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Showing 106 to 120 of 136 results Save | Export
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Bogard, Treavor; Liu, Min; Chiang, Yueh-hui Vanessa – Educational Technology Research and Development, 2013
This multiple-case study examined how advanced learners solved a complex problem, focusing on how their frequency and application of cognitive processes contributed to differences in performance outcomes, and developing a mental model of a problem. Fifteen graduate students with backgrounds related to the problem context participated in the study.…
Descriptors: Case Studies, Observation, Protocol Analysis, Prior Learning
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Wolf, Steven F.; Dougherty, Daniel P.; Kortemeyer, Gerd – Physical Review Special Topics - Physics Education Research, 2012
A seminal study by Chi "et al." firmly established the paradigm that novices categorize physics problems by "surface features" (e.g., "incline," "pendulum," "projectile motion," etc.), while experts use "deep structure" (e.g., "energy conservation," "Newton 2," etc.). Yet, efforts to replicate the study frequently fail, since the ability to…
Descriptors: Physics, Novices, Expertise, Problem Solving
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Hong, Yi-Chun; Choi, Ikseon – Educational Technology Research and Development, 2011
Design tasks are omnipresent in our everyday lives. Previous research shows that reflective thinking is one of the critical factors in solving design problems. Related research has attempted to capture designers' reflective thinking process. Yet a close inspection of designers' reflective thinking taking place during their design process demands…
Descriptors: Reflection, Models, Problem Solving, Novices
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Gogus, Aytac – Technology, Instruction, Cognition and Learning, 2012
This study used HIMATT (Highly Interactive Model-based Assessment Tools and Technologies) to evaluate the cognitive models of individuals who are solving complex mathematical problems. The goal was to determine the ability of HIMATT to assess learning in mathematics. Research on cognitive and mental models proposes that internal conceptual systems…
Descriptors: Schemata (Cognition), Problem Solving, Mathematics, Evaluation Methods
Galyardt, April – ProQuest LLC, 2012
This dissertation examines two related questions. "How do mixed membership models work?" and "Can mixed membership be used to model how students use multiple strategies to solve problems?". Mixed membership models have been used in thousands of applications from text and image processing to genetic microarray analysis. Yet…
Descriptors: Statistical Distributions, Models, Learning Strategies, Problem Solving
Koehler, Adrie A.; Ertmer, Peggy A. – Educational Technology, 2016
Case-based instruction (CBI) offers a promising method for promoting problem-solving skills in learners. However, during CBI, the instructor shoulders major responsibility for shaping the learning that takes place. Research indicates that the facilitation techniques used during case discussions influence what gets covered, and to what extent,…
Descriptors: Web 2.0 Technologies, Case Method (Teaching Technique), Web Based Instruction, Problem Solving
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Nievelstein, Fleurie; van Gog, Tamara; van Dijck, Gijs; Boshuizen, Henny P. A. – Contemporary Educational Psychology, 2013
The worked example effect indicates that learning by studying worked examples is more effective than learning by solving the equivalent problems. The expertise reversal effect indicates that this is only the case for novice learners; once prior knowledge of the task is available problem solving becomes more effective for learning. These effects,…
Descriptors: Law Students, Novices, Expertise, Court Litigation
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Hustedt, Jason T. – Journal of Research in Childhood Education, 2015
This study further extends scaffolding research to mother-child dyads (N = 51) in poverty, examining relationships between maternal scaffolding and 4-year-old Head Start children's own later scaffolding behaviors. At Time 1, experimental group children received maternal scaffolding during problem-solving tasks, whereas control group children…
Descriptors: Parent Child Relationship, Mothers, Preschool Children, Scaffolding (Teaching Technique)
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Davenport, Jodi L.; Leinhardt, Gaea; Greeno, James; Koedinger, Kenneth; Klahr, David; Karabinos, Michael; Yaron, David J. – Journal of Chemical Education, 2014
Two suggestions for instruction in chemical equilibrium are presented, along with the evidence that supports these suggestions. The first is to use diagrams to connect chemical reactions to the effects of reactions on concentrations. The second is the use of the majority and minority species (M&M) strategy to analyze chemical equilibrium…
Descriptors: Chemistry, Science Instruction, Instructional Improvement, Evidence
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Rausch, Andreas; Schley, Thomas; Warwas, Julia – International Journal of Lifelong Education, 2015
Contemporary office work is becoming increasingly challenging as many routine tasks are automated or outsourced. The remaining problem solving activities may also offer potential for lifelong learning in the workplace. In this study, we analyzed problem solving in an office work setting using an Internet-based, semi-standardized diary to collect…
Descriptors: Problem Solving, Office Occupations, Diaries, Expertise
Jiang, Yang; Paquette, Luc; Baker, Ryan S.; Clarke-Midura, Jody – International Educational Data Mining Society, 2015
Inquiry skills are an important part of science education standards. There has been particular interest in verifying that these skills can transfer across domains and instructional contexts [4,15,16]. In this paper, we study transfer of inquiry skills, and the effects of prior practice of inquiry skills, using data from over 2000 middle school…
Descriptors: Performance Based Assessment, Virtual Classrooms, Comparative Analysis, Novices
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Lee, Jeongmin; Spector, J. Michael – Instructional Science: An International Journal of the Learning Sciences, 2012
The goals of this study were to investigate the timing and the mechanism by which two types of model-centered instruction (MCI)--expert modeling (EM) and self-guided modeling (SGM)--might be made increasingly effective, efficient, and engaging for learners with different levels of expertise. The 62 pre-service and in-service evaluators who…
Descriptors: Modeling (Psychology), Teaching Methods, Problem Solving, Instructional Effectiveness
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Kwisthout, Johan – Journal of Problem Solving, 2012
When computer scientists discuss the computational complexity of, for example, finding the shortest path from building A to building B in some town or city, their starting point typically is a formal description of the problem at hand, e.g., a graph with weights on every edge where buildings correspond to vertices, routes between buildings to…
Descriptors: Problem Solving, Computation, Abstract Reasoning, Difficulty Level
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Razzouk, Rim; Shute, Valerie – Review of Educational Research, 2012
Design thinking is generally defined as an analytic and creative process that engages a person in opportunities to experiment, create and prototype models, gather feedback, and redesign. Several characteristics (e.g., visualization, creativity) that a good design thinker should possess have been identified from the literature. The primary purpose…
Descriptors: Feedback (Response), Creativity, Problem Solving, Expertise
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Chang, Pei-Fen; Lin, Miao-Chen – Journal of Further and Higher Education, 2015
This study investigates problem-solving difficulties of novices in a classroom setting, using a German instructional tool, the Fischertechnik kit of approximately 400 parts. In order to analyse the students' thinking processes as they solved the problems, verbal protocol analysis (VPA) was used to record the students'' thinking processes and…
Descriptors: Problem Solving, Novices, Student Characteristics, Student Behavior
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