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Lake, Brenden M.; Lawrence, Neil D.; Tenenbaum, Joshua B. – Cognitive Science, 2018
Both scientists and children make important structural discoveries, yet their computational underpinnings are not well understood. Structure discovery has previously been formalized as probabilistic inference about the right structural form--where form could be a tree, ring, chain, grid, etc. (Kemp & Tenenbaum, 2008). Although this approach…
Descriptors: Discovery Learning, Intuition, Bias, Computation
Phan, Huy P. – Electronic Journal of Research in Educational Psychology, 2012
Introduction: The achievement goals framework has been researched and used to explain and account for individuals' learning and academic achievements. Over the past three decades, progress has been made in the conceptualizations and research development of different possible theoretical models of achievement goals. Notably, in this study, we…
Descriptors: Academic Achievement, Goal Orientation, Cognitive Structures, Models
Abrahamson, Dor; Trninic, Dragan; Gutierrez, Jose F.; Huth, Jacob; Lee, Rosa G. – Technology, Knowledge and Learning, 2011
Radical constructivists advocate discovery-based pedagogical regimes that enable students to incrementally and continuously adapt their cognitive structures to the instrumented cultural environment. Some sociocultural theorists, however, maintain that learning implies discontinuity in conceptual development, because novices must appropriate expert…
Descriptors: Feedback (Response), Cognitive Structures, Concept Formation, Cultural Context
Peer reviewedHalmos, Paul R. – American Mathematical Monthly, 1994
A mathematician who has been teaching for 58 years discusses 3 types of knowledge that are subjects for teaching or learning (what, how, and why) and why teaching must include problem solving or the use of the Socratic, Moore, or discovery method. (MKR)
Descriptors: Cognitive Structures, Discovery Learning, Higher Education, Learning Processes
Peer reviewedKuhn, Deanna; Black, John; Keselman, Alla; Kaplan, Danielle – Cognition and Instruction, 2000
Investigated intervention effects on mental models of multivariable causality in middle school students involved in inquiry learning. Found that inquiry learning promoted a correct mental model based on additive effects of individual features and a meta-strategic understanding of the need to control influences of other features. Also found…
Descriptors: Cognitive Development, Cognitive Structures, Discovery Learning, Inquiry
Peer reviewedDi Vesta, Francis J.; Peverly, Stephen T. – Journal of Educational Psychology, 1984
Using 198 college students, this study investigated the effects on performance of four variables in a concept-learning task. The variables were (1) passive and active learning; (2) contextual specificity and variability; (3) rule-examples sequences; and (4) near and far transfers as critical outcomes. Results are discussed in terms of the…
Descriptors: Cognitive Structures, Concept Teaching, Discovery Learning, Encoding (Psychology)
Peer reviewedBarker, Miles; Carr, Malcolm – Journal of Biological Education, 1989
Described is the generative learning strategy, an approach which encourages pupils to discuss their out-of-school ideas about plant breathing, drinking, wood production, soil, minerals, and leaves, and assist them in linking appropriate ideas together to form an explanation of the origin of plant materials. (CW)
Descriptors: Biology, Botany, Cognitive Structures, Discovery Learning
Yli-Luoma, Pertti V. J.; Naeve, Ambjorn – British Journal of Educational Technology, 2006
In the present study, a semantic perspective on e-learning theory is advanced and a modelling approach is used. This modelling approach towards the new learning theory is based on the four SECI phases of knowledge conversion: Socialisation, Externalisation, Combination and Internalisation, introduced by Nonaka in 1994, and involving two levels of…
Descriptors: Semantics, Computer Assisted Instruction, Distance Education, Learning Theories
Peer reviewedCoyle, Harold P. – Mercury, 1994
Explains the philosophy that forms the basis of a high school physical science course based on astronomy and the activity-based textbook that accompanies it. Cites specific examples of misconceptions related to astronomy and recommends various diagnostic and concept change strategies. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content
Peer reviewedCoyle, Harold P. – Mercury, 1994
Describes five astronomy education projects implemented by the Harvard-Smithsonian Center for Astrophysics Science Education Department and funded by the National Science Foundation. Project efforts have concentrated in three major areas: (1) curriculum development; (2) teacher support; and (3) classroom technology. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content
Kirschner, Paul A.; Sweller, John; Clark, Richard E. – Educational Psychologist, 2006
Evidence for the superiority of guided instruction is explained in the context of our knowledge of human cognitive architecture, expert-novice differences, and cognitive load. Although unguided or minimally guided instructional approaches are very popular and intuitively appealing, the point is made that these approaches ignore both the structures…
Descriptors: Instructional Design, Teaching Methods, Cognitive Structures, Learning Processes
Peer reviewedSweller, John; Low, Renae – Mathematics Education Research Journal, 1992
Reviews research on (1) schemata acquisition while learning mathematics and techniques for detecting schema in mathematics learners; and (2) assessment of the distribution of cognitive resources while learning mathematics that lead to the design of instructional techniques to facilitate schema acquisition. (26 references) (MDH)
Descriptors: Cognitive Development, Cognitive Measurement, Cognitive Processes, Cognitive Structures
Peer reviewedRoth, Wolff-Michael; Roychoudhury, Anita – School Science and Mathematics, 1993
Discusses Vee mapping, a technique to assist students in categorizing the relationship between the conceptual and procedural aspects of science. Presents a study to investigate elementary education majors' (n=27) use of the Vee heuristic and concept mapping for the construction of knowledge; attitudes toward learning science in collaborative…
Descriptors: Cognitive Structures, Concept Formation, Concept Mapping, Constructivism (Learning)
Peer reviewedSimpson, Judith – Art Education, 1996
Maintains that student-centered curriculum embodies the progressive and constructivist principles of active, participatory learning. Advocates emphasizing the importance of context as part of a constructivist approach. Includes instructional examples of connecting contextual information about artworks to constructivist activities. (MJP)
Descriptors: Art Education, Cognitive Development, Cognitive Mapping, Cognitive Structures

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