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Han L. J. van der Maas [19]Han Lj van der Maas [2]Han L. Van der Maas [1]Han van der Maas [1]
  1.  23
    Stagewise cognitive development: An application of catastrophe theory.Han L. Van der Maas & Peter C. Molenaar - 1992 - Psychological Review 99 (3):395-417.
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  2. Comorbidity: A network perspective.Angélique Oj Cramer, Lourens J. Waldorp, Han Lj van der Maas & Denny Borsboom - 2010 - Behavioral and Brain Sciences 33 (2-3):137-150.
    The pivotal problem of comorbidity research lies in the psychometric foundation it rests on, that is, latent variable theory, in which a mental disorder is viewed as a latent variable that causes a constellation of symptoms. From this perspective, comorbidity is a (bi)directional relationship between multiple latent variables. We argue that such a latent variable perspective encounters serious problems in the study of comorbidity, and offer a radically different conceptualization in terms of a network approach, where comorbidity is hypothesized to (...)
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  3.  34
    A dynamical model of general intelligence: The positive manifold of intelligence by mutualism.Han L. J. Van Der Maas, Conor V. Dolan, Raoul P. P. P. Grasman, Jelte M. Wicherts, Hilde M. Huizenga & Maartje E. J. Raijmakers - 2006 - Psychological Review 113 (4):842-861.
  4.  19
    Modeling developmental transitions on the balance scale task.Hedderik van Rijn, Maarten van Someren & Han van der Maas - 2003 - Cognitive Science 27 (2):227-257.
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  5.  46
    Toward a formalized account of attitudes: The Causal Attitude Network (CAN) model.Jonas Dalege, Denny Borsboom, Frenk van Harreveld, Helma van den Berg, Mark Conner & Han L. J. van der Maas - 2016 - Psychological Review 123 (1):2-22.
  6. 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 model for (...)
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  7.  30
    Non-formal mechanisms in mathematical cognitive development: The case of arithmetic.David W. Braithwaite, Robert L. Goldstone, Han L. J. van der Maas & David H. Landy - 2016 - Cognition 149 (C):40-55.
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  8.  24
    Cognitive psychology meets psychometric theory: On the relation between process models for decision making and latent variable models for individual differences.Han L. J. van der Maas, Dylan Molenaar, Gunter Maris, Rogier A. Kievit & Denny Borsboom - 2011 - Psychological Review 118 (2):339-356.
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  9.  87
    Abstract Concepts Require Concrete Models: Why Cognitive Scientists Have Not Yet Embraced Nonlinearly Coupled, Dynamical, Self-Organized Critical, Synergistic, Scale-Free, Exquisitely Context-Sensitive, Interaction-Dominant, Multifractal, Interdependent Brain-Body-Niche Systems.Eric-Jan Wagenmakers, Han L. J. van der Maas & Simon Farrell - 2012 - Topics in Cognitive Science 4 (1):87-93.
    After more than 15 years of study, the 1/f noise or complex-systems approach to cognitive science has delivered promises of progress, colorful verbiage, and statistical analyses of phenomena whose relevance for cognition remains unclear. What the complex-systems approach has arguably failed to deliver are concrete insights about how people perceive, think, decide, and act. Without formal models that implement the proposed abstract concepts, the complex-systems approach to cognitive science runs the danger of becoming a philosophical exercise in futility. The complex-systems (...)
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  10.  25
    Cognitive Analysis of Educational Games: The Number Game.Han L. J. van der Maas & Enkhbold Nyamsuren - 2017 - Topics in Cognitive Science 9 (2):395-412.
    We analyze the cognitive strategies underlying performance in the Number task, a Math game that requires both arithmetic fluency and mathematical creativity. In this game all elements in a set of numbers have to be used precisely once to create a target number with basic arithmetic operations. We argue that some instances of this game are NP complete, by showing its relation to the well-known Partition problem. We propose heuristics based on the distinction in forward and backward reasoning. The Number (...)
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  11.  26
    Cognitive Analysis of Educational Games: The Number Game.Han L. J. van der Maas & Enkhbold Nyamsuren - 2017 - Topics in Cognitive Science 9 (2):395-412.
    The subtitle of this paper could have been, “Big Data meets Education to advance Cognitive Science.” In it, the authors analyze 20 million answers to 1700 simple arithmetic problems in an educational number game to determine “what makes some problems harder than others.” The results contribute to the cognitive science of arithmetic skill acquisition and have the potential to change how math is taught.
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  12.  31
    Re-thinking stages of cognitive development: An appraisal of connectionist models of the balance scale task.Philip T. Quinlan, Han L. J. van der Maas, Brenda R. J. Jansen, Olaf Booij & Mark Rendell - 2007 - Cognition 103 (3):413-459.
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  13.  81
    An Analytic Tableaux Model for Deductive Mastermind Empirically Tested with a Massively Used Online Learning System.Nina Gierasimczuk, Han L. J. van der Maas & Maartje E. J. Raijmakers - 2013 - Journal of Logic, Language and Information 22 (3):297-314.
    The paper is concerned with the psychological relevance of a logical model for deductive reasoning. We propose a new way to analyze logical reasoning in a deductive version of the Mastermind game implemented within a popular Dutch online educational learning system (Math Garden). Our main goal is to derive predictions about the difficulty of Deductive Mastermind tasks. By means of a logical analysis we derive the number of steps needed for solving these tasks (a proxy for working memory load). Our (...)
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  14.  13
    Optimal decision making in neural inhibition models.Don van Ravenzwaaij, Han L. J. van der Maas & Eric-Jan Wagenmakers - 2012 - Psychological Review 119 (1):201-215.
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  15.  79
    Affective and Motivational Factors Mediate the Relation between Math Skills and Use of Math in Everyday Life.Brenda R. J. Jansen, Eva A. Schmitz & Han L. J. van der Maas - 2016 - Frontiers in Psychology 7.
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  16.  28
    Towards better computational models of the balance scale task: A reply to Shultz and Takane.Han L. J. van der Maas, Philip T. Quinlan & Brenda R. J. Jansen - 2007 - Cognition 103 (3):473-479.
  17.  73
    A Multidimensional IRT Approach for Dynamically Monitoring Ability Growth in Computerized Practice Environments.Jung Yeon Park, Frederik Cornillie, Han L. J. van der Maas & Wim Van Den Noortgate - 2019 - Frontiers in Psychology 10.
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  18.  11
    What’s in a Name: A Bayesian Hierarchical Analysis of the Name-Letter Effect.Oliver Dyjas, Raoul P. P. P. Grasman, Ruud Wetzels, Han L. J. van der Maas & Eric-Jan Wagenmakers - 2012 - Frontiers in Psychology 3.
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  19.  51
    Complex realities require complex theories: Refining and extending the network approach to mental disorders.Angélique Oj Cramer, Lourens J. Waldorp, Han Lj van der Maas & Denny Borsboom - 2010 - Behavioral and Brain Sciences 33 (2-3):178-193.
    The majority of commentators agree on one thing: Our network approach might be the prime candidate for offering a new perspective on the origins of mental disorders. In our response, we elaborate on refinements (e.g., cognitive and genetic levels) and extensions (e.g., to Axis II disorders) of the network model, as well as discuss ways to test its validity.
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  20.  59
    Neural constructivism or self-organization?Peter C. M. Molenaar & Han L. J. van der Maas - 2000 - Behavioral and Brain Sciences 23 (5):783-784.
    Three arguments are given to show that neural constructivism lacks an essential ingredient to explain cognitive development. Based on results in the theory of adaptive signal analysis, adaptive biological pattern information and self-organization in nonlinear systems of information processing, it is concluded that neural constructivism should be further extended to accommodate the occurrence of phase transitions generating qualitative development in the sense of Piaget.
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  21.  23
    The empirical detection of creativity.Han L. J. van der Maas & Peter C. M. Molenaar - 1994 - Behavioral and Brain Sciences 17 (3):555-555.
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  22.  24
    Corrigendum to ‘‘Non-formal mechanisms in mathematical cognitive development: The case of arithmetic’’ [Cognition 149 (2016) 40–55]. [REVIEW]David W. Braithwaite, Robert L. Goldstone, Han L. J. van der Maas & David H. Landy - 2016 - Cognition 151 (C):113.
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