Results for 'Model Time'

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  1. Model time and target years : on the end of time in IPCC futures.Nina Wormbs - 2022 - In Anders Ekström & Staffan Bergwik (eds.), Times of history, times of nature: temporalization and the limits of modern knowledge. New York: Berghahn.
     
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  2. Model time and target years : on the end of time in IPCC futures.Nina Wormbs - 2022 - In Anders Ekström & Staffan Bergwik (eds.), Times of history, times of nature: temporalization and the limits of modern knowledge. New York: Berghahn.
     
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  3. Using the human body as a paradigm for the structure of time: some reflections on time's Ultimate Reality and Meaning.S. M. Modell - 1994 - Ultimate Reality and Meaning 17 (3):197-221.
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  4.  78
    A Non-Aristotelian Model: Time as Space and Landscape in Postmodern Theatre. [REVIEW]Dasha Krijanskaia - 2008 - Foundations of Science 13 (3-4):337-345.
    In his Poetics, Aristotle articulated certain ideas on the structure of drama that dominated both dramatic literature and theatre practices for the centuries to come. In this article I show how the thorough analysis of his statements leads us to believe that he endorses causality, narrativity, and temporal linearity as primary factors in the organization of dramatic and stage texts. Tracing various modifications of causality throughout theatre history, I use the work of the two prominent contemporary directors, Eimuntas Nekrosius and (...)
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  5. Contrasting Cases: The Lotka-Volterra Model Times Three.Tarja Knuuttila & Andrea Loettgers - 2016 - Boston Studies in the Philosophy of Science 319:151-178.
    How do philosophers of science make use of historical case studies? Are their accounts of historical cases purpose-built and lacking in evidential strength as a result of putting forth and discussing philosophical positions? We will study these questions through the examination of three different philosophical case studies. All of them focus on modeling and on Vito Volterra, contrasting his work to that of other theoreticians. We argue that the worries concerning the evidential role of historical case studies in philosophy are (...)
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  6. Time and spatial models: Temporality in Husserl.Mary Jeanne Larrabee - 1989 - Philosophy and Phenomenological Research 49 (3):373-392.
    Recent treatments of time in husserl purport to give an account of the most fundamental aspects of what husserl terms inner time-Consciousness, The immanent temporality that is the primal constitutive source of human experience. A major difficulty with these presentations of husserl's time-Theory is that they continue to use theoretically reductionist models for time, Based on a sense of "flow" that is drawn from objective-Physical space and objects extended through such space. Such treatments fail to capture (...)
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  7.  30
    Modelling the Time Allocation Effects of Basic Income.K. J. Bernhard Neumärker & Ana Helena Palermo Kuss - 2018 - Basic Income Studies 13 (2).
    Most of the economic models on basic income account just for pecuniary forms of work, i. e. “time spent making money”, in employment. This restriction is a drawback of these analyses and of the standard economic labor supply model itself. If one wants to understand the potential effects of basic income on individual and social welfare, one should not restrict observation to the pecuniary uses of time. The objective of this contribution is to rethink the meaning of (...)
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  8. Internal models and the construction of time: generalizing from state estimation to trajectory estimation to address temporal features of perception, including temporal illusions.Rick Grush - unknown
    The question of whether time is its own best representation is explored. Though there is theoretical debate between proponents of internal models and embedded cognition proponents (e.g. Brooks R 1991 Artificial Intelligence 47 139–59) concerning whether the world is its own best model, proponents of internal models are often content to let time be its own best representation. This happens via the time update of the model that simply allows the model’s state to evolve (...)
     
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  9.  15
    Time-varying boundaries for diffusion models of decision making and response time.Shunan Zhang, Michael D. Lee, Joachim Vandekerckhove, Gunter Maris & Eric-Jan Wagenmakers - 2014 - Frontiers in Psychology 5:112331.
    Diffusion models are widely-used and successful accounts of the time course of two-choice decision making. Most diffusion models assume constant boundaries, which are the threshold levels of evidence that must be sampled from a stimulus to reach a decision. We summarize theoretical results from statistics that relate distributions of decisions and response times to diffusion models with time-varying boundaries. We then develop a computational method for finding time-varying boundaries from empirical data, and apply our new method to (...)
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  10.  34
    Time and Singular Causation—A Computational Model.Simon Stephan, Ralf Mayrhofer & Michael R. Waldmann - 2020 - Cognitive Science 44 (7):e12871.
    Causal queries about singular cases, which inquire whether specific events were causally connected, are prevalent in daily life and important in professional disciplines such as the law, medicine, or engineering. Because causal links cannot be directly observed, singular causation judgments require an assessment of whether a co‐occurrence of two events c and e was causal or simply coincidental. How can this decision be made? Building on previous work by Cheng and Novick (2005) and Stephan and Waldmann (2018), we propose a (...)
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  11. Time Travel and the Immutability of the Past within B-Theoretical Models.Giacomo Andreoletti & Giuliano Torrengo - 2019 - Philosophia 47 (4):1011-1021.
    The goal of this paper is to defend the general tenet that time travelers cannot change the past within B-theoretical models of time, independently of how many temporal dimensions there are. Baron Pacific Philosophical Quarterly, 98, 129–147 offered a strong argument intended to reach this general conclusion. However, his argument does not cover a peculiar case, i.e. a B-theoretical one-dimensional model of time that allows for the presence of internal times. Loss Pacific Philosophical Quarterly, 96, 1–11 (...)
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  12. Mental Time Travel? A Neurocognitive Model of Event Simulation.Donna Rose Addis - 2020 - Review of Philosophy and Psychology 11 (2):233-259.
    Mental time travel is defined as projecting the self into the past and the future. Despite growing evidence of the similarities of remembering past and imagining future events, dominant theories conceive of these as distinct capacities. I propose that memory and imagination are fundamentally the same process – constructive episodic simulation – and demonstrate that the ‘simulation system’ meets the three criteria of a neurocognitive system. Irrespective of whether one is remembering or imagining, the simulation system: acts on the (...)
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  13.  46
    The time course of perceptual choice: The leaky, competing accumulator model.Marius Usher & James L. McClelland - 2001 - Psychological Review 108 (3):550-592.
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  14.  48
    The baigas of madhya pradesh: A demographic study.P. H. Reddy & B. Modell - 1997 - Journal of Biosocial Science 29 (1):19-31.
    This paper outlines the demographic characteristics of the Baiga tribe, one of the most primitive of the aboriginal tribal groups of Central India. The Baiga population has grown steadily since the first anthropological study of the tribe in the 1930s. Age at menarche, age at marriage, breast-feeding, and time interval between marriage and first conception are natural. There are more females than males. Sub-tribe endogamy is common; consanguineous marriage is favoured (34% of marriages are between first cousins) and marital (...)
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  15. A Phase Transition Model for the Speed-Accuracy Trade-Off in Response Time Experiments.Gilles Dutilh, Eric-Jan Wagenmakers, Ingmar Visser & Han L. J. van der Maas - 2011 - Cognitive Science 35 (2):211-250.
    Most models of response time (RT) in elementary cognitive tasks implicitly assume that the speed-accuracy trade-off is continuous: When payoffs or instructions gradually increase the level of speed stress, people are assumed to gradually sacrifice response accuracy in exchange for gradual increases in response speed. This trade-off presumably operates over the entire range from accurate but slow responding to fast but chance-level responding (i.e., guessing). In this article, we challenge the assumption of continuity and propose a phase transition (...) for RTs and accuracy. Analogous to the fast guess model (Ollman, 1966), our model postulates two modes of processing: a guess mode and a stimulus-controlled mode. From catastrophe theory, we derive two important predictions that allow us to test our model against the fast guess model and against the popular class of sequential sampling models. The first prediction—hysteresis in the transitions between guessing and stimulus-controlled behavior—was confirmed in an experiment that gradually changed the reward for speed versus accuracy. The second prediction—bimodal RT distributions—was confirmed in an experiment that required participants to respond in a way that is intermediate between guessing and accurate responding. (shrink)
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  16.  17
    A Time–Space Symmetry Based Cylindrical Model for Quantum Mechanical Interpretations.Thuan Vo Van - 2017 - Foundations of Physics 47 (12):1559-1581.
    Following a bi-cylindrical model of geometrical dynamics, our study shows that a 6D-gravitational equation leads to geodesic description in an extended symmetrical time–space, which fits Hubble-like expansion on a microscopic scale. As a duality, the geodesic solution is mathematically equivalent to the basic Klein–Gordon–Fock equations of free massive elementary particles, in particular, the squared Dirac equations of leptons. The quantum indeterminism is proved to have originated from space–time curvatures. Interpretation of some important issues of quantum mechanical reality (...)
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  17.  95
    Cognitive Models of Psychological Time.Richard A. Block (ed.) - 1990 - Lawrence Erlbaum.
    Models of psychological time / Richard A. Block -- Implicit and explicit representations of time / John A. Michon -- The evasive art of subjective time...
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  18.  29
    A Model of the Universe: Space-Time, Probability and Decision.Richard Feist & Storrs McCall - 1995 - Philosophical Review 104 (4):632.
    The title alone of McCall’s book reveals its ambitious enterprise. The book’s structure is a long inference to the best explanation: chapters present problems that are solved by a single, ontological model. Problems as diverse as time flow, quantum measurement, counterfactual semantics, and free will are discussed. McCall’s style of writing is lucid and pointed—in general, very pleasant to read.
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  19.  14
    Checking EMTLK Properties of Timed Interpreted Systems Via Bounded Model Checking.Bożena Woźna-Szcześniak & Andrzej Zbrzezny - 2016 - Studia Logica 104 (4):641-678.
    We investigate a SAT-based bounded model checking method for EMTLK that is interpreted over timed models generated by timed interpreted systems. In particular, we translate the existential model checking problem for EMTLK to the existential model checking problem for a variant of linear temporal logic, and we provide a SAT-based BMC technique for HLTLK. We evaluated the performance of our BMC by means of a variant of a timed generic pipeline paradigm scenario and a timed train controller (...)
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  20.  33
    A Model of Socioemotional Flexibility at Three Time Scales.Tom Hollenstein, Anna Lichtwarck-Aschoff & Georges Potworowski - 2013 - Emotion Review 5 (4):397-405.
    The construct of flexibility has been a focus for research and theory for over 100 years. However, flexibility has not been consistently or adequately defined, leading to obstacles in the interpretation of past research and progress toward enhanced theory. We present a model of socioemotional flexibility—and its counterpart rigidity—at three time scales using dynamic systems modeling. At the real-time scale (micro), moment-to-moment fluctuations in affect are identified as dynamic flexibility. At the next higher meso-time scale, adaptive (...)
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  21. A Model of Wavefunction Collapse in Discrete Space-Time.Shan Gao - 2006 - International Journal of Theoretical Physics 45 (10):1965-1979.
    We give a new argument supporting a gravitational role in quantum collapse. It is demonstrated that the discreteness of space-time, which results from the proper combination of quantum theory and general relativity, may inevitably result in the dynamical collapse of thewave function. Moreover, the minimum size of discrete space-time yields a plausible collapse criterion consistent with experiments. By assuming that the source to collapse the wave function is the inherent random motion of particles described by the wave function, (...)
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  22. A model of the ontology of time.Marian Călborean - manuscript
    I this paper I give minimal axioms for the ontology of time, especially A-theories and B-theories and I derive philosophically interesting lemmas. The exercise is set-theoretical, defining all notions and indicating assumptions and philosophical points of disagreement, while being easy to translate to other formal expressions . The issue of a logic for A-theories of time is treated towards the end, where I sketch ‘copresent’ operators for capturing the idea of temporal passage. The main conclusion will be that, (...)
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  23.  81
    Time for a Change: Topical Amendments to the Medical Model of Disease.Isabella Sarto-Jackson - 2018 - Biological Theory 13 (1):29-38.
    There is a conceptual crisis in the biomedical sciences that is particularly salient in psychopathology research. Underlying the crisis is a controversy that pertains to the current medical model of disease that largely draws from causal-mechanistic explanations. The bedrock of this model is the analysis of biological part-dysfunctions that aims at unequivocally defining a pathological condition and demarcating it from its neighboring entities. This endeavor has led to a quest for physiological, biochemical, and genetic signatures. Yet, so far (...)
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  24.  22
    Modelling Accelerated Proficiency in Organisations: Practices and Strategies to Shorten Time-to-Proficiency of the Workforce.Raman K. Attri - 2018 - Dissertation, Southern Cross University
    This study aimed to explore practices and strategies that have successfully reduced time-to-proficiency of the workforce in large multinational organisations and develop a model based on them. The central research question of this study was: How can organisations accelerate time-to-proficiency of employees in the workplace? The study addressed three aspects: the meaning of accelerated proficiency, as seen by business leaders; the business factors driving the need for shorter time-to-proficiency and benefits accrued from it; and practices and (...)
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  25.  11
    Model of accelerated proficiency at workplace: six core concepts to shorten time-to-proficiency of employees.Raman K. Attri & Wing S. Wu - 2018 - Asia Pacific Journal of Advanced Business and Social Studies 4 (1):1-11.
    The high pace business environment poses great competition among firms. The key to an organisation’s survival is its workforce. Time taken by the workforce to reach to full proficiency in their job role takes very long in certain job roles. Thus, shortening time-to-proficiency of employees is a critical business problem for today’s organisations. This qualitative research study explored the proven practices and strategies that have successfully reduced time-to-proficiency of the workforce in various settings. A total of 93 (...)
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  26. Cognitive Time Scales in a Necker-Zeno Model for Bistable Perception.H. Atmanspacher - 2008 - Open Cybernetics and Systemics Journal:234-251.
    1 – Institute for Frontier Areas of Psychology and Mental Health, Wilhelmstr. 3a, 79098 Freiburg, Germany 2 – Parmenides Center, Via Mellini 26-28, 57031 Capoliveri, Italy 3 – Department of Ophtalmology, University of Freiburg, Killianstr. 5, 79106 Freiburg, Germany 4 – Institute of Physics, University of Freiburg, Hermann- Herder -Str. 3, 79104 Freiburg, GermanyThe “Necker-Zeno model”, a model for bistable perception inspired by the quantum Zeno effect, was previously used to relate three basic time scales of cognitive (...)
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  27.  34
    A Model of the Time Course and Content of Reading.Robert Thibadeau, Marcel Adam Just & Patricia A. Carpenter - 1982 - Cognitive Science 6 (2):157-203.
    This paper describes a computer simulation of reading that is strongly driven by eye fixation data from human readers. The simulation, READER, is a natural language understanding system that reads a text word by word and whose processing cycles on each word have some correspondence with the human gaze duration on that word. READER operates within a newly developed information processing architecture, a Collaborative, Activation‐based, Production System (CAPS) that permits the modeling of the temporal properties of human comprehension. CAPS allows (...)
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  28.  25
    Timing in turn-taking and its implications for processing models of language.Stephen C. Levinson & Francisco Torreira - 2015 - Frontiers in Psychology 6:136034.
    The core niche for language use is in verbal interaction, involving the rapid exchange of turns at talking. This paper reviews the extensive literature about this system, adding new statistical analyses of behavioral data where they have been missing, demonstrating that turn-taking has the systematic properties originally noted by Sacks et al. (1974 ; hereafter SSJ). This system poses some significant puzzles for current theories of language processing: the gaps between turns are short (of the order of 200 ms), but (...)
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  29.  45
    The Maltese cross: A new simplistic model for memory.Donald E. Broadbent - 1984 - Behavioral and Brain Sciences 7 (1):55-68.
    This paper puts forward a general framework for thought about human information processing. It is intended to avoid some of the problems of pipeline or stage models of function. At the same time it avoids the snare of supposing a welter of indefinitely many separate processes. The approach is not particularly original, but rather represents the common elements or presuppositions in a number of modern theories. These presuppositions are not usually explicit, however, and making them so reduces the danger (...)
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  30.  21
    Time Reversal Symmetry and Collapse Models.D. J. Bedingham & O. J. E. Maroney - 2017 - Foundations of Physics 47 (5):670-696.
    Dynamical collapse models embody the idea of a physical collapse of the wave function in a mathematically well-defined way. They involve modifications to the standard rules of quantum theory in order to describe collapse as a physical process. This appears to introduce a time reversal asymmetry into the dynamics since the state at any given time depends on collapses in the past but not in the future. Here we challenge this conclusion by demonstrating that, subject to specified (...) constraints, collapse models can be given a structurally time symmetric formulation in which the collapse events are the primitive objects of the theory. Three different examples of time asymmetries associated with collapse models are then examined and in each case it is shown that the same dynamical rule determining the collapse events works in both the forward and backward in time directions. Any physically observed time asymmetries that arise in such models are due to the asymmetric imposition of initial or final time boundary conditions, rather than from an inherent asymmetry in the dynamical law. This is the standard explanation of time asymmetric behaviour resulting from time symmetric laws. (shrink)
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  31.  32
    Space-Time-Event-Motion : A New Metaphor for a New Concept Based on a Triadic Model and Process Philosophy.Joseph Naimo - 2003 - In David G. Murray (ed.), Proceedings Metaphysics 2003 Second World Conference. Foundazione Idente di Studi e di Ricerca,. pp. 372-379.
    The disciplinary enterprises engaged in the study of consciousness now extend beyond their original paradigms providing additional knowledge toward an overall understanding of the fundamental meaning and scope of consciousness. A new transdisciplinary domain has resulted from the syncretism of several approaches bringing about a new paradigm. The background for this overarching enterprise draws from a variety of traditions. In this paper however elaboration is restricted to the quantum-mechanical account in David Bohm’s theoretical work in relation to his ideas about (...)
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  32. Phronesis and Emotion: The Skill Model of Wisdom Developed.Cheng-Hung Tsai - forthcoming - Topoi:1-9.
    The skill model of wisdom argues that practical wisdom can be best understood in terms of practical skill or expertise, and the model is thought to have the characteristic of focusing on how wise people think rather than how wise people feel. However, from the perspective of Kunzmann and Glück, “it is time for an ‘emotional revolution’ in wisdom research, which will contribute to a more balanced view on wisdom that considers emotional factors and processes as equally (...)
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  33.  85
    Comprehension of Simple Quantifiers: Empirical Evaluation of a Computational Model.Jakub Szymanik & Marcin Zajenkowski - 2010 - Cognitive Science 34 (3):521-532.
    We examine the verification of simple quantifiers in natural language from a computational model perspective. We refer to previous neuropsychological investigations of the same problem and suggest extending their experimental setting. Moreover, we give some direct empirical evidence linking computational complexity predictions with cognitive reality.<br>In the empirical study we compare time needed for understanding different types of quantifiers. We show that the computational distinction between quantifiers recognized by finite-automata and push-down automata is psychologically relevant. Our research improves upon (...)
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  34.  49
    Payment in challenge studies: ethics, attitudes and a new payment for risk model.Olivia Grimwade, Julian Savulescu, Alberto Giubilini, Justin Oakley, Joshua Osowicki, Andrew J. Pollard & Anne-Marie Nussberger - 2020 - Journal of Medical Ethics 46 (12):815-826.
    Controlled Human Infection Model (CHIM) research involves the infection of otherwise healthy participants with disease often for the sake of vaccine development. The COVID-19 pandemic has emphasised the urgency of enhancing CHIM research capability and the importance of having clear ethical guidance for their conduct. The payment of CHIM participants is a controversial issue involving stakeholders across ethics, medicine and policymaking with allegations circulating suggesting exploitation, coercion and other violations of ethical principles. There are multiple approaches to payment: reimbursement, (...)
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  35.  38
    On time, causation and explanation in the causally symmetric Bohmian model of quantum mechanics.Joseph Berkovitz - 2017 - In Philippe Huneman & Christophe Bouton (eds.), Time of Nature and the Nature of Time: Philosophical Perspectives of Time in Natural Sciences. Cham: Springer. pp. 139-172.
    Quantum mechanics portrays the universe as involving non-local influences that are difficult to reconcile with relativity theory. By postulating backward causation, retro-causal interpretations of quantum mechanics could circumvent these influences and accordingly reconcile quantum mechanics with relativity. The postulation of backward causation poses various challenges for the retro-causal interpretations of quantum mechanics and for the existing conceptual frameworks for analyzing counterfactual dependence, causation and causal explanation. In this chapter, we analyze the nature of time, causation and explanation in a (...)
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  36.  99
    Quantifiers in TIME and SPACE. Computational Complexity of Generalized Quantifiers in Natural Language.Jakub Szymanik - 2009 - Dissertation, University of Amsterdam
    In the dissertation we study the complexity of generalized quantifiers in natural language. Our perspective is interdisciplinary: we combine philosophical insights with theoretical computer science, experimental cognitive science and linguistic theories. -/- In Chapter 1 we argue for identifying a part of meaning, the so-called referential meaning (model-checking), with algorithms. Moreover, we discuss the influence of computational complexity theory on cognitive tasks. We give some arguments to treat as cognitively tractable only those problems which can be computed in polynomial (...)
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  37. In Defense of the Compossibility of Presentism and Time Travel.Thomas Hall - 2014 - Logos and Episteme 5 (2):141-159.
    In this paper I defend the compossibility of presentism and time travel from two objections. One objection is that the presentist’s model of time leaves nowhere to travel to; the second objection attempts to equate presentist time travel with suicide. After targeting some misplaced scrutiny of the first objection, I show that presentists have the resources to account for the facts that make for time travel on the traditional Lewisian view. In light of this ability, (...)
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  38. Heidegger on Kant, Time and the 'Form' of Intentionality.Sacha Golob - 2013 - British Journal for the History of Philosophy 21 (2):345 - 367.
    Between 1927 and 1936, Martin Heidegger devoted almost one thousand pages of close textual commentary to the philosophy of Immanuel Kant. This article aims to shed new light on the relationship between Kant and Heidegger by providing a fresh analysis of two central texts: Heidegger’s 1927/8 lecture course Phenomenological Interpretation of Kant’s Critique of Pure Reason and his 1929 monograph Kant and the Problem of Metaphysics. I argue that to make sense of Heidegger’s reading of Kant, one must resolve two (...)
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  39. Why It Is Time To Move Beyond Nagelian Reduction.Marie I. Kaiser - 2012 - In D. Dieks, S. Hartmann, T. Uebel & M. Weber (eds.), Probabilities, Laws and Structure. Springer. pp. 255-272.
    In this paper I argue that it is finally time to move beyond the Nagelian framework and to break new ground in thinking about epistemic reduction in biology. I will do so, not by simply repeating all the old objections that have been raised against Ernest Nagel’s classical model of theory reduction. Rather, I grant that a proponent of Nagel’s approach can handle several of these problems but that, nevertheless, Nagel’s general way of thinking about epistemic reduction in (...)
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  40.  21
    Uncovering the Structure of Semantic Representations Using a Computational Model of Decision‐Making.Sonia Ramotowska, Shane Steinert-Threlkeld, Leendert van Maanen & Jakub Szymanik - 2023 - Cognitive Science 47 (1):e13234.
    According to logical theories of meaning, a meaning of an expression can be formalized and encoded in truth conditions. Vagueness of the language and individual differences between people are a challenge to incorporate into the meaning representations. In this paper, we propose a new approach to study truth-conditional representations of vague concepts. For a case study, we selected two natural language quantifiers most and more than half. We conducted two online experiments, each with 90 native English speakers. In the first (...)
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  41.  19
    Time to absorption in discounted reinforcement models.Brian Skyrms - unknown
    Reinforcement schemes are a class of non-Markovian stochastic processes. Their non-Markovian nature allows them to model some kind of memory of the past. One subclass of such models are those in which the past is exponentially discounted or forgotten. Often, models in this subclass have the property of becoming trapped with probability 1 in some degenerate state. While previous work has concentrated on such limit results, we concentrate here on a contrary effect, namely that the time to become (...)
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  42.  10
    Mathematical Models of Time as a Heuristic Tool.Emiliano Ippoliti - 2006 - In Lorenzo Magnani & Claudia Casadio (eds.), Model Based Reasoning in Science and Technology. Logical, Epistemological, and Cognitive Issues. Cham, Switzerland: Springer International Publishing.
    This paper sets out to show how mathematical modelling can serve as a way of ampliating knowledge. To this end, I discuss the mathematical modelling of time in theoretical physics. In particular I examine the construction of the formal treatment of time in classical physics, based on Barrow’s analogy between time and the real number line, and the modelling of time resulting from the Wheeler-DeWitt equation. I will show how mathematics shapes physical concepts, like time, (...)
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  43.  29
    Mimicking emotions: how 3–12-month-old infants use the facial expressions and eyes of a model.Robert Soussignan, Nicolas Dollion, Benoist Schaal, Karine Durand, Nadja Reissland & Jean-Yves Baudouin - 2017 - Cognition and Emotion 32 (4):827-842.
    While there is an extensive literature on the tendency to mimic emotional expressions in adults, it is unclear how this skill emerges and develops over time. Specifically, it is unclear whether infants mimic discrete emotion-related facial actions, whether their facial displays are moderated by contextual cues and whether infants’ emotional mimicry is constrained by developmental changes in the ability to discriminate emotions. We therefore investigate these questions using Baby-FACS to code infants’ facial displays and eye-movement tracking to examine infants’ (...)
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  44.  36
    Decoherence and Determinism in a One-Dimensional Cloud-Chamber Model.Jean-Marc Sparenberg & David Gaspard - 2018 - Foundations of Physics 48 (4):429-439.
    The hypothesis that the particular linear tracks appearing in the measurement of a spherically-emitting radioactive source in a cloud chamber are determined by the positions of atoms or molecules inside the chamber is further explored in the framework of a recently established one-dimensional model. In this model, meshes of localized spins 1/2 play the role of the cloud-chamber atoms and the spherical wave is replaced by a linear superposition of two wave packets moving from the origin to the (...)
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  45.  5
    Orthogonal Time in Euclidean Three-Dimensional Space: Being an Engineer's Attempt to Reveal the Copernican Criticality of Alfred Marshall's Historically-ignored 'Cardboard Model'.Richard Everett Planck - 2019 - Economic Thought 8:31.
    This paper begins by asking a simple question: can a farmer own and fully utilise precisely five tractors and precisely six tractors at the same time? Of course not. He can own five or he can own six but he cannot own five and six at the same. The answer to this simple question eventually led this author to Alfred Marshall's historically-ignored, linguistically-depicted 'cardboard model' where my goal was to construct a picture based on his written words. More (...)
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  46.  21
    Timing models of reward learning and core addictive processes in the brain.Don Ross - 2008 - Behavioral and Brain Sciences 31 (4):457-458.
    People become addicted in different ways, and they respond differently to different interventions. There may nevertheless be a core neural pathology responsible for all distinctively addictive suboptimal behavioral habits. In particular, timing models of reward learning suggest a hypothesis according to which all addiction involves neuroadaptation that attenuates serotonergic inhibition of a mesolimbic dopamine system that has learned that cues for consumption of the addictive target are signals of a high-reward-rate environment.
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  47. Modelling communicating agents in timed reasoning logics.Brian Logan, Mark Jago & Natasha Alechina - 2006 - In U. Endriss & M. Baldoni (eds.), Declarative Agent Languages and Technologies 4. Springer.
    Practical reasoners are resource-bounded—in particular they require time to derive consequences of their knowledge. Building on the Timed Reasoning Logics (TRL) framework introduced in [1], we show how to represent the time required by an agent to reach a given conclusion. TRL allows us to model the kinds of rule application and conflict resolution strategies commonly found in rule-based agents, and we show how the choice of strategy can influence the information an agent can take into account (...)
     
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  48.  5
    On Time: Lectures on Models of Equilibrium.Peter A. Diamond - 1994 - Cambridge University Press.
    In these two lectures, first published in 1994, Peter Diamond explores how time is modelled in theoretical analyses of individual industries and of an entire economy. In the first lecture he considers equilibrium in a single market by examining the distinction between the short run and the long run in Marshallian analysis. He proposes an explicit modelling of time in place of Marshall's use of different atemporal models for different time frames. In the second lecture he turns (...)
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  49.  9
    A process model.Eugene T. Gendlin - 2018 - Evanston, Illinois: Northwestern University Press.
    Body-environment (b-en) -- Functional cycle (fucy) -- An object -- The body and time -- Evolution, novelty, and stability -- Behavior -- Culture, symbol, and language -- Thinking with the implicit.
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  50.  17
    A Model of $\widehat{R}^2_3$ inside a Subexponential Time Resource.Eugenio Chinchilla - 1998 - Notre Dame Journal of Formal Logic 39 (3):307-324.
    Using nonstandard methods we construct a model of an induction scheme called inside a "resource" of the form is a Turing machine of code is calculated in less than , where means the length of the binary expansion of and are nonstandard parameters in a model of . As a consequence we obtain a model theoretic proof of a witnessing theorem for this theory by functions computable in time , a result first obtained by Buss, Krajícek, (...)
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