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Lenzer, Stefanie; Smarsly, Bernd; Graulich, Nicole – International Journal of Science Education, 2020
The need to develop clean-energy storage systems, harvesting technologies, and new functional materials are but a few of the many contemporary challenges in the domain of science today. To address these challenges, problem solving has become a key skill of the 21st century. It is generally documented, however, that experts and students differ in…
Descriptors: Undergraduate Students, College Science, Science Instruction, Chemistry
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George-Williams, Stephen R.; Ziebell, Angela L.; Thompson, Christopher D.; Overton, Tina L. – International Journal of Science Education, 2020
Previous work at Monash University has shown that students recognise that inquiry-, problem-, context- and industry-based experiments were better contextualised, more open to decision making and aided in the development of scientific and transferable skills. This study investigated whether these gains persisted over a longer time scale, rather…
Descriptors: Foreign Countries, Inquiry, Problem Solving, Laboratories
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Broman, Karolina; Bernholt, Sascha; Parchmann, Ilka – International Journal of Science Education, 2018
Context-based learning aims to make learning more meaningful by raising meaningful problems. However, these types of problems often require reflection and thinking processes that are more complex and thus more difficult for students, putting high demands on students' problem-solving capabilities. In this paper, students' approaches when solving…
Descriptors: Models, Scaffolding (Teaching Technique), Problem Solving, Chemistry
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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
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Manneh, Ilana A.; Rundgren, Carl-Johan; Hamza, Karim M.; Eriksson, Lars – International Journal of Science Education, 2018
In this study, we explore the issues and challenges involved in supporting students' learning to discern relevant and critical aspects of determining oxidation states of atoms in complex molecules. We present a detailed case of an interaction between three students and a tutor during a problem-solving class, using the analytical tool of practical…
Descriptors: Foreign Countries, Undergraduate Students, College Science, Science Education
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Kaufmann, Ilana; Hamza, Karim M.; Rundgren, Carl-Johan; Eriksson, Lars – International Journal of Science Education, 2017
This study explores first-year university students' reasoning as they learn to draw Lewis structures. We also present a theoretical account of the formal procedure commonly taught for drawing these structures. Students' discussions during problem-solving activities were video recorded and detailed analyses of the discussions were made through the…
Descriptors: College Freshmen, Abstract Reasoning, Learning Processes, Problem Solving
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Zhang, Dongmei; Shen, Ji – International Journal of Science Education, 2015
Problem-solving has been one of the major strands in science education research. But much of the problem-solving research has been conducted on discipline-based contexts; little research has been done on how students, especially individuals, solve interdisciplinary problems. To understand how individuals reason about interdisciplinary problems, we…
Descriptors: Problem Solving, Interdisciplinary Approach, Science Education, Graduate Students
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van Opstal, Mary T.; Daubenmire, Patrick L. – International Journal of Science Education, 2015
Metacognition can be described as an internal conversation that seeks to answer the questions, "how much do I really know about what I am learning" and, "how am I monitoring what I am learning?" Metacognitive regulation skills are critical to meaningful learning because they facilitate the abilities to recognize the times when…
Descriptors: Metacognition, Science Instruction, Qualitative Research, Heuristics
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Jeppsson, Fredrik; Haglund, Jesper; Amin, Tamer G. – International Journal of Science Education, 2015
Many studies have previously focused on how people with different levels of expertise solve physics problems. In early work, focus was on characterising differences between experts and novices and a key finding was the central role that propositionally expressed principles and laws play in expert, but not novice, problem-solving. A more recent…
Descriptors: Thermodynamics, Physics, Science Education, Problem Solving
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Yoon, Heojeong; Woo, Ae Ja; Treagust, David; Chandrasegaran, A. L. – International Journal of Science Education, 2014
The efficacy of problem-based learning (PBL) in an analytical chemistry laboratory course was studied using a programme that was designed and implemented with 20 students in a treatment group over 10 weeks. Data from 26 students in a traditional analytical chemistry laboratory course were used for comparison. Differences in the creative thinking…
Descriptors: Preservice Teacher Education, Chemistry, Problem Based Learning, Laboratory Experiments
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Gulacar, Ozcan; Fynewever, Herb – International Journal of Science Education, 2010
We present a quantitative model for predicting the level of difficulty subjects will experience with specific problems. The model explicitly accounts for the number of subproblems a problem can be broken into and the difficultly of each subproblem. Although the model builds on previously published models, it is uniquely suited for blending with…
Descriptors: Stoichiometry, Protocol Analysis, Difficulty Level, Problem Solving
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Devetak, Iztok; Glazar, Sasa Aleksij – International Journal of Science Education, 2010
Submicrorepresentations (SMRs) are a powerful tool for identifying misconceptions of chemical concepts and for generating proper mental models of chemical phenomena in students' long-term memory during chemical education. The main purpose of the study was to determine which independent variables (gender, formal reasoning abilities, visualization…
Descriptors: Chemistry, Misconceptions, Gender Differences, Cognitive Ability
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Rappoport, Lana T.; Ashkenazi, Guy – International Journal of Science Education, 2008
Chemical phenomena can be described using three representation modes: macro, submicro, and symbolic. The way students use and connect these modes when solving conceptual problems was studied, using a think-aloud interview protocol. The protocol was validated through interviews with six faculty members, and then applied to four graduate and six…
Descriptors: Protocol Analysis, Familiarity, Chemistry, Misconceptions
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Reigosa, Carlos; Jimenez-Aleixandre, Maria-Pilar – International Journal of Science Education, 2007
This case study examines the performances of 18 10th-grade students (age 15-16 years) in the process of performing problem-solving tasks in the physics and chemistry laboratory. The study focuses on different types of problems arising in the process of transferring responsibility to students in a context of teacher assistance to autonomous…
Descriptors: Physics, Science Laboratories, Educational Objectives, School Culture
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Reid, Norman; Yang, Mei-Jung – International Journal of Science Education, 2002
Uses a new set of 14 open-ended problems to gain some initial insights into the way pupils solve open-ended chemistry problems. Emphasizes how concepts and linkages between concepts influence success in solving such problems. Suggests that creating links between "islands" of knowledge is an important skill in problem solving. (Contains 37…
Descriptors: Chemistry, Cognitive Ability, Elementary Secondary Education, High Schools
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