7 found
Order:
  1.  26
    Shuttling Between Depictive Models and Abstract Rules: Induction and Fallback.Daniel L. Schwartz & John B. Black - 1996 - Cognitive Science 20 (4):457-497.
    A productive way to think about imagistic mental models of physical systems is as though they were sources of quasi‐empirical evidence. People depict or imagine events at those points in time when they would experiment with the world if possible. Moreover, just as they would do when observing the world, people induce patterns of behavior from the results depicted in their imaginations. These resulting patterns of behavior can then be cast into symbolic rules to simplify thinking about future problems and (...)
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   31 citations  
  2.  32
    The mental representation of integers: An abstract-to-concrete shift in the understanding of mathematical concepts.Sashank Varma & Daniel L. Schwartz - 2011 - Cognition 121 (3):363-385.
  3.  56
    Physically distributed learning: Adapting and reinterpreting physical environments in the development of fraction concepts.Taylor Martin & Daniel L. Schwartz - 2005 - Cognitive Science 29 (4):587-625.
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   12 citations  
  4.  27
    Distributed learning and mutual adaptation.Daniel L. Schwartz & Taylor Martin - 2006 - Pragmatics and Cognition 14 (2):313-332.
    If distributed cognition is to become a general analytic frame, it needs to handle more aspects of cognition than just highly efficient problem solving. It should also handle learning. We identify four classes of distributed learning: induction, repurposing, symbiotic tuning, and mutual adaptation. The four classes of distributed learning fit into a two-dimensional space defined by the stability and adaptability of individuals and their environments. In all four classes of learning, people and their environments are highly interdependent during initial learning. (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   4 citations  
  5.  10
    Distributed learning and mutual adaptation.Daniel L. Schwartz & Taylor Martin - 2006 - Pragmatics and Cognition 14 (2):313-332.
    If distributed cognition is to become a general analytic frame, it needs to handle more aspects of cognition than just highly efficient problem solving. It should also handle learning. We identify four classes of distributed learning: induction, repurposing, symbiotic tuning, and mutual adaptation. The four classes of distributed learning fit into a two-dimensional space defined by the stability and adaptability of individuals and their environments. In all four classes of learning, people and their environments are highly interdependent during initial learning. (...)
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  6. Designs for knowledge evolution: Towards a prescriptive theory for integrating first-and second-hand knowledge.Daniel L. Schwartz, Taylor Martin & Na'ilah Nasir - 2005 - In Peter Gardenfors, Petter Johansson & N. J. Mahwah (eds.), Cognition, Education, and Communication Technology. Erlbaum Associates. pp. 21--54.
     
    Export citation  
     
    Bookmark  
  7.  16
    On the Role of Mathematics in Explaining the Material World: Mental Models for Proportional Reasoning.Daniel L. Schwartz & Joyce L. Moore - 1998 - Cognitive Science 22 (4):471-516.
    No categories
    Direct download  
     
    Export citation  
     
    Bookmark   1 citation