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Yee, Sean – Investigations in Mathematics Learning, 2013
While the average teenager's conversation may seem inundated with the word "like", in the mathematics classroom, teenagers use it with purpose. Linguists study the word "like" to understand and categorize comparative statements. By overlapping linguistics and mathematics education within the frame of cognitive science, this study found that high…
Descriptors: High School Students, Figurative Language, Cognitive Psychology, Cognitive Science
Batchelder, William H.; Alexander, Gregory E. – Journal of Problem Solving, 2012
This paper provides a critical examination of the current state and future possibility of formal cognitive theory for insight problem solving and its associated "aha!" experience. Insight problems are contrasted with move problems, which have been formally defined and studied extensively by cognitive psychologists since the pioneering…
Descriptors: Intuition, Problem Solving, Cognitive Processes, Theories
Nokes, Timothy J.; Hausmann, Robert G. M.; VanLehn, Kurt; Gershman, Sophia – Instructional Science: An International Journal of the Learning Sciences, 2011
Cognitive science principles should have implications for the design of effective learning environments. The self-explanation principle was chosen for the current work because it has developed significantly over the last 20 years. Early formulations hypothesized that self-explanation facilitated inference generation to supply missing information…
Descriptors: Prior Learning, Physics, Cognitive Psychology, Cognitive Science
Rosenshine, Barak – Education Digest: Essential Readings Condensed for Quick Review, 2012
This article presents 10 research-based principles of instruction, along with suggestions for classroom practice. The principles come from (a) research in cognitive science, (b) research on master teachers, and (c) research on cognitive supports. The instructional principles are: (1) Begin a lesson with a short review of previous learning to…
Descriptors: Prior Learning, Cognitive Psychology, Cognitive Science, Master Teachers
Clark, Richard E. – Educational Technology, 2011
There are at least three powerful insights for educational technology researchers and designers from recent neuroscience studies of the brain and from cognitive science research findings: First, our brains learn and process two very different types of knowledge; non-conscious, automated, procedural, or implicit knowledge, and conscious,…
Descriptors: Evidence, Learning Theories, Instructional Design, Problem Solving
Muldner, Kasia; Conati, Cristina – International Journal of Artificial Intelligence in Education, 2010
Although worked-out examples play a key role in cognitive skill acquisition, research demonstrates that students have various levels of meta-cognitive abilities for using examples effectively. The Example Analogy (EA)-Coach is an Intelligent Tutoring System that provides adaptive support to foster meta-cognitive behaviors relevant to a specific…
Descriptors: Intelligent Tutoring Systems, Problem Solving, Cognitive Psychology, Thinking Skills
Gr ver Aukrust, Vibeke, Ed. – Elsevier, 2011
This collection of 58 articles from the recently-published third edition of the International Encyclopedia of Education focuses on learning, memory, attention, problem solving, concept formation, and language. Learning and cognition is the foundation of cognitive psychology and encompasses many topics including attention, memory, categorization,…
Descriptors: Memory, Concept Formation, Cognitive Psychology, Problem Solving
Ablin, Jason L. – Mind, Brain, and Education, 2008
How can current findings in neuroscience help educators identify particular cognitive strengths in students? In this commentary on Immordino-Yang's research regarding Nico and Brooke, I make 3 primary assertions: (a) the cognitive science community needs to develop an accessible language and mode of communicating applicable research to educators,…
Descriptors: Problem Based Learning, Problem Solving, Educational Practices, Cognitive Psychology
Aldous, Carol R. – International Education Journal, 2007
This paper examines the intersection between creativity, problem solving, cognitive psychology and neuroscience in a discussion surrounding the genesis of new ideas and innovative science. Three creative activities are considered. These are (a) the interaction between visual-spatial and analytical or verbal reasoning, (b) attending to feeling in…
Descriptors: Creativity, Creative Activities, Problem Solving, Interaction
Reif, Frederick – MIT Press (BK), 2008
Many students find it difficult to learn the kinds of knowledge and thinking required by college or high school courses in mathematics, science, or other complex domains. Thus they often emerge with significant misconceptions, fragmented knowledge, and inadequate problem-solving skills. Most instructors or textbook authors approach their teaching…
Descriptors: Expository Writing, Quality Control, Problem Solving, Scientific Concepts

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