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Miskioglu, Elif Eda; Aaron, Caitlyn; Bolton, Caroline; Martin, Kaela M.; Roth, Madeline; Kavale, Sanjeev M.; Carberry, Adam R. – Journal of Engineering Education, 2023
Background: A defining characteristic of expertise is the use of intuition to navigate tasks. The construct of intuition and its importance is well-studied in other disciplines, but little is known about how it translates to engineering. Existing literature on intuition does not clearly define the construct and its relationship to problem solving,…
Descriptors: Intuition, Engineering, Expertise, Decision Making
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
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
Roee Peretz; Natali Levi-Soskin; Dov Dori; Yehudit Judy Dori – IEEE Transactions on Education, 2024
Contribution: Model-based learning improves systems thinking (ST) based on students' prior knowledge and gender. Relations were found between textual, visual, and mixed question types and student achievements. Background: ST is essential to judicious decision-making and problem-solving. Undergraduate students can be taught to apply better ST, and…
Descriptors: Models, Engineering Education, Thinking Skills, Systems Approach
Munir, Fouzia – Industry and Higher Education, 2022
In the 21st century, with the exponential rise in global population and a greater demand for environmental resources, the focus of engineering is on integrated solutions within a multifarious context. To successfully navigate today's multidisciplinary and multicultural environment, engineers require soft skills in addition to their technical or…
Descriptors: Engineering, Professional Personnel, Attitudes, Soft Skills
Jung Han; Hyeong Kyun Park; Todd R. Kelley – Technology and Engineering Teacher, 2023
Engineering design has been central to technology education. Currently, online collaborative platforms for designers are widely used as digital forms of an engineer's notebook. However, traditional forms are still valued as the medium of engineering design during the conceptual phase of design since a paper notebook and pen or pencil allow…
Descriptors: Engineering Education, Notetaking, Design, Creative Thinking
Price, Argenta M.; Kim, Candice J.; Burkholder, Eric W.; Fritz, Amy V.; Wieman, Carl E. – CBE - Life Sciences Education, 2021
A primary goal of science and engineering (S&E) education is to produce good problem solvers, but how to best teach and measure the quality of problem solving remains unclear. The process is complex, multifaceted, and not fully characterized. Here, we present a detailed characterization of the S&E problem-solving process as a set of…
Descriptors: Problem Solving, Science Education, Engineering Education, Teaching Methods
Baligar, Preethi; Mallibhat, Kaushik; Kavale, Sanjeev; Joshi, Gopalkrishna – IEEE Transactions on Education, 2022
Contribution: This study identifies the attributes of complexity that can be incorporated into engineering design problems at first-year undergraduate engineering projects. The findings are compiled as a set of guidelines to aid engineering educators in crafting design problems. Background: Engineering professionals solve complex problems like…
Descriptors: Engineering Education, Design, Problem Solving, College Freshmen
Eva Beke; Andrea Tick – Journal of Technology and Science Education, 2024
The purpose of the study is to examine how Industry 4.0, and the digital environment, have together created a new situation for companies and universities in terms of soft skills for employability. While companies aim to introduce a new structure, universities try to align with these changes by developing new educational methods, curricula, and…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, College Students
Tejaswini Dalvi; Kristen Wendell – Science Education, 2024
An understanding of how sensemaking unfolds when elementary students engage in engineering design tasks is crucial to advancing engineering teaching and learning at K-12 levels. Sensemaking has been widely studied in the context of science as a discipline. In this paper, we seek to contribute to the more nascent efforts to build theory about the…
Descriptors: Elementary School Students, Grade 3, Comprehension, Science Education
Price, Argenta; Salehi, Shima; Burkholder, Eric; Kim, Candice; Isava, Virginia; Flynn, Michael; Wieman, Carl – International Journal of Science Education, 2022
The ability to solve authentic real-world problems in science, engineering, and medicine is an important goal in post-secondary education. Despite extensive research on problem solving and expertise, the teaching and assessing of advanced problem-solving skills in post-secondary students remains a challenge. We present a template for creating…
Descriptors: Student Evaluation, Evaluation Methods, Accuracy, Problem Solving
Mein, Erika; Convertino, Christina – Journal of Adolescent & Adult Literacy, 2022
In this article, we draw on sociocultural perspectives on literacy to explore the ways in which pre-engineering students took up and made sense of engineering notebooks implemented as part of a robotics project in a first-semester university study course at a large, public Hispanic-Serving Institution. Through ethnographic methods, we uncovered…
Descriptors: Engineering, Engineering Education, Minority Serving Institutions, Hispanic American Students
Taylor, Christine; Lee, Jean S. – Mathematics Teacher: Learning and Teaching PK-12, 2021
We implemented a STEM task that highlights the engineering cycle and engages students in productive struggle. Students problem solved in productive ways and saw tangible benefits of revising their work to achieve mathematical goals.
Descriptors: STEM Education, Task Analysis, Teaching Methods, Engineering Education
Siverling, Emilie A.; Moore, Tamara J.; Suazo-Flores, Elizabeth; Mathis, Corey A.; Guzey, S. Selcen – Journal of Engineering Education, 2021
Background: As engineering becomes increasingly incorporated into precollege classrooms, it is important to explore students' ability to engage in engineering practices. One of these practices, "engaging in argument from evidence," has been well studied in science education. However, it has not yet been fully explored in engineering…
Descriptors: Evidence Based Practice, Logical Thinking, Decision Making, Problem Solving
Morelock, John R.; Salado, Alejandro; Lakeh, Arash Baghaei; Richards, Trevor K. – Advances in Engineering Education, 2021
In undergraduate engineering education, students are often overexposed to problem-solving methods that are unrepresentative of how engineers solve problems in practice. For decision-making problems, in particular, students are commonly taught to compare alternative solutions using known and provided information. However, many real-world…
Descriptors: Engineering Education, Teaching Methods, Educational Games, Simulation

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