government and industry-- link back to its origins as a liberal art in ancient Greece? What is the path that leads from the old philosophy of nature and its concern with humankind's place in the universe to modern massive international projects that hunt down fundamental particles and industrial laboratories that manufacture marvels? John Heilbron's fascinating history of physics introduces us to Islamic astronomers and mathematicians, calculating (...)
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  47. What is a Compendium? Parataxis, Hypotaxis, and the Question of the Book.Maxwell Stephen Kennel - 2013 - Continent 3 (1):44-49.
    Writing, the exigency of writing: no longer the writing that has always (through a necessity in no way avoidable) been in the service of the speech or thought that is called idealist (that is to say, moralizing), but rather the writing that through its own slowly liberated force (the aleatory force of absence) seems to devote itself solely to itself as something that remains without identity, and little by little brings forth possibilities that are entirely other: an anonymous, distracted, deferred, (...)
     
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  48.  20
    On the Theory of Measurement in Quantum Mechanical Systems.Loyal Durand - 1960 - Philosophy of Science 27 (2):115-133.
    This paper is concerned with the description of the process of measurement within the context of a quantum theory of the physical world. It is noted that quantum mechanics permits a quasi-classical description of those macroscopic phenomena in terms of which the observer forms his perceptions. Thus, the process of measurement in quantum mechanics can be understood on the quasi-classical level by transcribing from the strictly classical observables of Newtonian physics to their quasi-classical counterparts the known rules (...)
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  49.  79
    Behavioral momentum and the law of effect.John A. Nevin & Randolph C. Grace - 2000 - Behavioral and Brain Sciences 23 (1):73-90.
    In the metaphor of behavioral momentum, the rate of a free operant in the presence of a discriminative stimulus is analogous to the velocity of a moving body, and resistance to change measures an aspect of behavior that is analogous to its inertial mass. An extension of the metaphor suggests that preference measures an analog to the gravitational mass of that body. The independent functions relating resistance to change and preference to the conditions of reinforcement may be construed as convergent (...)
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    Znanost, družba, vrednote =.A. Ule - 2006 - Maribor: Založba Aristej.
    In this book, I will discuss three main topics: the roots and aims of scientific knowledge, scientific knowledge in society, and science and values I understand scientific knowledge as being a planned and continuous production of the general and common knowledge of scientific communities. I begin my discussion with a brief analysis of the main differences between sciences, on the one hand, and everyday experience, philosophies, religions, and ideologies, on the other. I define the concept of science as a set (...)
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