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Showing 31 to 45 of 91 results Save | Export
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Klabbers, Jan H. G. – Simulation & Gaming, 1996
Structural aspects that relate the trivial machine, nontrivial machine, and the actor system are discussed. The term rationalism is discussed in terms of discourses that include or exclude those who participate in the debate. Subsequently, the author elaborates on the notion of reality and the meaning of the real world in relation to gaming,…
Descriptors: Games, Knowledge Representation, Problem Solving, Simulation
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Saxe, Geoffrey B. – Human Development, 2008
In his 1979 "Human Development" article reprinted in this anniversary issue, James Wertsch presented an approach to genetic analysis of the shifting regulation of problem-solving behavior in early childhood. In my reflections on Wertsch's seminal contribution, I discuss ways that subsequent inquiry built upon ideas he elaborated in the…
Descriptors: Social History, Investigations, Interpersonal Relationship, Genetics
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Smith, Karan B. – School Science and Mathematics, 1997
Presents activities to demonstrate that current technology allows readily accessible representations in algebraic, numeric, and geometric forms. Argues that integrating these different representations into the curriculum helps students to think more critically about systems. Discusses problem solving using multiple representations, equivalent…
Descriptors: Critical Thinking, Educational Technology, Knowledge Representation, Problem Solving
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Solaz-Portoles, Joan Josep; Lopez, Vicent Sanjose – Asia-Pacific Forum on Science Learning and Teaching, 2007
In this paper we focus on some of the findings of the science education research community in the area of representations and problem solving. Problem solving depends on the construction and manipulation of mental models (internal representations) in the mind. A large knowledge base (declarative, procedural, strategic, situational, and schematic…
Descriptors: Learning Strategies, Problem Solving, Metacognition, Short Term Memory
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Hafner, Robert; Culp, Sylvia – Science and Education, 1996
Provides further details regarding a philosophical reconstruction of the structure of Classical Genetics Theory that can facilitate problem-solving instruction. Describes how that reconstruction can facilitate realistic problem solving on the part of students. Contains 60 references. (DDR)
Descriptors: Genetics, Higher Education, Knowledge Representation, Microbiology
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Roschelle, Jeremy – International Journal of Science Education, 1998
Supports the use of microanalysis of conceptual change as a tool for reconceptualizing the nature of students' knowledge-in-development and dissolving concept-misconception and expert-novice dichotomies. Contains 48 references. (DDR)
Descriptors: Concept Formation, High Schools, Higher Education, Knowledge Representation
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Klabbers, Jan H. G. – Simulation & Gaming, 1996
Gaming is discussed against a background of rationalist and historicist traditions of reality; trivial and nontrivial machine models of problem solving; and rigid-rule and free-form games. (JKP)
Descriptors: Decision Making, Educational Environment, Games, Heuristics
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Law-Yone, Hubert – Simulation & Gaming, 1996
Critically analyzes an article by Jan Klabbers, focusing on methodological, epistemological, and ontological viewpoints. Examines the reasoning process whereby the actor approach model of learning environments is derived from the machine approach model; looks at claims of differentiation between rationalism and historicism, and the distinction…
Descriptors: Educational Environment, Epistemology, Games, Heuristics
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Venables, Anne; Tan, Grace – Journal of Information Technology Education, 2007
Genetic algorithms (GAs) are a problem solving strategy that uses stochastic search. Since their introduction (Holland, 1975), GAs have proven to be particularly useful for solving problems that are "intractable" using classical methods. The language of genetic algorithms (GAs) is heavily laced with biological metaphors from evolutionary…
Descriptors: Feedback (Response), Constructivism (Learning), Genetics, Knowledge Representation
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Crawford, Teresa; Kelly, Gregory J. – Science Education, 1997
Draws from studies in the sociology of scientific knowledge to create a new perspective for understanding school science. Merges ethnography and discourse analysis to study science-in-the-making in a physics classroom. Investigates local conceptual ecologies. Contains 55 references. (DDR)
Descriptors: Constructivism (Learning), Discourse Analysis, Educational Strategies, Elementary Education
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Gomez, Enrique Jimenez; Duran, Eugenio Fernandez – Science and Education, 1998
Analyzes didactic problems related to the inseparability of electric charge from the mass, the impossibility of its direct observation, and the meaning associated with the basic concepts of electricity. Contains 44 references. (DDR)
Descriptors: Concept Formation, Electricity, Foreign Countries, Higher Education
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Linard, M. – Journal of Computer Assisted Learning, 1995
Describes the difference between mediation and "mediatisation." Suggests the need for a paradigm shift away from the computational model of knowledge as pure information processing and task-centered problem solving to a more contextualist, sociointeractional, constructivist, user-centered model of cognition. (Author/AEF)
Descriptors: Cognitive Processes, Constructivism (Learning), Educational Development, Information Processing
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Donovan, Michael P. – Journal of College Science Teaching, 1998
Argues that students are conditioned by years of multiple-choice testing to use only simple recall and view knowledge as an uncataloged museum full of independent facts that are collected, recited, and left to gather dust. (DDR)
Descriptors: Concept Formation, Higher Education, Knowledge Representation, Learning Strategies
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Kinchin, Ian M. – School Science Review, 2001
An appreciation of the relationship between novice and expert knowledge frameworks may help develop an understanding of the process of transition from one to the other. Recommends the use of concept mapping. (DDR)
Descriptors: Cognitive Structures, Concept Mapping, Elementary Secondary Education, Foreign Countries
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Foshay, Rob – Performance Improvement, 1997
Discusses current views on problem solving in the workplace, and identifies five areas for consideration: (1) knowledge representation; (2) verbally teaching strategy components of the skill--versus the learner acquiring it inductively through practice; (3) the principles of teaching procedures; (4) how to construct simulations; and (5) weighing…
Descriptors: Achievement, Cost Effectiveness, Knowledge Representation, Performance Technology
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