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Kelly Boden; Eric Kuo; Timothy J. Nokes-Malach; Tanner Wallace; Muhsin Menekse – Journal of Educational Research, 2023
Self-efficacy and achievement goals represent two extensively researched motivational factors in education and have been related to numerous academic outcomes. However, little is known about how they relate to different types of problem-solving. Furthermore, while prior work has found these motivational factors are related, less work has examined…
Descriptors: Self Efficacy, Predictor Variables, Academic Achievement, Goal Orientation
Burkholder, Eric W.; Murillo-Gonzalez, Gabriel; Wieman, Carl – Physical Review Physics Education Research, 2021
Previous work has looked at the relationship between high school preparation and student performance in calculus-based introductory mechanics (physics 1) courses. Here, we extend that work to look at performance in introductory calculus-based electricity and magnetism (physics 2), and we look at the significance of what college math courses have…
Descriptors: Physics, Science Instruction, Introductory Courses, Calculus
Reinhard, Aaron; Felleson, Alex; Turner, Paula C.; Green, Maxwell – Physical Review Physics Education Research, 2022
We studied the impact of metacognitive reflections on recently-completed work as a way to improve the retention of newly learned problem-solving techniques. Students video recorded themselves talking through problems immediately after finishing them, completed ongoing problem-solving strategy maps or problem-sorting exercises, and filled out…
Descriptors: Metacognition, Problem Solving, Retention (Psychology), Video Technology
Espinosa, Tobias; Miller, Kelly; Araujo, Ives; Mazur, Eric – Physical Review Physics Education Research, 2019
Self-efficacy represents an individual's belief that he or she can perform a particular task in a given domain. It is a strong predictor for performance and persistence in STEM education. Research shows that there is a large and persistent gender gap in student self-efficacy in STEM academic disciplines. In some cases, active teaching strategies…
Descriptors: Physics, Science Instruction, Self Efficacy, STEM Education
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
Otwinowska, Agnieszka; Forys, Malgorzata – International Journal of Bilingual Education and Bilingualism, 2017
CLIL (Content and Language Integrated Learning) is a teaching method in which learners develop linguistic competence and problem-solving abilities by learning content subjects in another language. However, learners' cognitive gains may depend on their affectivity. Negative affect hampers complex cognitive processing essential for problem-solving,…
Descriptors: Second Language Learning, Second Language Instruction, Language of Instruction, Course Content
Richey, J. Elizabeth; Nokes-Malach, Timothy J. – Learning and Instruction, 2013
A central goal of the learning sciences is to discover principles that determine the optimal amount of instructional assistance to support robust learning (Koedinger & Aleven, 2007). We examined learning outcomes from providing and withholding stepwise instructional explanations as students studied worked examples and solved physics problems. We…
Descriptors: Demonstrations (Educational), Teaching Methods, Problem Solving, Learning Processes
St Clair-Thompson, Helen; Overton, Tina; Bugler, Myfanwy – Chemistry Education Research and Practice, 2012
Previous research has revealed that problem solving and attainment in chemistry are constrained by mental capacity and working memory. However, the terms mental capacity and working memory come from different theories of cognitive resources, and are assessed using different tasks. The current study examined the relationships between mental…
Descriptors: Chemistry, Problem Solving, Short Term Memory, Science Instruction
Gulacar, Ozcan; Bowman, Charles R.; Feakes, Debra A. – Science Education International, 2013
The problem-solving strategies of students enrolled in general chemistry courses have been the subject of numerous research investigations. In most cases, the investigators were interested in the specific areas or concepts that posed the greatest difficulty to a student's success in achieving the correct answer. However, the investigation reported…
Descriptors: Problem Solving, College Students, Chemistry, Science Instruction
Ionas, Ioan Gelu; Cernusca, Dan; Collier, Harvest L. – International Journal of Teaching and Learning in Higher Education, 2012
This exploratory study presents the outcomes of using self-explanation to improve learners' performance in solving basic chemistry problems. The results of the randomized experiment show the existence of a moderation effect between prior knowledge and the level of support self-explanation provides to learners, suggestive of a synergistic effect…
Descriptors: Prior Learning, Academic Achievement, Experimental Groups, Control Groups
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
Lartson, Cobina Adu – ProQuest LLC, 2013
Recent trends indicate a significant decline in the number of students graduating from Science, Technology, Engineering and Math (STEM) programs in the US. The under-representation of students of color, females and low income students in STEM programs has also been documented. Design Based Science (DBS) instruction has been suggested to improve…
Descriptors: Science Instruction, STEM Education, Instructional Design, Design
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
Ding, N.; Bosker, R. J.; Harskamp, E. G. – Computers & Education, 2011
The aim of the study is to investigate the influence of gender and gender pairing on students' learning performances and knowledge elaboration processes in Computer-Supported Collaborative Learning (CSCL). A sample of ninety-six secondary school students, participated in a two-week experiment. Students were randomly paired and asked to solve…
Descriptors: Males, Females, Secondary School Students, Gender Differences
Zydney, Janet Mannheimer; Grincewicz, Amy – Journal of Science Education and Technology, 2011
This study investigated the connection between the use of video cases within a multimedia learning environment and students' inquiry into a socio-scientific problem. The software program was designed based on principles from the Cognitive Flexibility Theory (CFT) and incorporated video cases of experts with differing perspectives. Seventy-nine…
Descriptors: Expertise, Ethics, Thinking Skills, Urban Schools
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