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Christopher Greer; Devon Eichfeld; Sara Sattarzadeh; Siu Ling Leung – Advances in Engineering Education, 2024
When engineering students are unable to evaluate the validity of their solutions, they are unprepared to solve complex, real-world engineering problems that require decomposition or knowledge transfer. A proper framework is key to successful implementation and can encourage more institutions to adopt problem-solving engineering labs. This paper…
Descriptors: Problem Solving, Engineering Education, Learning Laboratories, Scientific Concepts
Jyoti Shaha; Vishwas Badhe; Ramkumar Rajendran – International Association for Development of the Information Society, 2024
Metacognitive strategies play a crucial role in Computer-Based Learning Environments (CBLEs). However, students often struggle to apply these strategies spontaneously during learning. Research demonstrates that metacognitive prompts can effectively guide students' awareness and help them monitor their learning progress, leading to improved…
Descriptors: Metacognition, Electronic Equipment, Problem Solving, Computer Uses in Education
Jonathan Steinberg; Carol Forsyth; Jessica Andrews-Todd – ETS Research Report Series, 2024
In a study of 370 postsecondary students in electronics, engineering, and other science classes, we investigated collaborative problem-solving (CPS) skills that best predict performance at individual levels in an online electronics environment. The results showed that while monitoring was a consistent predictor across levels, other skills such as…
Descriptors: Problem Solving, Predictor Variables, Performance, Task Analysis
Anu Singh – ProQuest LLC, 2024
Critical thinking is one of the most desired skills in the workplace, as it assists an individual in solving complex problems and making informed decisions, resulting in their workplace success. Argumentation is one instructional approach that provides students an opportunity to engage in higher-order thinking and improve their communication…
Descriptors: Undergraduate Students, Engineering Education, Persuasive Discourse, Critical Thinking
Rajni Singh; Kuldip Singh Sangwan; Devika Sangwan – Journal of Applied Research in Higher Education, 2024
Purpose: This study seeks insights into the engineering undergraduates' knowledge of problem-solving process, teamwork characteristics and communication skills. Design/methodology/approach: The data for the study were collected through consecutive sampling technique from 78 engineering undergraduates at the Birla Institute of Technology and…
Descriptors: Foreign Countries, Knowledge Level, Undergraduate Students, Undergraduate Study
Emily Yim Lee Au; Ravindra S. Goonetilleke – IEEE Transactions on Education, 2025
Contribution: The proposed operational model offers a detailed framework for understanding the complexities of design thinking. It helps instructors evaluate each stage, promoting the development of high-quality designs. This model emphasizes the link between the various stages and the final design quality, steering students toward achieving…
Descriptors: Design, Thinking Skills, Engineering Education, Introductory Courses
Matilde L. Sánchez-Peña; Anne M. McAlister; Nichole M. Ramirez; Syed Ali Kamal – Journal of Engineering Education, 2025
Background: Evidence exists that some aspects of engineering as a disciplinary culture are problematic for students' mental health and help-seeking attitude (HSAs). In order to promote positive cultural change, it is critical to further characterize those problematic aspects of engineering culture. Purpose: The purpose of this study is to expand…
Descriptors: Mental Health, Help Seeking, Engineering Education, Student Attitudes
Lori Czerwionka; Siddhant S. Joshi; Gabriel O. Rios-Rojas; Kirsten A. Davis – Journal of Engineering Education, 2025
Background: Engineering problems are open-ended and complex, involving technical and social aspects, yet engineering education focuses on technical training and closed-ended problems. To prepare engineering students, curricula should foster sociotechnical thinking--the ability to consider the interplay of technical and social factors during…
Descriptors: Engineering Education, Humanities Instruction, Thinking Skills, Problem Solving
Arinjoy Basak; Nicole P. Pitterson; Clifford A. Shaffer; Sneha Patel Davison; David A. Dillard; Jacob Grohs – Advances in Engineering Education, 2025
Motivated by the benefits of repeated deliberate practice, we created an interactive exercise system for use in an undergraduate engineering mechanics class that focuses on practicing learned fundamental concepts. These exercises take the form of traditional word problems commonly found in mechanics courses, involving things like selecting and…
Descriptors: Usability, Electronic Learning, Computer Mediated Communication, Engineering Education
Hsing, Hsiang-Wen; Bairaktarova, Diana; Lau, Nathan – Journal of Engineering Education, 2023
Background: Spatial problem-solving is an essential skill for success in many engineering disciplines; thus, understanding the cognitive processes involved could help inform the design of training interventions for students trying to improve this skill. Prior research has yet to investigate the differences in cognitive processes between spatial…
Descriptors: Eye Movements, Cognitive Processes, Problem Solving, Engineering Education
Vanessa Svihla; Jamie R. Gomez; Martin A. Crudo – Interdisciplinary Journal of Problem-based Learning, 2023
While project-based learning purportedly values student agency, supporting and managing this remains challenging. We conducted a design-based research study to understand how problem authenticity, and task and participant structures can contribute to students' framing agency, in which students make decisions that are consequential to their…
Descriptors: Undergraduate Students, Engineering Education, Design, Student Projects
Philemon M. Seloane; Sam Ramaila; Mdutshekelwa Ndlovu – Pythagoras, 2023
This study explored the utilisation of GeoGebra as a modelling tool to develop undergraduate engineering mathematics students' conceptual and procedural knowledge of complex numbers. This mission was accomplished by implementing GeoGebra-enriched activities, which provided carefully designed representational support to mediate between students'…
Descriptors: Undergraduate Students, Engineering Education, Mathematics Education, Foreign Countries
Jung, Jiyoon; Mercier, Emma – Educational Technology Research and Development, 2023
In response to the criticism that theory-driven researcher-developed learning tools lack scalability and sustainability in the real world, the design-based implementation research (DBIR) approach was proposed. However, few empirical studies actually describe what a DBIR study looks like and how it can inform readers about learning tool design. We…
Descriptors: Engineering Education, Educational Research, Program Implementation, Interdisciplinary Approach
Pan, Ai-Jou; Chou, Pao-Nan; Lai, Chin-Feng – IEEE Transactions on Education, 2023
Contribution: This study systematically developed an educational learning framework titled "Real-world problem-posing strategy with engineering problem-solving" to facilitate engineering college students' learning. This study evaluated the effect of the developed learning framework on engineering college students' engineering…
Descriptors: Engineering Education, Problem Solving, College Students, Learning Motivation
Sara Schley; Mel Chua; Joseph Le Doux; Veronica van Montfrans; Todd Fernandez – Biomedical Engineering Education, 2023
Human bodies vary widely: height, weight, blood volume, handedness, strength, and variations from disabilities, trauma, genetics, etc. Engineers must be trained to include human variance when designing human-interactive systems. Typically, this is not incorporated into mathematical and modeling focused courses. In the spring of 2019, one of three…
Descriptors: Human Body, Biomechanics, Cooperative Learning, Problem Solving

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