Results for 'Peter Taylor'

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  1.  1
    Christ on Parnassus.Peter Taylor Forsyth - 1911 - New York [etc.]: Hodder & Stoughton.
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  2.  96
    The Cambridge Companion to Arabic Philosophy.Peter Adamson & Richard C. Taylor (eds.) - 2004 - New York: Cambridge University Press.
    Philosophy written in Arabic and in the Islamic world represents one of the great traditions of Western philosophy. Inspired by Greek philosophical works and the indigenous ideas of Islamic theology, Arabic philosophers from the ninth century onwards put forward ideas of great philosophical and historical importance. This collection of essays, by some of the leading scholars in Arabic philosophy, provides an introduction to the field by way of chapters devoted to individual thinkers or groups, especially during the 'classical' period from (...)
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  3.  25
    Shape constancy and theory of mind: is there a link?Peter Mitchell & Laura M. Taylor - 1999 - Cognition 70 (2):167-190.
  4.  57
    ESP: extrasensory perception or effect of subjective probability?Peter Brugger & Kirsten I. Taylor - 2003 - Journal of Consciousness Studies 10 (6-7):6-7.
    This paper consists of two parts. In the first, we discuss the neuropsychological correlates of belief in a 'paranormal' or magical causation of coincidences. In particular, we review experimental evidence demonstrating that believers in ESP and kindred forms of paranormal phenomena differ from disbelievers with respect to indices of sequential response production and semantic-associative processing. Not only do believers judge artificial coincidences as more 'meaningful' than disbelievers, they also more strongly suppress coincidental productions (i.e. repetitions) in their generation of random (...)
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  5.  3
    The Christian ethic of war.Peter Taylor Forsyth - 1916 - New York,: Longmans, Green.
  6. Factors That Influence Institutional Review Board Members' Commitment to Their Role Responsibilities.Danielle Whicher, Peter Currie & Holly Taylor - 2009 - IRB: Ethics & Human Research 31 (5):15-19.
    Because many institutions struggle to determine how best to support their institutional review board programs, we conducted an exploratory study to identify the individual, group, and institutional factors that may influence commitment to the role responsibilities of being on an IRB. We defined this commitment as consisting of time spent preparing for IRB meetings, views of the importance of serving on an IRB, time dedicated to IRB activities relative to other academic committee service, and willingness to attend IRB meetings. Our (...)
     
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  7.  26
    The case for academic plagiarism education: A PESA Executive collective writing project.Michael A. Peters, Liz Jackson, Ruyu Hung, Carl Mika, Rachel Anne Buchanan, Marek Tesar, Tina Besley, Nina Hood, Sean Sturm, Bernadette Farrell, Andrew Madjar & Taylor Webb - 2022 - Educational Philosophy and Theory 54 (9):1307-1323.
  8.  67
    Heritability and Heterogeneity: The Limited Relevance of Heritability in Investigating Genetic and Environmental Factors.Peter Taylor - 2006 - Biological Theory 1 (2):150-164.
    Many psychometricians and behavioral geneticists believe that high heritability of IQ test scores within racial groups coupled with environmental hypotheses failing to account for the differences between the mean scores for groups lends plausibility to explanations of mean differences in terms of genetic factors. I show that heritability estimates and the statistical analysis of variance on which they are based have limited relevance in exposing genetic and environmental factors operating within any single group or population. I begin with agricultural investigations, (...)
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  9.  63
    Heritability and Heterogeneity: The Irrelevance of Heritability in Explaining Differences between Means for Different Human Groups or Generations.Peter Taylor - 2006 - Biological Theory 1 (4):392-401.
    Many psychometricians and behavioral geneticists believe that high heritability of IQ test scores within racial groups coupled with environmental hypotheses failing to account for the differences between the mean scores for groups lends plausibility to explanations of mean differences in terms of genetic factors. This two-component argument cannot be sustained when viewed in the light of the conceptual and methodological themes introduced in Taylor . These themes concern the difficulties of moving from the statistical analysis of variance of observed (...)
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  10.  15
    Stress dependences of dislocation velocities.Peter P. Gillis, John J. Gilman & John W. Taylor - 1969 - Philosophical Magazine 20 (164):279-289.
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  11.  13
    How the propagation of error through stochastic counters affects time discrimination and other psychophysical judgments.Peter R. Killeen & Thomas J. Taylor - 2000 - Psychological Review 107 (3):430-459.
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  12.  20
    Subjects adjust criterion on errors in perceptual decision tasks.Peter R. Killeen, Thomas J. Taylor & Mario Treviño - 2018 - Psychological Review 125 (1):117-130.
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  13. Harnessing Advanced Technologies for Global Health Equity.Peter A. Singer, Archana Bhatt, Sarah E. Frew, Heather Greenwood, Jocelyn Mackie, Dilnoor Panjwani, Deepa L. Persad, Fabio Salamanca-Buentello, Béatrice Séguin, Andrew D. Taylor, Halla Thorsteinsdóttir & Abdallah S. Daar - 2008 - In Ronald M. Green, Aine Donovan & Steven A. Jauss (eds.), Global Bioethics: Issues of Conscience for the Twenty-First Century. Oxford University Press.
  14.  43
    The Unreliability of High Human Heritability Estimates and Small Shared Effects of Growing Up in the Same Family.Peter J. Taylor - 2007 - Biological Theory 2 (4):387-397.
    Estimates of a trait’s heritability can be used to predict the advance through selective breeding in agriculture and the laboratory where researchers can replicate varieties and locations. These conditions do not apply to human populations, yet considerable attention is still given to high heritability and to small effects of family members growing up together relative to differences within families. This article shows that the conventional partitioning of a trait’s variation produces components that cannot be associated reliably with average differences among (...)
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  15. Conceptual fragmentation and the rise of eliminativism.Henry Taylor & Peter Vickers - 2015 - European Journal for Philosophy of Science 7 (1):17-40.
    Pluralist and eliminativist positions have proliferated within both science and philosophy of science in recent decades. This paper asks the question why this shift of thinking has occurred, and where it is leading us. We provide an explanation which, if correct, entails that we should expect pluralism and eliminativism to transform other debates currently unaffected, and for good reasons. We then consider the question under what circumstances eliminativism will be appropriate, arguing that it depends not only on the term in (...)
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  16.  29
    Nothing reliable about genes or environment: new perspectives on analysis of similarity among relatives in light of the possibility of underlying heterogeneity.Peter J. Taylor - 2009 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 40 (3):210-220.
    Despite the long history of scientific, philosophical, and political debate around heritability studies, certain fundamental conceptual issues have not been recognized or well appreciated. The starting point is that heritability does not measure the degree of influence that genes have on a trait or provide a reliable basis for choosing which traits to investigate further with molecular genetic research. The short argument on this point revolves around two issues: the disconnect between analyzing measurements of a trait and exposing the measurable (...)
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  17. Neutrality in Political Science.Charles Taylor, Peter Laslett & W. G. Runciman - 2003
     
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  18.  24
    Unruly complexity: ecology, interpretation, engagement.Peter J. Taylor - 2005 - Chicago: University of Chicago Press.
    Ambitiously identifying fresh issues in the study of complex systems, Peter J. Taylor, in a model of interdisciplinary exploration, makes these concerns accessible to scholars in the fields of ecology, environmental science, and science studies. Unruly Complexity explores concepts used to deal with complexity in three realms: ecology and socio-environmental change; the collective constitution of knowledge; and the interpretations of science as they influence subsequent research. For each realm Taylor shows that unruly complexity-situations that lack definite boundaries, (...)
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  19. Promoting coherent minimum reporting guidelines for biological and biomedical investigations: the MIBBI project.Chris F. Taylor, Dawn Field, Susanna-Assunta Sansone, Jan Aerts, Rolf Apweiler, Michael Ashburner, Catherine A. Ball, Pierre-Alain Binz, Molly Bogue, Tim Booth, Alvis Brazma, Ryan R. Brinkman, Adam Michael Clark, Eric W. Deutsch, Oliver Fiehn, Jennifer Fostel, Peter Ghazal, Frank Gibson, Tanya Gray, Graeme Grimes, John M. Hancock, Nigel W. Hardy, Henning Hermjakob, Randall K. Julian, Matthew Kane, Carsten Kettner, Christopher Kinsinger, Eugene Kolker, Martin Kuiper, Nicolas Le Novere, Jim Leebens-Mack, Suzanna E. Lewis, Phillip Lord, Ann-Marie Mallon, Nishanth Marthandan, Hiroshi Masuya, Ruth McNally, Alexander Mehrle, Norman Morrison, Sandra Orchard, John Quackenbush, James M. Reecy, Donald G. Robertson, Philippe Rocca-Serra, Henry Rodriguez, Heiko Rosenfelder, Javier Santoyo-Lopez, Richard H. Scheuermann, Daniel Schober, Barry Smith & Jason Snape - 2008 - Nature Biotechnology 26 (8):889-896.
    Throughout the biological and biomedical sciences there is a growing need for, prescriptive ‘minimum information’ (MI) checklists specifying the key information to include when reporting experimental results are beginning to find favor with experimentalists, analysts, publishers and funders alike. Such checklists aim to ensure that methods, data, analyses and results are described to a level sufficient to support the unambiguous interpretation, sophisticated search, reanalysis and experimental corroboration and reuse of data sets, facilitating the extraction of maximum value from data sets (...)
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  20.  78
    Pictorial representation in biology.Peter J. Taylor & Ann S. Blum - 1991 - Biology and Philosophy 6 (2):125-134.
  21.  43
    Technocratic optimism, H. T. Odum, and the partial transformation of ecological metaphor after World War II.Peter J. Taylor - 1988 - Journal of the History of Biology 21 (2):213-244.
  22. Democracy and the Claims of Nature: Critical Perspectives for a New Century.Wilson Carey McWilliams, Bob Pepperman Taylor, Bryan G. Norton, Robyn Eckersley, Joe Bowersox, J. Baird Callicott, Catriona Sandilands, John Barry, Andrew Light, Peter S. Wenz, Luis A. Vivanco, Tim Hayward, John O'Neill, Robert Paehlke, Timothy W. Luke, Robert Gottlieb & Charles T. Rubin (eds.) - 2002 - Rowman & Littlefield Publishers.
    In Democracy and the Claims of Nature, the leading thinkers in the fields of environmental, political, and social theory come together to discuss the tensions and sympathies of democratic ideals and environmental values. The prominent contributors reflect upon where we stand in our understanding of the relationship between democracy and the claims of nature. Democracy and the Claims of Nature bridges the gap between the often competing ideals of the two fields, leading to a greater understanding of each for the (...)
     
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  23.  12
    Pedagogy, Technology, and the Body.Erica McWilliam & Peter G. Taylor - 1996 - Peter Lang Gmbh, Internationaler Verlag Der Wissenschaften.
    This collection of essays is a genuinely interdisciplinary exploration of the changing relationship of pedagogy, technology, and human beings in contemporary educational and cultural settings. The authors draw upon the most recent theoretical developments in education, the arts, the human body, and technology to interrogate changing pedagogical practices both inside and beyond educational institutions. Their focus on new forms of cultural exchange constitutes a radical re-thinking of the nature of pedagogical events beyond the boundaries of the traditional educational disciplines.
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  24.  69
    Rehabilitating a biological notion of race? A response to Sesardic.Peter Taylor - 2011 - Biology and Philosophy 26 (3):469-473.
    The point Sesardic (Biol Philos 25: 143–162, 2010) makes about the possibility of distinguishing groups for which there is a lot of within-group variation is not sufficient to rehabilitate a biological concept of race. In this note, I sketch a number of issues that quickly arise once we delve more deeply into the relevant scientific knowledge, concepts, methods, and questions for inquiry.
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  25. Time and Cause Essays Presented to Richard Taylor /Edited by Peter van Inwagen. --. --.Richard Taylor & Peter Van Inwagen - 1980 - Reidel Pub. Co. Sold and Distributed in the U.S.A. And Canada by Kluwer Boston, Inc., C1980.
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  26.  41
    A Gene-Free Formulation of Classical Quantitative Genetics Used to Examine Results and Interpretations Under Three Standard Assumptions.Peter J. Taylor - 2012 - Acta Biotheoretica 60 (4):357-378.
    Quantitative genetics (QG) analyses variation in traits of humans, other animals, or plants in ways that take account of the genealogical relatedness of the individuals whose traits are observed. “Classical” QG, where the analysis of variation does not involve data on measurable genetic or environmental entities or factors, is reformulated in this article using models that are free of hypothetical, idealized versions of such factors, while still allowing for defined degrees of relatedness among kinds of individuals or “varieties.” The gene (...)
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  27.  8
    Building on construction: An exploration of heterogeneous constructionism, using an analogy from psychology and a sketch from socio-economic modeling.Peter J. Taylor - 1995 - Perspectives on Science 3 (1):66-98.
    I explore heterogeneous constructionism, my term for the perspective that science in the making is a process of agents building by combining a diversity of components. Issues addressed include causality and explanation; transcending both realism and relativism; scientists as acting, intervening, and imaginative agents; explanations that span many levels of social practice; counterfactuals in the analysis of causal claims; and practical reflexivity. An analogy from research on the social origins of depression and a sketch from my own experience in socioeconomic (...)
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  28.  23
    Distinctions that make a difference?Peter J. Taylor - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 51:70-76.
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  29.  81
    Three puzzles and eight gaps: What heritability studies and critical commentaries have not paid enough attention to.Peter Taylor - 2010 - Biology and Philosophy 25 (1):1-31.
    This article examines eight “gaps” in order to clarify why the quantitative genetics methods of partitioning variation of a trait into heritability and other components has very limited power to show anything clear and useful about genetic and environmental influences, especially for human behaviors and other traits. The first two gaps should be kept open; the others should be bridged or the difficulty of doing so should be acknowledged: 1. Key terms have multiple meanings that are distinct; 2. Statistical patterns (...)
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  30.  28
    The Under-recognized Implications of Heterogeneity: Opportunities for Fresh Views on Scientific, Philosophical, and Social Debates about Heritability.Peter J. Taylor - 2008 - History and Philosophy of the Life Sciences 30 (3-4):431 - 456.
    Despite a long history of debates about the heritability of human traits by researchers and other critical commentators, the possible heterogeneity of genetic and environmental factors that underlie patterns in observed traits has not been recognized as a significant conceptual and methodological issue. This article is structured to stimulate a wide range of readers to pursue diverse implications of underlying heterogeneity and of its absence from previous debates. Section 1, a condensed critique of previous conceptualizations and interpretations of heritability studies, (...)
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  31.  52
    The philosophical dullness of classical ecology, and a Levinsian alternative.Yrjö Haila & Peter Taylor - 2001 - Biology and Philosophy 16 (1):93-102.
    Ecology has had a lower profile in Biology & Philosophy than one might expect on the basis of the attention ecology is given in public discussions in relation to environmental issues. Our tentative explanation is that ecology appears theoretically redundant within biology and, consequently, philosophically challenging problemsrelated to biology are commonly supposed to be somewhere else, particularly in the molecular sphere. Richard Levins has recognized the genuine challenges posed by ecology for theoretical and philosophical thinking in biology. This essay sets (...)
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  32. An Invitation to Explore Unexamined Shifts and Variety in the Meanings of Genotype and Phenotype, and Their Distinction.Peter J. Taylor - 2018 - Philosophy, Theory, and Practice in Biology 10 (6).
    Noting minimal philosophical attention to the shift of the meanings of “genotype” and “phenotype,” and their distinction, as well as to the variety of meanings that have co-existed over the last hundred years, this note invites readers to join in exploring the implications of shifts that have been left unexamined.
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  33.  10
    Deep neural networks are not a single hypothesis but a language for expressing computational hypotheses.Tal Golan, JohnMark Taylor, Heiko Schütt, Benjamin Peters, Rowan P. Sommers, Katja Seeliger, Adrien Doerig, Paul Linton, Talia Konkle, Marcel van Gerven, Konrad Kording, Blake Richards, Tim C. Kietzmann, Grace W. Lindsay & Nikolaus Kriegeskorte - 2023 - Behavioral and Brain Sciences 46:e392.
    An ideal vision model accounts for behavior and neurophysiology in both naturalistic conditions and designed lab experiments. Unlike psychological theories, artificial neural networks (ANNs) actually perform visual tasks and generate testable predictions for arbitrary inputs. These advantages enable ANNs to engage the entire spectrum of the evidence. Failures of particular models drive progress in a vibrant ANN research program of human vision.
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  34.  32
    “Appearances notwithstanding, we are all doing something like political ecology”.Peter J. Taylor - 1997 - Social Epistemology 11 (1):111 – 127.
  35.  15
    Fatalism.Richard Taylor, Bruce Aune, John Turk Saunders & Peter Makepeace - 1974 - Journal of Symbolic Logic 39 (2):362-364.
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  36.  21
    Mapping Ecologists' Ecologies of Knowledge.Peter J. Taylor - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:95 - 109.
    Ecologists grapple with complex, changing situations. Historians, sociologists and philosophers studying the construction of science likewise attempt to account for (or discount) a wide variety of influences making up the scientists' "ecologies of knowledge." This paper introduces a graphic methodology, mapping, designed to assist researchers at both levels-in science and in science studies-to work with the complexity of their material. By analyzing the implications and limitations of mapping, I aim to contribute to an ecological approach to the philosophy of science.
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  37.  15
    The development of contour processing: evidence from physiology and psychophysics.Gemma Taylor, Daniel Hipp, Alecia Moser, Kelly Dickerson & Peter Gerhardstein - 2014 - Frontiers in Psychology 5.
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  38.  19
    Glaube und Vernunft. Ironie in der conditio humana?Charles Taylor & Hans-Peter Krüger - 2012 - Deutsche Zeitschrift für Philosophie 60 (5):763-784.
    Charles Taylor explains a broader understanding of faith as well as of reason in his philosophical anthropology. In leading one’s own life, faith contains more than having certain beliefs, and reason grasps more than having scientific methods. Taylor answers questions regarding the relation of his great narrative to the approaches of M. Heidegger, M. Merleau-Ponty, M. Foucault, K. Jaspers, and S. Eisenstadt . Insofar as the secularization of Christianity involves ironic reversals, all main directions in Western modernity are (...)
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  39. Co‐op students' access to shared knowledge in science‐rich workplaces.Hugh Munby, Jennifer Taylor, Peter Chin & Nancy L. Hutchinson - 2007 - Science Education 91 (1):115-132.
  40.  8
    Shifting Frames: From Divided to Distributed Psychologies of Scientific Agents.Peter J. Taylor - 1994 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1994 (2):304-310.
    When reading the papers of Solomon, Thagard and Goldman, I observed their framing doing considerable explicit and implicit work. Framing, a visual metaphor, stimulated me to respond with images of one kind or another. These should allow readers to visualize more issues and propositions than an argumentive format could have pinned down in the limited space available.Figure 1 conveys how the three papers seem to me to frame the issue of integrating the cognitive and social: Scientists’beliefsare the focal phenomena, within (...)
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  41. The Inclusion Of Bioethics Education In Biotechnology Courses.Vaille Dawson & Peter Taylor - 1997 - Eubios Journal of Asian and International Bioethics 7 (6):171-175.
    This paper provides a rationale for the inclusion of biotechnology courses in the secondary science curriculum. In years to come our students will need to make important political, moral and social decisions about their future and the future of others. If our students are to become informed decision makers they need to understand the theory, practice and ethical ramifications of biotechnology. Important topics related to biotechnology include euthanasia, human organ and tissue transplantation, reproductive technology, cloning, and the production and use (...)
     
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  42.  8
    Mapping Ecologists’ Ecologies of Knowledge.Peter J. Taylor - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (2):95-109.
    Ecologists, particularly those who consider socially generated effects in the environment, grapple with complex, changing situations. Historians, sociologists and philosophers studying the construction of science likewise attempt to account for (or discount) a wide variety of influences, which make up what historian Charles Rosenberg has called “ecologies of knowledge” (Rosenberg 1988). This paper introduces a graphic methodology, mapping, designed to assist researchers at both levels—in science and in science studies—to work with the complexity of their material. By analyzing the implications (...)
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  43. The error of developmentalism in human geography.Peter J. Taylor - 1989 - In Derek Gregory & Rex Walford (eds.), Horizons in Human Geography. Barnes & Noble. pp. 303--319.
     
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  44.  24
    “Alexa, how are you feeling today?” : Mind perception, smart speakers, and uncanniness.Jebediah Taylor, Staci Meredith Weiss & Peter J. Marshall - 2020 - Interaction Studies 21 (3):329-352.
    ‘Smart’ devices are becoming increasingly ubiquitous. While these sophisticated machines are useful for various purposes, they sometimes evoke feelings of eeriness or discomfort that constitute uncanniness, a much-discussed phenomenon in robotics research. Adult participants (N = 115) rated the uncanniness of a hypothetical future smart speaker that was described as possessing the mental capacities for experience, agency, neither, or both. The novel condition prompting participants to attribute both agency and experience to the speaker filled an important theoretical gap in the (...)
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  45.  21
    A History of the Ecosystem Concept in Ecology: More than the Sum of the Parts. Frank Benjamin Golley.Peter J. Taylor - 1995 - Isis 86 (3):523-524.
  46. A Study To Evaluate The Effect Of Investigator Attendance On The Efficiency Of Irb Review.Holly Taylor, Peter Currie & Nancy Kass - 2008 - IRB: Ethics & Human Research 30 (1):1-5.
    We conducted a retrospective review of research protocols from four IRBs at one large academic medical institution. The project examined whether having the Principal Investigator attend the initial IRB review of his or her study improves the efficiency of the review. We measured efficiency by the number of days from protocol submission to approval, volume of correspondence exchanged between investigator and IRB prior to approval, and the number of convened IRB meetings required prior to approval. We assessed two samples of (...)
     
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  47.  31
    Boundaries of Adult LearningThe Learning Society.F. John Taylor, Richard Edwards, Ann Hanson, Peter Raggatt & Nick Small - 1996 - British Journal of Educational Studies 44 (4):465.
  48.  40
    Critical epidemiological literacy: understanding ideas better when placed in relation to alternatives.Peter J. Taylor - 2018 - Synthese 198 (Suppl 10):2411-2438.
    This article describes contrasting ideas for a set of topics in epidemiological thinking. The premise underlying this contribution to the special edition is that researchers develop their epidemiological thinking over time through interactions with other researchers who have a variety of in-practice commitments, such as to kinds of cases and methods of analysis, and not simply to a philosophical framework for explanation. I encourage discussants from philosophy and epidemiology to draw purposefully from across a range of topics and contrasting positions, (...)
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  49. Changing Life: Genomes, Ecologies, Bodies, Commodities.Peter J. Taylor & Paul N. Edwards - 1999 - Journal of the History of Biology 32 (3):559-561.
     
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  50.  6
    Conference review.Peter G. Taylor - 1997 - Nursing Inquiry 4 (3):209-210.
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