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Taslidere, E.; Cohen, F. S.; Reisman, F. K. – IEEE Transactions on Education, 2011
This paper presents the use of wireless sensor networks (WSNs) in educational research as a platform for enhanced pedagogical learning. The aim here with the use of a WSN platform was to go beyond the implementation stage to the real-life application stage, i.e., linking the implementation to real-life applications, where abstract theory and…
Descriptors: Telecommunications, Experiential Learning, Experiments, Engineering Education
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Diemers, Agnes D.; Dolmans, Diana H. J. M.; Verwijnen, Maarten G. M.; Heineman, Erik; Scherpbier, Albert J. J. A. – Advances in Health Sciences Education, 2008
Several reasons have been given why students should have contacts with real patients early in the undergraduate medical curriculum, i.e., in the preclinical phase. However, it is not clear exactly what effects early patient contacts have with regard to knowledge construction and the development of clinical reasoning skills. We sought students'…
Descriptors: Medical Education, Focus Groups, Educational Benefits, Experiential Learning
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Sharma, Ajay – Science Education, 2008
Students studying in government-run schools in rural India possess much experiential knowledge of the world around them. This paper presents a narrative account of an ethnographic exploration of such students as they attempted to learn about electricity in an eighth-grade classroom in a government-run school in a village in India. The paper shows…
Descriptors: Rural Schools, Foreign Countries, Science Instruction, Energy
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Brunet, Philippe – European Journal of Physics, 2007
From the streets of clouds to the submarine sand ripples or the striations on the coats of some animals, nature offers many examples of spontaneous patterned structures originating from various instabilities. These patterns can in turn destabilize and show a rich, complex dynamics and possibly end up in disordered behaviours. For over 20 years,…
Descriptors: Physics, Calculus, Phenomenology, Science Instruction
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Hart, Tobin – Educational Horizons, 2002
To move information toward knowledge and activity toward mastery, learners must play with ideas, use them, and make them their own. Methods for achieving mastery include interdisciplinary approaches that require deep thinking, story telling, and reflection. (Contains 20 references.) (SK)
Descriptors: Cognitive Processes, Experiential Learning, Learning Activities, Mastery Learning
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Dreyfus, Stuart E. – Bulletin of Science, Technology & Society, 2004
The author proposes a neural-network-based explanation of how a brain might acquire intuitive expertise. The explanation is intended merely to be suggestive and lacks many complexities found in even lower animal brains. Yet significantly, even this simplified brain model is capable of explaining the acquisition of simple skills without developing…
Descriptors: Brain, Experiential Learning, Reinforcement, Coping
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Hopkins, Theresa M.; Cady, Jo Ann – Teaching Children Mathematics, 2007
This article reports on the use of a unique number system to facilitate teachers' understanding of the concepts of place value. Teachers' mastery of base-ten may hinder their recognition of the difficulties students have with place value, so the authors created a number system that used five symbols to represent values. Using this system, teachers…
Descriptors: Number Systems, Number Concepts, Experiential Learning, Faculty Development
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Gutierrez, Angel – Mathematics in School, 1983
Experiences with tessellations used with a group of preservice elementary teachers are described. Specific illustrations of patterns are included, with details on how these are analyzed. (MNS)
Descriptors: Experiential Learning, Geometric Concepts, Learning Activities, Mathematics Education
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Roberts, Jay W. – Journal of Experiential Education, 2002
Principles of brain-based learning, including pattern and meaning making, parallel processing, and the role of stress and threat, are explained, along with their connections to longstanding practices of experiential education. The Brain Compatible Approach is one avenue for clarifying to mainstream educators how and why experiential methods are…
Descriptors: Brain, Cognitive Processes, Educational Environment, Educational Trends
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Wallace, Edward C. – Mathematics Teacher, 1983
The activity provides practice plotting points in the Cartesian plane, develops inductive skills in pattern recognition, develops verbal and translation skills, and acquaints students with some properties of linear relations. Three worksheets are included. (MNS)
Descriptors: Experiential Learning, Geometric Concepts, Graphs, Learning Activities
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Ericksen, Donna B.; Frank, Martha L. – Mathematics in School, 1991
Quilt-making is presented as an activity that helps elementary school children recognize and appreciate geometry in their world while developing their problem-solving skills. Students choose an appropriate pattern and cooperatively make the quilt. Related measurement questions and problems are provided. (MDH)
Descriptors: Elementary Education, Enrichment Activities, Experiential Learning, Geometric Concepts