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Gette, Cody R.; Kryjevskaia, Mila; Stetzer, MacKenzie R.; Heron, Paula R. L. – Physical Review Physics Education Research, 2018
A growing body of scholarly work indicates that student performance on physics problems stems from many factors, including relevant conceptual understanding. However, in contexts in which significant conceptual difficulties have been documented via research, it can be difficult to pinpoint and isolate such factors because students' written and…
Descriptors: Case Studies, Science Instruction, Scientific Principles, Physics
Frerejean, J.; van Strien, J. L. H.; Kirschner, P. A.; Brand-Gruwel, S. – Journal of Computer Assisted Learning, 2018
Although students often appear to be skilled in retrieving and making use of information from the internet, research shows that their information problem solving skills are overestimated. They show deficiencies in many of the necessary skills, such as generation of search terms, selection of sources, and critical processing of information. It is…
Descriptors: Problem Solving, Problem Based Learning, Skill Development, Training
Atmatzidou, Soumela; Demetriadis, Stavros; Nika, Panagiota – Journal of Science Education and Technology, 2018
Educational robotics (ER) is an innovative learning tool that offers students opportunities to develop higher-order thinking skills. This study investigates the development of students' metacognitive (MC) and problem-solving (PS) skills in the context of ER activities, implementing different modes of guidance in two student groups (11-12 years…
Descriptors: Metacognition, Problem Solving, Robotics, Teaching Methods
Randles, Christopher; Overton, Tina; Galloway, Ross; Wallace, Marsali – International Journal of Science Education, 2018
This paper describes the results of a comparative study into the approaches used by science undergraduates when solving open-ended problems. This study adopted a pseudo-grounded theory framework to analyse six case studies, one from each of the science disciplines studied. The study involved 70 participants from 5 institutions solving open-ended…
Descriptors: Undergraduate Students, College Science, Problem Solving, Science Process Skills
Abdillah; Nusantara, Toto; Subanji; Susanto, Hery; Abadyo – International Education Studies, 2016
This research is reviewing students' process of decision making intuitively, analytically, and interactively. The research done by using discount problem which specially created to explore student's intuition, analytically, and interactively. In solving discount problems, researcher exploring student's decision in determining their attitude which…
Descriptors: Foreign Countries, Decision Making, Problem Solving, Intuition
Ögren, Magnus; Nyström, Marcus; Jarodzka, Halszka – Instructional Science: An International Journal of the Learning Sciences, 2017
Textbooks in applied mathematics often use graphs to explain the meaning of formulae, even though their benefit is still not fully explored. To test processes underlying this assumed multimedia effect we collected performance scores, eye movements, and think-aloud protocols from students solving problems in vector calculus with and without graphs.…
Descriptors: Calculus, Graphs, Problem Solving, Attention
Phillips, Jeffrey A.; Clemmer, Katharine W.; McCallum, Jeremy E. B.; Zachariah, Thomas M. – Journal of College Science Teaching, 2017
Well-developed, problem-solving skills are essential for any student enrolled in a science, technology, engineering, and mathematics (STEM) course as well as for graduates in the workforce. One of the most essential skills is the ability to monitor one's own progress and understanding while solving a problem. Successful monitoring during the…
Descriptors: Problem Solving, Models, STEM Education, Skill Development
Care, Esther; Vista, Alvin; Kim, Helyn – Center for Universal Education at The Brookings Institution, 2020
This paper marks the second in a series of five reports detailing the work of the Optimizing Assessment for All (OAA) project at Brookings to strengthen education systems capacity to integrate 21st century skills into teaching and learning, using assessment as a lever for changing classroom practices. Twenty-first century skills (21CS) are now…
Descriptors: Foreign Countries, 21st Century Skills, Teaching Methods, Student Evaluation
Prevost, Luanna B.; Lemons, Paula P. – CBE - Life Sciences Education, 2016
This study uses the theoretical framework of domain-specific problem solving to explore the procedures students use to solve multiple-choice problems about biology concepts. We designed several multiple-choice problems and administered them on four exams. We trained students to produce written descriptions of how they solved the problem, and this…
Descriptors: Biology, Undergraduate Students, Problem Solving, Multiple Choice Tests
Grubbs, Michael E.; Strimel, Greg J.; Kim, Eunhye – International Journal of Technology and Design Education, 2018
Cultivating students' design abilities can be highly beneficial for the learning of science, technology, engineering, and mathematics (STEM) concepts, and development of higher-order thinking capabilities (National Academy of Engineering and National Research Council in STEM integration in k-12 education: status, prospects, and an agenda for…
Descriptors: Design, Engineering Education, Technology Education, Developmentally Appropriate Practices
Russ, Rosemary S.; Odden, Tor Ole B. – Physical Review Physics Education Research, 2017
Our field has long valued the goal of teaching students not just the facts of physics, but also the thinking and reasoning skills of professional physicists. The complexity inherent in scientific reasoning demands that we think carefully about how we conceptualize for ourselves, enact in our classes, and encourage in our students the relationship…
Descriptors: Physics, Evidence, Undergraduate Students, Scientific Concepts
McDonnell, Lisa; Mullally, Martha – Journal of College Science Teaching, 2016
An essential component skill of monitoring and reflection during problem solving is work checking, a process used by experts while solving problems to determine if their solution is achieving the goal. The results of work checking may reveal errors or inconsistencies, indicating a need for iteration. Using think-aloud interviews, the authors…
Descriptors: College Science, Protocol Analysis, Undergraduate Students, Genetics
Fang, N.; Tajvidi, M. – Journal of Computer Assisted Learning, 2018
This study focuses on the investigation of the effects of computer simulation and animation (CSA) on students' cognitive processes in an undergraduate engineering course. The revised Bloom's taxonomy, which consists of six categories in the cognitive process domain, was employed in this study. Five of the six categories were investigated,…
Descriptors: Computer Simulation, Animation, Educational Technology, Technology Uses in Education
Lee, Shin-Yi – International Journal of Science and Mathematics Education, 2016
The purpose of this study was to investigate the relationship between both 9th-grade and 1st-year undergraduate students' use of "look back" strategies and problem solving performance in multiple solution methods, the difference in their use of look back strategies and problem solving performance in multiple solution methods, and the…
Descriptors: Grade 9, College Freshmen, Mathematics, Undergraduate Students
Brooks, Neon; Goldin-Meadow, Susan – Cognitive Science, 2016
Previous work has found that guiding problem-solvers' movements can have an immediate effect on their ability to solve a problem. Here we explore these processes in a learning paradigm. We ask whether guiding a learner's movements can have a delayed effect on learning, setting the stage for change that comes about only after instruction. Children…
Descriptors: Movement Education, Protocol Analysis, Mathematics Instruction, Mathematics Achievement

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