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Showing 1 to 15 of 43 results Save | Export
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Stefan Depeweg; Contantin A. Rothkopf; Frank Jäkel – Cognitive Science, 2024
More than 50 years ago, Bongard introduced 100 visual concept learning problems as a challenge for artificial vision systems. These problems are now known as Bongard problems. Although they are well known in cognitive science and artificial intelligence, only very little progress has been made toward building systems that can solve a substantial…
Descriptors: Visual Learning, Problem Solving, Cognitive Science, Artificial Intelligence
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Ranjini Mahinda JohnBull; Mariale M. Hardiman – Teacher Educator, 2024
This study explored the effects of a professional development (PD) on neuroeducation general pedagogical knowledge and instructional strategies for three cohorts of in-service teachers on their teaching self-efficacy beliefs. Teacher self-efficacy is one of the most influential factors for teaching practices, student outcomes, and teacher…
Descriptors: Educational Change, Teacher Effectiveness, Self Efficacy, Faculty Development
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Ding, Meixia; Hassler, Ryan; Li, Xiaobao – International Journal of Mathematical Education in Science and Technology, 2021
Instructional principles gleaned from cognitive science play a critical role in improving classroom teaching. This study examines how three cognitive instructional principles including worked examples, representations, and deep questions are used in eight experienced elementary teachers' early algebra lessons in the U.S. Based on the analysis of…
Descriptors: Mathematics Instruction, Teaching Methods, Correlation, Cognitive Science
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Levitin, Anany – Journal of Problem Solving, 2017
The paper concerns an important but underappreciated genre of algorithmic puzzles, explaining what these puzzles are, reviewing milestones in their long history, and giving two different ways to classify them. Also covered are major applications of algorithmic puzzles in cognitive science research, with an emphasis on insight problem solving, and…
Descriptors: Problem Solving, Puzzles, Mathematics, Cognitive Science
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Cox, Richard; Brna, Paul – International Journal of Artificial Intelligence in Education, 2016
We reflect upon a paper we wrote that was published in 1995 (20 years ago). We outline the motivation for the work and situate it in the state of the art at that time. We suggest that a key contribution was to highlight the need to provide support for learners who reason with external representations. The support must be flexible enough to…
Descriptors: Intelligent Tutoring Systems, Artificial Intelligence, Problem Solving, Cognitive Processes
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Ambrose, Don – International Journal for Talent Development and Creativity, 2015
Arguments over conceptions of giftedness and provisions for the gifted bear similarities to arguments over key constructs in other disciplines. We can clarify and strengthen the conceptual foundations for gifted education by going beyond psychology and education to explore theory and research in other disciplines such as cultural anthropology,…
Descriptors: Academically Gifted, Gifted Education, Interdisciplinary Approach, Cooperative Planning
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Scherer, Hannah H.; Holder, Lauren; Herbert, Bruce – Journal of Geoscience Education, 2017
Engaging students in authentic problem solving concerning environmental issues in near-surface complex Earth systems involves both developing student conceptualization of Earth as a system and applying that scientific knowledge using techniques that model those used by professionals. In this first paper of a two-part series, we review the state of…
Descriptors: Earth Science, Instructional Design, Systems Approach, Environmental Education
Booth, Julie L.; McGinn, Kelly M.; Barbieri, Christina; Begolli, Kreshnik N.; Chang, Briana; Miller-Cotto, Dana; Young, Laura K.; Davenport, Jodi L. – Grantee Submission, 2017
In the present chapter, we review the evidence for several principles that are especially promising for improving mathematics instruction. Using the classification scheme proposed by Koedinger et al. (2013), we begin with principles that focus on improving memory and fluency: scaffolding, distributed practice, and feedback. We then move to worked…
Descriptors: Cognitive Science, Scientific Principles, Mathematics Instruction, Mathematical Concepts
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Afacan Adanir, Gulgun – Turkish Online Journal of Distance Education, 2017
The case study focuses on the interactional mechanisms through which online collaborative teams co-construct a shared understanding of an analytical geometry problem by using dynamic geometry representations. The collaborative study consisted of an assignment on which the learners worked together in groups to solve a ship navigation problem as…
Descriptors: Case Studies, Cooperative Learning, Computer Managed Instruction, Geometry
Booth, Julie L.; McGinn, Kelly M.; Young, Laura K.; Barbieri, Christina – Grantee Submission, 2015
Findings from the fields of cognitive science and cognitive development propose a variety of evidence-based principles for improving learning. One such recommendation is that instead of having students practice solving long strings of problems on their own after a lesson, worked-out examples of problem solutions should be incorporated into…
Descriptors: STEM Education, Problem Solving, Models, Textbooks
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Jäkel, Frank; Schreiber, Cornell – Journal of Problem Solving, 2013
Problem solving research has encountered an impasse. Since the seminal work of Newell und Simon (1972) researchers do not seem to have made much theoretical progress (Batchelder and Alexander, 2012; Ohlsson, 2012). In this paper we argue that one factor that is holding back the field is the widespread rejection of introspection among cognitive…
Descriptors: Reflection, Problem Solving, Metacognition, Protocol Analysis
WestEd, 2014
Consider that colorful photographs, eye-catching illustrations, and captivating images intended to make textbooks more appealing may actually distract students from the lesson at hand. Or that asking students to simply solve math problems might not be as effective as having them explain the steps of solutions that are already worked out--even some…
Descriptors: Cognitive Science, Mathematics Curriculum, Curriculum Development, Middle Schools
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Wisdom, Thomas N.; Song, Xianfeng; Goldstone, Robert L. – Cognitive Science, 2013
When making decisions, humans can observe many kinds of information about others' activities, but their effects on performance are not well understood. We investigated social learning strategies using a simple problem-solving task in which participants search a complex space, and each can view and imitate others' solutions. Results…
Descriptors: Learning Strategies, Social Influences, Social Networks, Problem Solving
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Haupt, Grietjie – International Journal of Technology and Design Education, 2015
Empirical evidence on the way in which expert designers from different domains cognitively connect their internal processes with external resources is presented in the context of an extended cognition model. The article focuses briefly on the main trends in the extended design cognition theory and in particular on recent trends in information…
Descriptors: Design, Expertise, Cognitive Processes, Models
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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
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