Results for 'Observation in science'

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  1.  17
    Julie Zahle.Participant Observation & Objectivity In Anthropology - 2013 - In Hanne Andersen, Dennis Dieks, Wenceslao González, Thomas Uebel & Gregory Wheeler (eds.), New Challenges to Philosophy of Science. Springer Verlag. pp. 365.
  2.  76
    Philosophy of Science Association Observation Reconsidered.Observation Reconsidered - 1984 - Philosophy of Science 51 (1):23-43.
    Several arguments are considered which purport to demonstrate the impossibility of theory-neutral observation. The most important of these infers the continuity of observation with theory from the presumed continuity of perception with cognition, a doctrine widely espoused in recent cognitive psychology. An alternative psychological account of the relation between cognition and perception is proposed and its epistemological consequences for the observation/theory distinction are then explored.
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  3. Theory and observation in science.Jim Bogen - 2009 - Stanford Encyclopedia of Philosophy.
    Scientists obtain a great deal of the evidence they use by observingnatural and experimentally generated objects and effects. Much of thestandard philosophical literature on this subject comes from20th century logical positivists and empiricists, theirfollowers, and critics who embraced their issues and accepted some oftheir assumptions even as they objected to specific views. Theirdiscussions of observational evidence tend to focus on epistemologicalquestions about its role in theory testing. This entry follows theirlead even though observational evidence also plays important andphilosophically interesting roles (...)
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  4. The concept of observation in science and philosophy.Dudley Shapere - 1982 - Philosophy of Science 49 (4):485-525.
    Through a study of a sophisticated contemporary scientific experiment, it is shown how and why use of the term 'observation' in reference to that experiment departs from ordinary and philosophical usages which associate observation epistemically with perception. The role of "background information" is examined, and general conclusions are arrived at regarding the use of descriptive language in and in talking about science. These conclusions bring out the reasoning by which science builds on what it has learned, (...)
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  5. Theories and Observation in Science.Richard E. Grandy - 1973
  6. Anthropic bias: observation selection effects in science and philosophy.Nick Bostrom - 2002 - New York: Routledge.
    _Anthropic Bias_ explores how to reason when you suspect that your evidence is biased by "observation selection effects"--that is, evidence that has been filtered by the precondition that there be some suitably positioned observer to "have" the evidence. This conundrum--sometimes alluded to as "the anthropic principle," "self-locating belief," or "indexical information"--turns out to be a surprisingly perplexing and intellectually stimulating challenge, one abounding with important implications for many areas in science and philosophy. There are the philosophical thought experiments (...)
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  7.  2
    Building Out Into the Dark: Theory and Observation in Science and Psychoanalysis.Robert Caper - 2009 - Routledge.
    In this book, Robert Caper provides the reader with an introduction to psychoanalysis focusing explicitly on whether psychoanalysis is part of the sciences, and if not, where it belongs. Many psychoanalysts, beginning with Freud, have considered their discipline a science. In this book, Caper examines this claim and investigates the relationship of theory to observation in both philosophy and the experimental sciences and explores how these observations differ from those made in psychoanalytic interpretation. _Building Out into the Dark_ (...)
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  8.  9
    Changes Observed in Views of Nature of Science During a Historically Based Unit.David Wÿss Rudge, David Paul Cassidy, Janice Marie Fulford & Eric Michael Howe - 2014 - Science & Education 23 (9):1879-1909.
  9. Observation and “Science” in British anthropology before the “Malinowskian Revolution”.George Baca - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 54:81-83.
  10. Observation and Experimentation in Science: New methodological perspectives, ed. W. González.José Ferreirós (ed.) - 2011 - La Coruña:
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  11.  5
    From Observables to Unobservables in Science and Philosophy.Richard J. Connell - 2000 - Upa.
    From Observables to Unobservables in Science and Philosophy focuses on knowing unobservable real things or attributes by means of observing real things or attributes, a topic central to twentieth-century scientific philosophy. Engaging both current and perennial issues in metaphysics, epistemology, philosophy of nature and of science, Connell writes from a realist perspective. He adds a cogent, well written, and much needed voice to the current debate over foundationalism from the perspective of the undersubscribed quarter of empirical realism. Principal (...)
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  12. Anthropic Bias: Observation Selection Effects in Science and Philosophy.Nick Bostrom - 2002 - New York: Routledge.
    _Anthropic Bias_ explores how to reason when you suspect that your evidence is biased by "observation selection effects"--that is, evidence that has been filtered by the precondition that there be some suitably positioned observer to "have" the evidence. This conundrum--sometimes alluded to as "the anthropic principle," "self-locating belief," or "indexical information"--turns out to be a surprisingly perplexing and intellectually stimulating challenge, one abounding with important implications for many areas in science and philosophy. There are the philosophical thought experiments (...)
     
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  13.  19
    Elegance in science: the beauty of simplicity.Ian Glynn - 2010 - New York: Oxford University Press.
    Science is often thought of as a methodical but dull activity. But the finest science, the breakthroughs most admired and respected by scientists themselves, is characterized by elegance." "What does elegance mean in the context of science? Economy is a considerable part of it; creativity too. Sometimes, a suggested solution is so simple and neat that it elicits an exclamation of wonder from the observer. The greatest science, whether primarily theoretical or experimental, reflects a creative imagination." (...)
  14. Second-Order Observation in Social Science: Autopoietic Foundations.E. Buchinger - 2014 - Constructivist Foundations 10 (1):32-33.
    Open peer commentary on the article “Second-Order Science: Logic, Strategies, Methods” by Stuart A. Umpleby. Upshot: Second-order science requires a specific methodology. It thereby reverses the classical observer-observed relation in favor of the observed - i.e., the first-order observers - if the principle of autopoiesis is acknowledged.
     
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  15. Observability and Observation in Physical Science.Peter Kosso - 1986 - Dissertation, University of Minnesota
    The concept of observability of entities in physical science is typically analyzed in terms of the nature and significance of a dichotomy between observables and unobservables. In the present work, however, this categorization is resisted and observability is analyzed in a descriptive way in terms of the information which one can receive through interaction with objects in the world. The account of interaction and the transfer of information is done using applicable scientific theories. In this way, the question of (...)
     
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  16.  96
    Guidelines for Research Ethics in Science and Technology.National Committee For Research Ethics In Science And Technology - 2009 - Jahrbuch für Wissenschaft Und Ethik 14 (1):255-266.
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  17.  3
    Observation and theory in science.Ernest Nagel - 1971 - Baltimore,: Johns Hopkins University Press. Edited by Sylvain Bromberger & Adolf Grünbaum.
    Originally published in 1971. The three contributions collected in this volume deal with different aspects of a single theme—the logical status of scientific theories in their relation to observation. These lectures, authored by different thinkers, treat this theme in connection with some controversies in the philosophy of science. A nonspecialist who reads these lectures should realize that the theme itself is a perennial one with an ancient lineage. It has concerned philosophers from the earliest era of philosophy on (...)
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  18. Theory and Observation in the Philosophy of Science.Dale Jacquette - 2004 - History of Philosophy & Logical Analysis 7.
    This essay seeks to rehabilitate the distinction between theory and observation in philosophy of science. Historical background to the distinction in the early development of empiricism is highlighted for clues to its later rejection as overly simplistic, and for an indication of its useful purpose in scientific thinking. The post-positivistic objection that all observation is theory-laden is considered, and key arguments against the theory-observation distinction are evaluated and criticized as inconclusive. At most such attempts to undermine (...)
     
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  19.  63
    Introduction to Monist Alternatives to Physicalism.Max Velmans, Yujin Nagasawa, In M. Velmans & Y. Nagasawa - 2012 - Journal of Consciousness Studies 19 (9-10):7-18.
    This Introduction to a Journal of Consciousness Studies Special Issue on Monist Alternatives to Physicalism summarises some of the basic problems of Physicalism and common fallacies in arguments for its defence that are found in the philosophical and scientific literature. It then introduces six monist alternatives: 1) a form of emergent panpsychism developed by William Seager; 2) a novel introduction to the process philosophy of A.N. Whitehead by Anderson Weekes; 3) a review of current developments in Russellian Monism by Torin (...)
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  20.  46
    Opinion on the ethical implications of new health technologies and citizen participation.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):293-302.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 293-302.
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  21.  24
    Statement on the formulation of a code of conduct for research integrity for projects funded by the European Commission.European Group on Ethics in Science and New Technologies - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):237-240.
    Name der Zeitschrift: Jahrbuch für Wissenschaft und Ethik Jahrgang: 20 Heft: 1 Seiten: 237-240.
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  22.  2
    Observation and Theory in Science. With an Introduction by Stephen F. Barker.Ernest Nagel, Sylvain Bromberger & Adolf Grünbaum - 1971 - Baltimore and London: The Johns Hopkins Press. Edited by Sylvain Bromberger & Adolf Grünbaum.
  23. Observation and Theory in Science.Maurice Mandelbaum (ed.) - 1971 - The Johns Hopkins Press.
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  24.  8
    The standard observer in the sciences of man.William Earle - 1952 - Ethics 63 (4):293-299.
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  25.  27
    Observation and interpretation in science.L. O. Kattsoff - 1947 - Philosophical Review 56 (6):682-689.
  26.  1
    Theory and Observation in the Philosophy of Science.Dale Jacquette - 2004 - History of Philosophy & Logical Analysis 7 (1):177-196.
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  27.  6
    Situated observation in Bohmian mechanics.Jeffrey A. Barrett - 2021 - Studies in History and Philosophy of Science Part A 88 (C):345-357.
  28.  83
    Optics, Imagination, and the Construction of Scientific Observation in Kepler’s New Science.Raz D. Chen-Morris - 2001 - The Monist 84 (4):453-486.
    A major intellectual shift between Copernicus and the mid-17th century was the rejection of Aristotelian assertions concerning the relationship of mathematics to physical nature. Aristotle asserted that “The minute accuracy of mathematics is not to be demanded in all cases, but only in the case of things which have no matter. Therefore its method is not that of natural science; for presumably all nature has matter.” Thus, he pulled out the rug from under the feet of the aspiration to (...)
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  29.  30
    "Observation and Theory in Science," by Ernest Nagel, Sylvain Bromberger, and Adolf Grünbaum. [REVIEW]Richard J. Blackwell - 1972 - Modern Schoolman 50 (1):135-135.
  30. Circles without Circularity, Testing Theories by Theory-laden Observations in An Intimate Relation. Studies in the History and Philosophy of Science.M. Carrier - 1989 - Boston Studies in the Philosophy of Science 116:405-428.
  31.  21
    Future of Work, Future of Society.European Group on Ethics in Science and New Technologies - 2019 - Jahrbuch für Wissenschaft Und Ethik 24 (1):391-424.
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  32. Feminism in science: an imposed ideology and a witch hunt.Martín López Corredoira - 2021 - Scripta Philosophiae Naturalis 20:id. 3.
    Metaphysical considerations aside, today’s inheritors of the tradition of natural philosophy are primarily scientists. However, they are oblivious to the human factor involved in science and in seeing how political, religious, and other ideologies contaminate our visions of nature. In general, philosophers observe human (historical, sociological, and psychological) processes within the construction of theories, as well as in the development of scientific activity itself. -/- In our time, feminism—along with accompanying ideas of identity politics under the slogan “diversity, inclusion, (...)
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  33.  31
    New Methodological Perspectives on Observation and Experimentation in Science.Wenceslao J. González (ed.) - 2010 - Oleiros: Netbiblo.
    New Methodological Perspectives on Observation and Experimentation in Science deals with a classic topic that is seen from new angles.
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  34.  14
    Complementary Observables in Quantum Mechanics.Jukka Kiukas, Pekka Lahti, Juha-Pekka Pellonpää & Kari Ylinen - 2019 - Foundations of Physics 49 (6):506-531.
    We review the notion of complementarity of observables in quantum mechanics, as formulated and studied by Paul Busch and his colleagues over the years. In addition, we provide further clarification on the operational meaning of the concept, and present several characterisations of complementarity—some of which new—in a unified manner, as a consequence of a basic factorisation lemma for quantum effects. We work out several applications, including the canonical cases of position–momentum, position–energy, number–phase, as well as periodic observables relevant to spatial (...)
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  35.  18
    Astronomical Observations in the Maghrib in the Fourteenth and Fifteenth Centuries.Julio Samsó - 2001 - Science in Context 14 (1-2):165-178.
    An Andalusian tradition of zījes seems to have been predominant in the Maghrib due to the popularity of the zīj of Ibn Is[hdotu]āq al-Tūnisī and derived texts compiled in the fourteenth century. This tradition computed sidereal planetary longitudes and allowed the calculation of tropical longitudes by using trepidation tables based on models designed in al-Andalus by Abū Is[hdotu]āq ibn al-Zarqālluh. This tradition also used Ibn al-Zarqālluh's model to calculate the obliquity of the ecliptic, which implied that this angle had a (...)
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  36.  20
    Observation and Theory in Science. By Ernest Nagel, Sylvain Bromberger, and Adolf Grünbaum. Baltimore: The Johns Hopkins Press; Toronto: Copp Clark. 1971, Pp. 134. $7.65. [REVIEW]Charles G. Morgan - 1972 - Dialogue 11 (4):651-655.
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  37.  2
    Review of Self-observation in the social sciences. [REVIEW]Edwin E. Gantt - 2016 - Journal of Theoretical and Philosophical Psychology 36 (1):57-57.
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  38.  12
    Structures in Science: Heuristic Patterns Based on Cognitive Structures An Advanced Textbook in Neo-Classical Philosophy of Science.Theo A. F. Kuipers - 2001 - Dordrecht, Netherland: Kluwer Academic Publishers.
    The philosophy of science has lost its self-confidence, witness the lack of advanced textbooks in contrast to the abundance of elementary textbooks. Structures in Science is an advanced textbook that explicates, updates, accommodates, and integrates the best insights of logical-empiricism and its main critics. This `neo-classical approach' aims at providing heuristic patterns for research. The book introduces four ideal types of research programs and reanimates the distinction between observational laws and proper theories. It explicates various patterns of explanation (...)
  39.  41
    Fiction in Science? Exploring the Reality of Theoretical Entities.Ann-Sophie Barwich - 2014 - In Guido Bonino, Greg Jesson & Javier Cumpa (eds.), Defending Realism: Ontological and Epistemological Investigations. Boston: De Gruyter. pp. 291-310.
    This paper revisits the concept of fiction employed in recent debates about the reality of theoretical entities in the philosophy of science. From an anti-realist perspective the dependence of evidence for some scientific entities on mediated forms of observation and modelling strategies reflects a degree of construction that is argued to closely resemble fiction. As a realist’s response to this debate, this paper provides an analysis of fictional entities in comparison to real ones. I argue that the distinction (...)
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  40.  72
    Galileo's lunar observations in the context of medieval lunar theory.Roger Ariew - 1984 - Studies in History and Philosophy of Science Part A 15 (3):213-226.
  41. On serendipity in science: discovery at the intersection of chance and wisdom.Samantha M. Copeland - 2017 - Synthese (6):1-22.
    ‘Serendipity’ is a category used to describe discoveries in science that occur at the intersection of chance and wisdom. In this paper, I argue for understanding serendipity in science as an emergent property of scientific discovery, describing an oblique relationship between the outcome of a discovery process and the intentions that drove it forward. The recognition of serendipity is correlated with an acknowledgment of the limits of expectations about potential sources of knowledge. I provide an analysis of serendipity (...)
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  42.  17
    Dual Mating Strategies Observed in Male Clients of Female Sex Workers.Jade Butterworth, Samuel Pearson & William von Hippel - 2023 - Human Nature 34 (1):46-63.
    Humans have a complex and dynamic mating system, and there is evidence that our modern sexual preferences stem from evolutionary pressures. In the current paper we explore male use of a dual mating strategy: simultaneously pursuing both a long-term relationship (pair-bonding) as well as short-term, extra-pair copulations (variety-seeking). The primary constraint on such sexual pursuits is partner preferences, which can limit male behavior and hence cloud inferences about male preferences. The aim of this study was to investigate heterosexual male mating (...)
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  43. Truth and representation in science: Two inspirations from art.Anjan Chakravartty - 2010 - Boston Studies in the Philosophy of Science:33-50.
    Realists regarding scientific knowledge – those who think that our best scientific representations truly describe both observable and unobservable aspects of the natural world – have special need of a notion of approximate truth. Since theories and models are rarely considered true simpliciter, the realist requires some means of making sense of the claim that they may be false and yet close to the truth, and increasingly so over time. In this paper, I suggest that traditional approaches to approximate truth (...)
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  44. Anthropological Circles Observations on the Nature of Views of Man in Science, Philosophy and Religion.Knut Hanneborg - 1962 - Munksgaard.
     
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  45. Imagination Rather Than Observation in Econometrics: Ragnar Frisch’s Hypothetical Experiments as Thought Experiments.Catherine Https://Orcidorg Herfeld - 2019 - Hopos: The Journal of the International Society for the History of Philosophy of Science 9 (1):35-74.
    In economics, thought experiments are frequently justified by the difficulty of conducting controlled experiments. They serve several functions, such as establishing causal facts, isolating tendencies, and allowing inferences from models to reality. In this paper, I argue that thought experiments served a further function in economics: facilitating the quantitative definition and measurement of the theoretical concept of utility, thereby bridging the gap between theory and statistical data. I support my argument by a case study, the “hypothetical experiments” of the Norwegian (...)
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  46.  58
    Scientific Testimony. Its roles in science and society.Mikkel Gerken - 2022 - Oxford, UK: Oxford University Press.
    Scientific Testimony concerns the roles of scientific testimony in science and society. The book develops a positive alternative to a tradition famously expressed by the slogan of the Royal Society Nullius in verba ("Take nobody's word for it"). This book argues that intra-scientific testimony—i.e., testimony between collaborating scientists—is not in conflict with the spirit of science or an add-on to scientific practice. On the contrary, intra-scientific testimony is a vital part of science. This is illustrated by articulating (...)
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  47.  28
    Theory of Mind From Observation in Cognitive Models and Humans.Thuy Ngoc Nguyen & Cleotilde Gonzalez - 2022 - Topics in Cognitive Science 14 (4):665-686.
    A major challenge for research in artificial intelligence is to develop systems that can infer the goals, beliefs, and intentions of others (i.e., systems that have theory of mind, ToM). In this research, we propose a cognitive ToM framework that uses a well-known theory of decisions from experience to construct a computational representation of ToM. Instance-based learning theory (IBLT) is used to construct a cognitive model that generates ToM from the observation of other agents' behavior. The IBL model of (...)
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  48.  81
    Hidden Variables and Incompatible Observables in Quantum Mechanics.Benjamin Feintzeig - 2015 - British Journal for the Philosophy of Science 66 (4):905-927.
    This article takes up a suggestion that the reason we cannot find certain hidden variable theories for quantum mechanics, as in Bell’s theorem, is that we require them to assign joint probability distributions on incompatible observables. These joint distributions are problematic because they are empirically meaningless on one standard interpretation of quantum mechanics. Some have proposed getting around this problem by using generalized probability spaces. I present a theorem to show a sense in which generalized probability spaces can’t serve as (...)
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  49.  63
    On serendipity in science: discovery at the intersection of chance and wisdom.Samantha Copeland - 2019 - Synthese 196 (6):2385-2406.
    Abstract‘Serendipity’ is a category used to describe discoveries in science that occur at the intersection of chance and wisdom. In this paper, I argue for understanding serendipity in science as an emergent property of scientific discovery, describing an oblique relationship between the outcome of a discovery process and the intentions that drove it forward. The recognition of serendipity is correlated with an acknowledgment of the limits of expectations about potential sources of knowledge. I provide an analysis of serendipity (...)
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  50. Torbjorn Tannsjo.in Defence Of Science - 1994 - In Dag Prawitz & Dag Westerståhl (eds.), Logic and Philosophy of Science in Uppsala. Kluwer Academic Publishers. pp. 345.
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