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Showing 1 to 15 of 40 results Save | Export
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Soonri Choi; Dongsik Kim; Jihoon Song – Educational Technology Research and Development, 2025
Despite the efforts of instructional design (ID) to solve real-life problems, it remains challenging to adapt and be flexible in such situations. In particular, problems that require simultaneous knowledge of multiple domains and contexts are more challenging to solve because real-life problems do not reconstruct the learned experience. This is…
Descriptors: Expertise, Instructional Design, Problem Solving, Cognitive Processes
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Miskioglu, Elif Eda; Aaron, Caitlyn; Bolton, Caroline; Martin, Kaela M.; Roth, Madeline; Kavale, Sanjeev M.; Carberry, Adam R. – Journal of Engineering Education, 2023
Background: A defining characteristic of expertise is the use of intuition to navigate tasks. The construct of intuition and its importance is well-studied in other disciplines, but little is known about how it translates to engineering. Existing literature on intuition does not clearly define the construct and its relationship to problem solving,…
Descriptors: Intuition, Engineering, Expertise, Decision Making
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Kahn, Joshua D.; Bullis, Michael D. – Leadership and Policy in Schools, 2023
In this integrative literature review, we synthesize the scant literature from the last 40 years of educational research on how school principals make difficult decisions. Reviewing 15 peer-reviewed articles, articles were coded for the methods used and their substantive findings. We review sampling techniques, the types of problems and methods…
Descriptors: Cognitive Processes, Decision Making, Principals, Models
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Yushan Xiong; Jialan Liu; Jiejie Lai; Tongyi Zheng; Xuhuai Qu; Qiuye Li; Yi Zhong; Lei Bao; Shaona Zhou – Physical Review Physics Education Research, 2025
This study investigates the cognitive processes of novice students in science learning, with a specific focus on how inhibitory control is employed to overcome a common student misconception about the buoyant force in liquid, which leads to the belief that "the greater the depth an object is in a liquid, the greater the buoyant force it…
Descriptors: Scientific Concepts, Misconceptions, Intervention, Physics
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Endres, Tino; Lovell, Oliver; Morkunas, David; Rieß, Werner; Renkl, Alexander – British Journal of Educational Psychology, 2023
Background & Aims: Cognitive load theory assumes that the higher the learner's prior knowledge (i.e., the more expert the learner), the lower the intrinsic cognitive load (complexity) experienced for a given problem. While this is the case in many scenarios, there can be cases in which the converse is also true, resulting in more expert…
Descriptors: Prior Learning, Cognitive Processes, Difficulty Level, Problem Solving
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David John; Ritayan Mitra – Frontline Learning Research, 2023
Eye tracking technology enables the visualisation of a problem solver's eye movement while working on a problem. The eye movement of experts has been used to draw attention to expert problem solving processes in a bid to teach procedural skills to learners. Such affordances appear as eye movement modelling examples (EMME) in the literature. This…
Descriptors: Eye Movements, Problem Solving, Expertise, Novices
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Pande, Prajakt; Chandrasekharan, Sanjay – Research in Science Education, 2022
Representational competence in science is the ability to generate external representations (e.g. equations, graphs) of real-world phenomena, transform between these representations, and use them in an integrated fashion. Difficulties in achieving representational competence are often considered central to difficulties in learning science.…
Descriptors: Competence, Science Process Skills, Eye Movements, Problem Solving
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Kiernan, Louise; Ledwith, Ann; Lynch, Ray – International Journal of Technology and Design Education, 2020
Design education has moved towards a collaborative practice where designers work in teams and with other disciplines to solve unstructured problems. Along with the cognitive skills involved in the execution of the design process, designers also need skills to work in teams, share information, negotiate common ground and reach consensus.…
Descriptors: Expertise, Novices, Interdisciplinary Approach, Design
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Malone, Sarah; Altmeyer, Kristin; Vogel, Markus; Brünken, Roland – Journal of Computer Assisted Learning, 2020
Multiple external representations (MERs) play an important role in the learning field of mathematics. Whereas the cognitive theory of multimedia learning and the integrative text and picture comprehension model assume that the heterogeneous combination of symbolic and analogous representations fosters learning; the design, functions, and tasks…
Descriptors: Problem Solving, Equations (Mathematics), Eye Movements, Multimedia Instruction
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Casalvieri, Christian; Gambini, Alessandro – International Journal for Technology in Mathematics Education, 2022
In this paper we present a qualitative analysis based on data collected by means of an eye-tracker tool, concerning the outcome of a mathematical analysis question administered to a group of candidates of university level or higher. One of the research aims is to highlight similarities and differences in the visual observation of the question…
Descriptors: Eye Movements, Cognitive Processes, Mathematics Education, Higher Education
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Bartolucci, Marco; Mattioli, Francesco; Batini, Federico – International Journal of Game-Based Learning, 2019
In recent years, the authors have witnessed the rebirth of board games. This contribution aims to investigate the educational potential of non-random board games in two ways: the comparison of performances of "expert adult players" and "adult non-players" through a correlation study (n=45) and the comparison between the results…
Descriptors: Games, Expertise, Adults, Children
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Potter, Patricia; France, Bev – International Journal of Technology and Design Education, 2018
Design and problem solving are central to technology and have distinguished learning in technology from other curriculum areas. This research investigated how expert technologists learn design and problem solving through experience. Data was collected from four expert technologists and this information was analysed using learning theories that…
Descriptors: Design, Problem Solving, Technology Education, Expertise
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Urquhart, Sarah; Franco, Joana – AERA Online Paper Repository, 2016
Design education exists to prepare students for design practice. Yet the goal state, design expertise, remains poorly defined. This paper presents a critical cross disciplinary literature synthesizing literature across design, engineering, expertise, creativity, and new evidence from a cognitive task analysis of expert designers to explore…
Descriptors: Design, Expertise, Novices, Instructional Design
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Leak, Anne E.; Rothwell, Susan L.; Olivera, Javier; Zwickl, Benjamin; Vosburg, Jarrett; Martin, Kelly Norris – Physical Review Physics Education Research, 2017
Problem-solving strategies learned by physics undergraduates should prepare them for real-world contexts as they transition from students to professionals. Yet, graduate students in physics-intensive research face problems that go beyond problem sets they experienced as undergraduates and are solved by different strategies than are typically…
Descriptors: Problem Solving, Physics, Doctoral Programs, Graduate Students
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Kozbelt, Aaron; Dexter, Scott; Dolese, Melissa; Meredith, Daniel; Ostrofsky, Justin – Journal of Creative Behavior, 2015
We applied computer-based text analyses of regressive imagery to verbal protocols of individuals engaged in creative problem-solving in two domains: visual art (23 experts, 23 novices) and computer programming (14 experts, 14 novices). Percentages of words involving primary process and secondary process thought, plus emotion-related words, were…
Descriptors: Creative Thinking, Problem Solving, Imagery, Protocol Analysis
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