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Jessica Swenson; Emma Treadway; Krista Beranger – Journal of Engineering Education, 2024
Background: Real-world engineering problems are ill-defined and complex, and solving them may arouse negative epistemic affect (feelings experienced within problem-solving). These feelings fall into sequenced patterns (affective pathways). Over time, these patterns can alter students' attitudes toward engineering. Meta-affect (affect or cognition…
Descriptors: Engineering Education, Problem Solving, Student Attitudes, Affective Behavior
M. Trigueros; E. Badillo; G. Sánchez-Matamoros; L. A. Hernández-Rebollar – ZDM: Mathematics Education, 2024
This study contributes to Action, Process, Object, Schema (APOS) theory research by showing two approaches used by advanced mathematics students to construct relations between higher-order derivatives to solve complex problems. We show evidence of students' ability to perform Actions on their graphing derivative Schema, that is, of its…
Descriptors: Educational Theories, College Students, College Mathematics, Mathematics Education
Problem-Solving Support and Instructional Sequence: Impact on Cognitive Load and Student Performance
Jamie Costley; Anna Gorbunova; Matthew Courtney; Ouhao Chen; Christopher Lange – European Journal of Psychology of Education, 2024
In terms of instructional sequencing and cognitive load research, it remains unclear what effect different instructional sequences have on cognitive load and how to use problem-solving support within instructional sequences to reduce cognitive load. The current study examines how instructional sequencing and problem-solving support interact with…
Descriptors: Problem Solving, Cognitive Processes, Difficulty Level, Academic Achievement
Andrew Olewnik; Randy Yerrick; Mike Eastman – European Journal of Engineering Education, 2024
This study explores students' initial engagement with ill-structured problems before and after the introduction of engineering problem typology as a framework for problem engagement and reflection. Using problem discussions, debrief interviews, and qualitative analysis of written artifacts, we considered observed changes to students' initial…
Descriptors: Undergraduate Students, Engineering Education, Problem Solving, Classification
Catherine Higgins; Ciaran O'Leary; Claire McAvinia; Barry J. Ryan – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: The teaching of appropriate problem-solving techniques to novice learners in undergraduate software development education is often poorly defined when compared to the delivery of programming techniques. Given the global need for qualified designers of information technology, the purpose of this research is to produce a foundational…
Descriptors: Educational Technology, Computer Software, Undergraduate Students, Novices
Erik Tillema; Joseph Antonides – Investigations in Mathematics Learning, 2024
The multiplication principle (MP) is foundational for combinatorial problem-solving. From a units-coordination perspective, applying the MP with justification entails establishing unit relationships between the number of options at each independent stage of a counting process and the total number of combinatorial outcomes. Existing research…
Descriptors: Multiplication, Mathematical Logic, Mathematics Instruction, Problem Solving
Michael A. Wahlgren – ProQuest LLC, 2024
This research focuses on identifying successful approaches used by university ombuds offices to enact change regarding dispute resolution options within their academic institute. The field of Ombuds has grown steadily in North America since the 1970s and is widely used by private industry, academia, and government organizations to deploy…
Descriptors: Change Agents, Ombudsmen, Higher Education, Administrator Role
Kaitlyn Stephens Serbin; Megan Wawro – International Journal of Research in Undergraduate Mathematics Education, 2024
Reasoning with mathematics plays an important role in university students' learning throughout their courses in the scientific disciplines, such as physics. In addition to understanding mathematical concepts and procedures, physics students often must mathematize physical constructs in terms of their associated mathematical structures and…
Descriptors: Mathematical Logic, Logical Thinking, College Students, Quantum Mechanics
Irina Braun; Scott E. Lewis; Nicole Graulich – Chemistry Education Research and Practice, 2025
The ability to reason with representations is pivotal for successful learning in Organic Chemistry and is closely linked to representational competence. Given the visual nature of this discipline, this comprises competency in extracting and processing relevant visual information. With regard to the resonance concept, proficiency in identifying…
Descriptors: Undergraduate Students, Organic Chemistry, Science Instruction, Pattern Recognition
Joash Geteregechi – International Electronic Journal of Mathematics Education, 2025
This paper presents the findings of a study involving 16 undergraduate students enrolled in a basic financial mathematics course. The study aimed to examine the nature of the students' problem-posing and problem-solving products and processes, as well as the interactions between the two. The findings revealed that the majority of the posed…
Descriptors: Undergraduate Students, Problem Solving, Mathematics Instruction, Mathematical Concepts
Kelsey S. Bitting; Jessica A. Merricks – Environmental Education Research, 2025
Undergraduates often express that they feel powerless to help solve important challenges such as climate change and environmental degradation, consistent with the broader phenomena of ecoparalysis. Viewed through value-expectancy frameworks for motivation, value for an outcome and self-efficacy to achieve it lead to goals, which motivate…
Descriptors: Undergraduate Students, Environmental Education, Problem Solving, Climate
Bruce Mann – Journal of Interactive Learning Research, 2025
In this study, temporal speech cues were integrated into online curriculum to solve non-routine problems in curricular multimedia. Teachers-in-training (n=56) were randomly assigned to one of three treatment conditions. It was expected that participants in the temporal speech cues condition would be more likely to solve problems than those in the…
Descriptors: Articulation (Speech), Cues, Multimedia Instruction, Multimedia Materials
Francisco Arredondo; Belen Garcia; Ruben Lijo – IEEE Transactions on Education, 2025
Contributions: This article presents the results from a teaching innovation project based on the creation of educational videos by students and their assessment through blind peer review in the context of an electric circuit course. This article also analyses the activity's impact on learning outcomes by comparing the results of participating…
Descriptors: Video Technology, Electronic Equipment, Peer Evaluation, Program Effectiveness
Jaewon Jung; Yoonhee Shin; HaeJin Chung; Mik Fanguy – Journal of Computing in Higher Education, 2025
This study investigated the effects of pre-training types on cognitive load, self-efficacy, and problem-solving in computer programming. Pre-training was provided to help learners acquire schemas related to problem-solving strategies. 84 undergraduate students were randomly assigned to one of three groups and each group received three different…
Descriptors: Training, Cognitive Processes, Difficulty Level, Self Efficacy
Beate Lien; Martin Nordskog – Journal of the International Society for Teacher Education, 2025
Mathematical modelling can be described as "[…] the process of translating between the real world and mathematics in both directions" (Blum & Ferri, 2009, p. 45). Both students and teachers often find mathematical modelling challenging. Thus, it is important that future teachers are aware of the challenges their students might…
Descriptors: Foreign Countries, Preservice Teachers, Mathematical Models, Preservice Teacher Education

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