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Chun Wang; Hepei Jiang; Yanjie Wu; Jing Hou; Zhangbin Su; Yiling Lin; Rongxian Zhang – Journal of Chemical Education, 2022
In the face of an increasingly severe global climate change situation, carbon neutrality initiatives have been included in the development action plans of many countries around the world. The carbon neutrality vision will also accelerate the revolution in the energy systems of countries around the world, injecting new vitality into the upgrading…
Descriptors: Instructional Design, Science Instruction, Science Education, Active Learning
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Kallery, Maria; Sofianidis, A.; Pationioti, P.; Tsialma, K.; Katsiana, X. – International Journal of Early Years Education, 2022
Cognitive style differences, also known as 'empathizing' and 'systemizing' have been argued as one reason that may explain differences in children's motivation to learn science. Researchers claim that people with a 'systemizing' cognitive style are likelier to engage in science than those with an 'empathizing' cognitive style. As such, they…
Descriptors: Cognitive Style, Learning Motivation, Learner Engagement, Inquiry
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Locatelli, Solange Wagner; Davidowitz, Bette – Chemistry Education Research and Practice, 2021
The objective of this work was to evaluate the implementation of a metavisual strategy for students to revise and self-regulate concepts arising in a study of a chemical reaction between ions. For this purpose, two chemistry education undergraduate students at a Brazilian public university carried out an investigative activity, involving…
Descriptors: Metacognition, Cognitive Style, Visualization, College Science
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Frey, Regina F.; McDaniel, Mark A.; Bunce, Diane M.; Cahill, Michael J.; Perry, Martin D. – CBE - Life Sciences Education, 2020
We previously reported that students' concept-building approaches, identified a priori using a cognitive psychology laboratory task, extend to learning complex science, technology, engineering, and mathematics topics. This prior study examined student performance in both general and organic chemistry at a select research institution, after…
Descriptors: Concept Formation, Problem Solving, Active Learning, Inquiry
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Teichert, Melonie A.; Schroeder, Maria J.; Lin, Shirley; Dillner, Debra K.; Komperda, Regis; Bunce, Diane M. – Journal of Chemical Education, 2020
On the basis of the results of two prior studies at the US Naval Academy (USNA), which described the choice of study resources and the self-reported learning approaches of students of differing achievement levels, the current investigation examines how students of differing achievement levels in general chemistry actually solve multiple-choice…
Descriptors: Problem Solving, Chemistry, Science Instruction, Science Tests
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Morphew, Jason W.; Gladding, Gary E.; Mestre, Jose P. – Physical Review Physics Education Research, 2020
Students must actively engage in problem solving to effectively learn in introductory physics courses. However, students often get stuck and are not able to make progress when solving problems outside of their current ability, particularly when one-on-one tutoring and instructor office hours are a limited resource. One effective technique consists…
Descriptors: Metacognition, Problem Solving, Introductory Courses, Physics
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Zu, Tianlong; Munsell, Jeremy; Rebello, N. Sanjay – Physical Review Physics Education Research, 2019
Even though it has been shown that retrieval practice could foster deeper learning and better long-term retention in other domains such as psychology, it is rarely studied in the context of physics learning where students need to solve more complicated problems. To an even lesser degree is comparing retrieval-based learning with other active…
Descriptors: Physics, Science Instruction, Teaching Methods, Recall (Psychology)
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Frey, Regina F.; Cahill, Michael J.; McDaniel, Mark A. – Journal of Chemical Education, 2017
One primary goal of many science courses is for students to learn creative problem-solving skills; that is, integrating concepts, explaining concepts in a problem context, and using concepts to solve problems. However, what science instructors see is that many students, even those having excellent SAT/ACT and Advanced Placement scores, struggle in…
Descriptors: Science Instruction, Problem Solving, Predictor Variables, Chemistry
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Blackburn, J. Joey; Robinson, J. Shane; Kacal, Amanda – Journal of Agricultural Education, 2015
The purpose of this exploratory, experimental study was to determine the effects that the type of reflection-in-action and students' cognitive style had on content knowledge of preservice agriculture teachers (N = 57) at Oklahoma State University. Students' cognitive style was assessed using Kirton's Adaptation-Innovation Inventory (KAI). Students…
Descriptors: Reflection, Cognitive Style, Creativity Tests, Problem Solving
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Overton, Tina L.; Potter, Nicholas M. – Chemistry Education Research and Practice, 2011
Much research has been carried out on how students solve algorithmic and structured problems in chemistry. This study is concerned with how students solve open-ended, ill-defined problems in chemistry. Over 200 undergraduate chemistry students solved a number of open-ended problem in groups and individually. The three cognitive variables of…
Descriptors: Cognitive Style, Chemistry, Short Term Memory, Problem Solving
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Stamovlasis, Dimitrios; Tsaparlis, Georgios – Science Education, 2012
In this study, we test an information-processing model (IPM) of problem solving in science education, namely the working memory overload model, by applying catastrophe theory. Changes in students' achievement were modeled as discontinuities within a cusp catastrophe model, where working memory capacity was implemented as asymmetry and the degree…
Descriptors: Predictor Variables, High School Students, Logical Thinking, Science Education
Beckley, Scott – ProQuest LLC, 2013
Many college students struggle with first-semester general chemistry. Prior studies have shown that a student's prior knowledge of chemistry, a cognitive factor, does not account for the total variance when measured by examination scores. This study explored the role of self-regulated learning (SRL) to identify the degree of success or failure of…
Descriptors: College Students, Science Instruction, Chemistry, Prior Learning
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Stamovlasis, Dimitrios – Chemistry Education Research and Practice, 2010
The aim of the present paper is two-fold. First, it attempts to support previous findings on the role of some psychometric variables, such as, M-capacity, the degree of field dependence-independence, logical thinking and the mobility-fixity dimension, on students' achievement in chemistry problem solving. Second, the paper aims to raise some…
Descriptors: Chemistry, Problem Solving, Robustness (Statistics), Multiple Regression Analysis
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Overton, Tina; Potter, Nicholas – Chemistry Education Research and Practice, 2008
Problem solving is an essential skill for undergraduate chemists to acquire. Many problem solving activities encountered on undergraduate programmes are algorithmic, and require lower order cognitive skills to be applied in order to reach a solution. We have developed a number of open-ended problems that use a real life context and require the…
Descriptors: Cognitive Style, Problem Solving, Chemistry, Undergraduate Students
Tan, Kok Siang; Goh, Ngoh Khang – Online Submission, 2008
Key to renewed concern on the affective domain of education (Fensham, 2007) and on school graduates' readiness for a world of work (DEST, 2008; WDA, 2006) is the student's inclination-to-reflect when engaged in a learning or problem-solving task. Reflective learning is not new to education (Dewey, 1933; Ellis, 2001). Since the…
Descriptors: Chemistry, Science Instruction, Secondary School Students, Reflection
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