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  1. Philosophy of Modeling: Neglected Pages of History.Karlis Podnieks - 2018 - Baltic Journal of Modern Computing 6 (3):279–303.
    The work done in the philosophy of modeling by Vaihinger (1876), Craik (1943), Rosenblueth and Wiener (1945), Apostel (1960), Minsky (1965), Klaus (1966) and Stachowiak (1973) is still almost completely neglected in the mainstream literature. However, this work seems to contain original ideas worth to be discussed. For example, the idea that diverse functions of models can be better structured as follows: in fact, models perform only a single function – they are replacing their target systems, but for different purposes. (...)
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  • A Process Model of Causal Reasoning.Zachary J. Davis & Bob Rehder - 2020 - Cognitive Science 44 (5):e12839.
    How do we make causal judgments? Many studies have demonstrated that people are capable causal reasoners, achieving success on tasks from reasoning to categorization to interventions. However, less is known about the mental processes used to achieve such sophisticated judgments. We propose a new process model—the mutation sampler—that models causal judgments as based on a sample of possible states of the causal system generated using the Metropolis–Hastings sampling algorithm. Across a diverse array of tasks and conditions encompassing over 1,700 participants, (...)
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  • The stability of syllogistic reasoning performance over time.Hannah Dames, Karl Christoph Klauer & Marco Ragni - 2022 - Thinking and Reasoning 28 (4):529-568.
    How individuals reason deductively has concerned researchers for many years. Yet, it is still unclear whether, and if so how, participants’ reasoning performance changes over time. In two test sessions one week apart, we examined how the syllogistic reasoning performance of 100 participants changed within and between sessions. Participants’ reasoning performance increased during the first session. A week later, they started off at the same level of reasoning performance but did not further improve. The reported performance gains were only found (...)
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  • The Logic of Plausible Reasoning: A Core Theory.Allan Collins & Ryszard Michalski - 1989 - Cognitive Science 13 (1):1-49.
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  • Models of Concepts.Benjamin Cohen & Gregory L. Murphy - 1984 - Cognitive Science 8 (1):27-58.
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  • Mapping the Visual Icon.Sam Clarke - 2022 - Philosophical Quarterly 72 (3):552-577.
    It is often claimed that pre-attentive vision has an ‘iconic’ format. This is seen to explain pre-attentive vision's characteristically high processing capacity and to make sense of an overlap in the mechanisms of early vision and mental imagery. But what does the iconicity of pre-attentive vision amount to? This paper considers two prominent ways of characterising pre-attentive visual icons and argues that neither is adequate: one approach renders the claim ‘pre-attentive vision is iconic’ empirically false while the other obscures its (...)
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  • Why did John Herschel fail to understand polarization? The differences between object and event concepts.Xiang Chen - 2003 - Studies in History and Philosophy of Science Part A 34 (3):491-513.
    This paper offers a solution to a problem in Herschel studies by drawing on the dynamic frame model for concept representation offered by cognitive psychology. Applying the frame model to represent the conceptual frameworks of the particle and wave theories, this paper shows that discontinuity between the particle and wave frameworks consists mainly in the transition from a particle notion ‘side’ to a wave notion ‘phase difference’. By illustrating intraconceptual relations within concepts, the frame representations reveal the ontological differences between (...)
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  • Object and event concepts: A cognitive mechanism of incommensurability.Xiang Chen - 2003 - Philosophy of Science 70 (5):962-974.
    In this paper I examine a cognitive mechanism of incommensurability. Using the frame model of concept representation to capture structural relations within concepts, I reveal an ontological difference between object and event concepts: the former are spatial but the latter temporal. Experiments from cognitive sciences further demonstrate that the mind treats object and event concepts differently. Thus, incommensurability can occur in conceptual change across different ontological categories. I use a historical case to illustrate how the ontological difference between an object (...)
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  • On Spearman's “problem of correlation”.John B. Carroll - 1985 - Behavioral and Brain Sciences 8 (1):7-7.
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  • A neo-Cartesian alternative.David Caplan - 1985 - Behavioral and Brain Sciences 8 (1):6-7.
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  • Neurologizing mental imagery: the physiological optics of the mind's eye.Bruce Bridgeman - 1979 - Behavioral and Brain Sciences 2 (4):550-550.
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  • Psychology, rhetoric, and cognition.Michael Billig - 1989 - History of the Human Sciences 2 (3):289-307.
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  • When scientific models represent.Daniela M. Bailer-Jones - 2003 - International Studies in the Philosophy of Science 17 (1):59 – 74.
    Scientific models represent aspects of the empirical world. I explore to what extent this representational relationship, given the specific properties of models, can be analysed in terms of propositions to which truth or falsity can be attributed. For example, models frequently entail false propositions despite the fact that they are intended to say something "truthful" about phenomena. I argue that the representational relationship is constituted by model users "agreeing" on the function of a model, on the fit with data and (...)
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  • Qualitative Models in Computational Simulative Sciences: Representation, Confirmation, Experimentation.Nicola Angius - 2019 - Minds and Machines 29 (3):397-416.
    The Epistemology Of Computer Simulation has developed as an epistemological and methodological analysis of simulative sciences using quantitative computational models to represent and predict empirical phenomena of interest. In this paper, Executable Cell Biology and Agent-Based Modelling are examined to show how one may take advantage of qualitative computational models to evaluate reachability properties of reactive systems. In contrast to the thesis, advanced by EOCS, that computational models are not adequate representations of the simulated empirical systems, it is shown how (...)
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  • Computers Are Syntax All the Way Down: Reply to Bozşahin.William J. Rapaport - 2019 - Minds and Machines 29 (2):227-237.
    A response to a recent critique by Cem Bozşahin of the theory of syntactic semantics as it applies to Helen Keller, and some applications of the theory to the philosophy of computer science.
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  • Technische Fiktionen: Zur Ontologie und Ethik der Gestaltung.Michael Kuhn - 2023 - transcript Verlag.
    Unentwegt werden neue technische Produkte gestaltet. Doch was macht die technische Gestaltung aus? Wie lässt sich ihr Gegenstand - (noch) nicht existierende Artefakte - adäquat auf den Begriff bringen? Michael Kuhn begreift technische Ideen vor ihrer Realisierung als Fiktionen. Er bietet eine fiktionstheoretische Rekonstruktion der Gestaltungstätigkeit und entwickelt hieraus eine Ethik der Gestaltung. Der stark interdisziplinäre Zugang zwischen Technikphilosophie und Ingenieurwissenschaften liefert neue Erkenntnisse für beide Fachrichtungen und stellt wertvolle Grundlagen bereit.
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  • Models in science and mental models in scientists and nonscientists.William F. Brewer - 2001 - Mind and Society 2 (2):33-48.
    This paper examines the form of mental representation of scientific theories in scientists and nonscientists. It concludes that images and schemas are not the appropriate form of mental representation for scientific theories but that mental models and perceptual symbols do seem appropriate for representing physical/mechanical phenomena. These forms of mental representation are postulated to have an analogical relation with the world and it is this relationship that gives them strong explanatory power. It is argued that the construct of naïve theories (...)
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  • What is Sustainable Theory? A Luhmannian Perspective on the Science of Conceptual Systems.Steven E. Wallis & Vladislav Valentinov - 2017 - Foundations of Science 22 (4):733-747.
    Sustainability is an important topic for understanding and developing our society. For scholars who want their academic contributions to have an impact, sustainability is important for our conceptual systems. Because our conceptual systems share similarities with our social systems, we may investigate their characteristics to gain insight into how both may be achieved or at least understood. Theories of the humanities as well as the social/behavioral sciences are changing very rapidly. They are fragile and few seem to have any longevity. (...)
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  • The Science of Conceptual Systems: A Progress Report.Steven E. Wallis - 2016 - Foundations of Science 21 (4):579-602.
    In this paper I provide a brief history of the emerging science of conceptual systems, explain some methodologies, their sources of data, and the understandings that they have generated. I also provide suggestions for extending the science-based research in a variety of directions. Essentially, I am opening a conversation that asks how this line of research might be extended to gain new insights—and eventually develop more useful and generally accepted methods for creating and evaluating theory. This effort will support our (...)
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  • Mental Models of the Day/Night Cycle.Stella Vosniadou & William F. Brewer - 1994 - Cognitive Science 18 (1):123-183.
    This article presents the results of an experiment which investigated elementary school children's explanations of the day/night cycle. First, third, and fifth grade children were asked to explain certain phenomena, such as the disappearance of the sun during the night, the disappearance of stars during the day, the apparent movement of the moon, and the alteration of day and night. The results showed that the majority of the children in our sample used in a consistent fashion a small number of (...)
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  • What is Sustainable Theory? A Luhmannian Perspective on the Science of Conceptual Systems.Vladislav Valentinov & Steven E. Wallis - 2017 - Foundations of Science 22 (4):733-747.
    Sustainability is an important topic for understanding and developing our society. For scholars who want their academic contributions to have an impact, sustainability is important for our conceptual systems. Because our conceptual systems share similarities with our social systems, we may investigate their characteristics to gain insight into how both may be achieved or at least understood. Theories of the humanities as well as the social/behavioral sciences are changing very rapidly. They are fragile and few seem to have any longevity. (...)
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  • Causality in Contemporary American Sociology: An Empirical Assessment and Critique.Brandon Vaidyanathan, Michael Strand, Austin Choi-Fitzpatrick, Thomas Buschman, Meghan Davis & Amanda Varela - 2016 - Journal for the Theory of Social Behaviour 46 (1):3-26.
    Using a unique data set of causal usage drawn from research articles published between 2006–2008 in the American Journal of Sociology and American Sociological Review, this article offers an empirical assessment of causality in American sociology. Testing various aspects of what we consider the conventional wisdom on causality in the discipline, we find that “variablistic” or “covering law” models are not the dominant way of making causal claims, research methods affect but do not determine causal usage, and the use of (...)
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  • Stakeholder influence on corporate strategies over time.Waymond Susana & Gago Rodgers - 2004 - Journal of Business Ethics 52 (4):349 - 363.
    Modern management reporting on its company''s performance is influenced by individuals ethical considerations. Stakeholders philosophies have continued to change over the last 75 years affecting reporting systems for companies reporting information internally and externally. These fundamental changes in philosophy have affected how information is conveyed. We are not claiming that only one philosophical viewpoint dominates companies reporting practices, but there does appear to be a changing trend of philosophies building on one another. We use resource dependence theory in relationship to (...)
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  • Controlled versus automatic processing.Robert J. Sternberg - 1985 - Behavioral and Brain Sciences 8 (1):32-33.
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  • Lexicon as module.Mark S. Seidenberg - 1985 - Behavioral and Brain Sciences 8 (1):31-32.
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  • Organic insight into mental organs.Barry Schwartz - 1985 - Behavioral and Brain Sciences 8 (1):30-31.
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  • Framing-effects approach: A theoretical and methodological critique.Bertram Scheufele - 2004 - Communications 29 (4):401-428.
    The article deals with research on framing effects. First, I will start with classifying different approaches on framing. Subsequently, I will provide a definition of the concepts of frame, schema and framing, expand on framing research conducted so far – both theoretically and operationally. Having this equipment at hand, I will initiate a discussion on studies of framing-effects in terms of theory, methods and empirical results. This discussion leads to the conclusion that studies on framing effects are insufficiently concerned with (...)
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  • Encapsulation and expectation.Roger Schank & Larry Hunter - 1985 - Behavioral and Brain Sciences 8 (1):29-30.
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  • A rapprochement of biology, psychology, and philosophy.Sandra Scarr - 1985 - Behavioral and Brain Sciences 8 (1):29-29.
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  • Learning the Concept of Function With Dynamic Visualizations.Tobias Rolfes, Jürgen Roth & Wolfgang Schnotz - 2020 - Frontiers in Psychology 11.
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  • Cultural and ethical effects on managerial decisions: Examined in a throughput model. [REVIEW]Waymond Rodgers & Susana Gago - 2001 - Journal of Business Ethics 31 (4):355 - 367.
    Financial and cost accounting information is processed by decision-makers guided by their particular need to support decisions. Recent technological advances impacting on information as well as organizations such as the European Community mandating financial reporting requirements for many countries is rapidly changing the landscape for decision making using accounting information. Hence, the importance of individuals'' decision making is more important than it was previously. These decisions are also influenced by individuals'' ethical beliefs. The Throughput Modeling approach to cultural and ethical (...)
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  • Faculties, modules, and computers.Daniel N. Robinson - 1985 - Behavioral and Brain Sciences 8 (1):28-29.
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  • Quinity, isotropy, and Wagnerian rapture.Georges Rey - 1985 - Behavioral and Brain Sciences 8 (1):27-28.
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  • Emergence of scientific understanding in real-time ecological research practice.Luana Poliseli - 2020 - History and Philosophy of the Life Sciences 42 (4):1-25.
    Scientific understanding as a subject of inquiry has become widely discussed in philosophy of science and is often addressed through case studies from history of science. Even though these historical reconstructions engage with details of scientific practice, they usually provide only limited information about the gradual formation of understanding in ongoing processes of model and theory construction. Based on a qualitative ethnographic study of an ecological research project, this article shifts attention from understanding in the context of historical case studies (...)
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  • A Social‐Cognitive Framework of Multidisciplinary Team Innovation.Susannah B. F. Paletz & Christian D. Schunn - 2010 - Topics in Cognitive Science 2 (1):73-95.
    The psychology of science typically lacks integration between cognitive and social variables. We present a new framework of team innovation in multidisciplinary science and engineering groups that ties factors from both literatures together. We focus on the effects of a particularly challenging social factor, knowledge diversity, which has a history of mixed effects on creativity, most likely because those effects are mediated and moderated by cognitive and additional social variables. In addition, we highlight the distinction between team innovative processes that (...)
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  • Reasoning, rationality, and representation.Wade Munroe - 2020 - Synthese 198 (9):8323-8345.
    Recently, a cottage industry has formed with the goal of analyzing reasoning. The relevant notion of reasoning in which philosophers are expressly interested is fixed through an epistemic functional description: reasoning—whatever it is—is our personal-level, rationally evaluable means of meeting our rational requirements through managing and updating our attitudes. Roughly, the dominant view in the extant literature as developed by Paul Boghossian, John Broome, and others is that reasoning is a rule-governed operation over propositional attitudes that results in a change (...)
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  • Too little and latent.John Morton - 1985 - Behavioral and Brain Sciences 8 (1):26-27.
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  • On the information-processing demands of spatial reasoning.Sergio Morra - 2001 - Thinking and Reasoning 7 (4):347 – 365.
    This article describes a study on capacity limitations that affect the construction of spatial mental models. A process model is presented, according to which the construction of a mental model in Ehrlich and Johnson-Laird's (1982) spatial descriptions task places a workload of six information chunks for continuous and semi-continuous descriptions, and seven chunks for discontinuous descriptions. Participants (48 undergraduate students) performed the spatial descriptions task and the figural intersections test (FIT), which yields a capacity score. The pattern of errors and (...)
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  • Inference during reading.Gail McKoon & Roger Ratcliff - 1992 - Psychological Review 99 (3):440-466.
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  • A Temporal Logic for Reasoning about Processes and Plans.Drew McDermott - 1982 - Cognitive Science 6 (2):101-155.
    Much previous work in artificial intelligence has neglected representing time in all its complexity. In particular, it has neglected continuous change and the indeterminacy of the future. To rectify this, I have developed a first‐order temporal logic, in which it is possible to name and prove things about facts, events, plans, and world histories. In particular, the logic provides analyses of causality, continuous change in quantities, the persistence of facts (the frame problem), and the relationship between tasks and actions. It (...)
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  • Vertically unparalleled.Ignatius G. Mattingly & Alvin M. Liberman - 1985 - Behavioral and Brain Sciences 8 (1):24-26.
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  • Combe's crucible and the music of the modules.John C. Marshall - 1985 - Behavioral and Brain Sciences 8 (1):23-24.
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  • The Role of Evaluation-Driven Rejection in the Successful Exploration of a Conceptual Space of Stories.Carlos León & Pablo Gervás - 2010 - Minds and Machines 20 (4):615-634.
    Evaluation processes are a basic component of creativity. They guide not only the pure judgement about a new artefact but also the generation itself, as creators constantly evaluate their own work. This paper proposes a model for automatic story generation based on the evaluation of stories. A model of how quality in stories is evaluated is presented, and two possible implementations of the generation guided by this evaluation are shown: exhaustive space exploration and constrained exploration. A theoretical model and its (...)
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  • When Can Making a Drawing Hinder Problem Solving? Effect of the Drawing Strategy on Linear Overgeneralizations and Problem Solving.Janina Krawitz & Stanislaw Schukajlow - 2020 - Frontiers in Psychology 11.
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  • Parallel processing explains modular informational encapsulation.Marcel Kinsbourne - 1985 - Behavioral and Brain Sciences 8 (1):23-23.
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  • The modularity of behavior.Peter R. Killeen - 1985 - Behavioral and Brain Sciences 8 (1):22-23.
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  • The Role of a Mental Model in Learning to Operate a Device.David E. Kieras & Susan Bovair - 1984 - Cognitive Science 8 (3):255-273.
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  • Representing Experimental Procedures through Diagrams at CERN’s Large Hadron Collider: The Communicatory Value of Diagrammatic Representations in Collaborative Research.Koray Karaca - 2017 - Perspectives on Science 25 (2):177-203.
    In relatively recent years, quite a number of diverse case studies concerning the use of visual displays—such as graphs, diagrams, tables, pictures, drawings, etc.—in both the physical and biological sciences have been offered in the literature of the history and philosophy of science —see, e.g., Miller 1984; Lynch and Woolgar 1990; Baigrie 1996; Pauwels 2006. These case studies have shown that visual representations fulfill important functions in both the theoretical and experimental practices of science, thereby emphasizing the non-verbal dimension of (...)
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  • The mind as a Necker Cube.Jerome Kagan - 1985 - Behavioral and Brain Sciences 8 (1):21-22.
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  • What constitutes a module?Peter W. Jusczyk & Asher Cohen - 1985 - Behavioral and Brain Sciences 8 (1):20-21.
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