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  1. Designing for Science: Implications from Everyday, Classroom, and Professional Settings.Kevin D. Crowley, Christian D. Schunn & Takeshi Okada - 2001 - Psychology Press.
    This volume explores the integration of recent research on everyday, classroom, and professional scientific thinking. It brings together an international group of researchers to present core findings from each context; discuss connections between contexts, and explore structures; technologies, and environments to facilitate the development and practice of scientific thinking. The chapters focus on: * situations from young children visiting museums, * middle-school students collaborating in classrooms, * undergraduates learning about research methods, and * professional scientists engaged in cutting-edge research. A (...)
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  • What did you learn outside of school today? Using structured interviews to document home and community activities related to science and technology.Connie A. Korpan, Gay L. Bisanz, Jeffrey Bisanz, Conrad Boehme & Mervyn A. Lynch - 1997 - Science Education 81 (6):651-662.
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  • Comparing expert and novice understanding of a complex system from the perspective of structures, behaviors, and functions.Cindy E. Hmelo-Silver & Merav Green Pfeffer - 2004 - Cognitive Science 28 (1):127-138.
    Complex systems are pervasive in the world around us. Making sense of a complex system should require that a person construct a network of concepts and principles about some domain that represents key (often dynamic) phenomena and their interrelationships. This raises the question of how expert understanding of complex systems differs from novice understanding. In this study we examined individuals' representations of an aquatic system from the perspective of structural (elements of a system), behavioral (mechanisms), and functional aspects of a (...)
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  • Categorization and representation of physics problems by experts and novices.Michelene T. H. Chi, Paul J. Feltovich & Robert Glaser - 1981 - Cognitive Science 5 (2):121-52.
    The representation of physics problems in relation to the organization of physics knowledge is investigated in experts and novices. Four experiments examine the existence of problem categories as a basis for representation; differences in the categories used by experts and novices; differences in the knowledge associated with the categories; and features in the problems that contribute to problem categorization and representation. Results from sorting tasks and protocols reveal that experts and novices begin their problem representations with specifiably different problem categories, (...)
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  • Shared scientific thinking in everyday parent‐child activity.Kevin Crowley, Maureen A. Callanan, Jennifer L. Jipson, Jodi Galco, Karen Topping & Jeff Shrager - 2001 - Science Education 85 (6):712-732.
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  • Family behavior and learning in informal science settings: A review of the research. [REVIEW]Lynn D. Dierking & John H. Falk - 1994 - Science Education 78 (1):57-72.
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