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Showing 1 to 15 of 130 results Save | Export
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Christopher V. H.-H. Chen; Scott Banta – Chemical Engineering Education, 2023
As more chemical engineering students enter careers beyond the field, students need more guidance in applying their problem solving skills to a challenges beyond the plant or refinery. Since Fall 2019, we have implemented case-based learning across our Material and Energy Balances course to help students practice chemical engineering thinking as a…
Descriptors: Teaching Methods, Chemical Engineering, Engineering Education, Problem Solving
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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
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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
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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
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Koppikar, Unnati; Kandakatla, Rohit; Mallibhat, Kaushik; Joshi, Gopalkrishna – IEEE Transactions on Education, 2023
Contribution: This study identifies the skills required by the faculty to mentor first-year interdisciplinary design projects. The findings are compiled as a set of themes that can act as a guide for engineering educators in mentoring interdisciplinary design projects. Background: The National Academy of Engineering's (NAE) Engineer of 2020 report…
Descriptors: Engineering Education, Interdisciplinary Approach, Mentors, Problem Solving
Andrew J. Hughes – Technology and Engineering Teacher, 2022
The intention of this article is to provide Technology and Engineering Educators (T&EEs) with a more thorough understanding of implementing the product realization process (PRP) to help manage the design and development processes in their classrooms. The product realization process (PRP) innately involves a practical combination of knowledge,…
Descriptors: Engineering Education, Design, High School Students, Skill Development
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Zhu, Jiabin; Liu, Rongrong; Liu, Qunqun; Zheng, Tianyi; Zhang, Zhinan – IEEE Transactions on Education, 2019
Contribution: This paper qualitative research delineates the thinking and behavioral patterns that reflect students' advanced level of epistemological thinking in project-based learning (PBL) activities and the associated impact factors. Background: PBL has been widely adopted in engineering education for its effectiveness in improving students'…
Descriptors: Engineering Education, Epistemology, Models, Active Learning
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Gravel, Brian E.; Svihla, Vanessa – Journal of the Learning Sciences, 2021
Background: Design problems have long attracted researchers' attention for their potential to provide authentic learning opportunities. While we have methods for supporting students to learn through relatively simple engineering and design tasks, supporting students to address complex problems that they find and frame remains poorly understood.…
Descriptors: Engineering Education, Design, Authentic Learning, Educational Environment
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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
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Routhe, Henrik Worm; Holgaard, Jette Egelund; Kolmos, Anette – IEEE Transactions on Education, 2023
Contribution: This research paper contributes to engineering education research with a framework for interdisciplinary learning outcomes based on students' experiences from participation in an interdisciplinary project for engineering students. A theoretical frame of reference is developed to analyze students' experience with interdisciplinary…
Descriptors: Outcomes of Education, Student Projects, Interdisciplinary Approach, Case Studies
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Wei Xu; Jia-Chen Chen; Ye-feng Lou; Hang Chen – International Journal of Technology and Design Education, 2024
Maker education can enhance learners' creativity. Design thinking can facilitate the innovative resolution of complex problems. The design thinking literature and most maker teaching modes are limited in their promotion of learning and ability development in various dimensions. Learners have stereotypes about some professions; interventions can…
Descriptors: Elementary School Students, Cooperative Learning, Problem Based Learning, Student Projects
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Solodikhina, ?nna; Solodikhina, ?aria – Education and Information Technologies, 2022
Engineering education must be changed following the change in the labor market. The cult of innovation has led to a demand for innovators who have both the mindset of an inventor who can see a problem and find a way to solve it, and the mindset of an entrepreneur who is ready to bring that solution to life. Thus, teaching a techno-innovator…
Descriptors: Engineering Education, Thinking Skills, Innovation, Skill Development
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Francisco Cima; Pilar Pazos; Minjung Lee; Kristie Gutierrez; Jennifer Kidd; Orlando Ayala; Stacie Ringleb; Krishnanand Kaipa; Danielle Rhemer – IEEE Transactions on Education, 2025
This study contributes to team science and competency development by comparing demonstrated teamwork skills by engineering students participating in disciplinary and cross-disciplinary team projects. Teamwork skills are key competencies necessary to solve complex technical challenges in the workplace. Despite prior efforts to enhance these…
Descriptors: Skill Development, Teamwork, Undergraduate Students, Engineering Education
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Phillips, Margaret; Zwicky, Dave – Issues in Science and Technology Librarianship, 2017
How might engineering technology students make use of patent information in the engineering design process? Librarians analyzed team project reports and personal reflections created by students in an undergraduate mechanical engineering technology design course, revealing that the students used patents to consider the patentability of their ideas,…
Descriptors: Intellectual Property, Engineering Education, Engineering Technology, Design
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Citrohn, Björn; Stolpe, Karin; Svensson, Maria; Bernhard, Jonte – Design and Technology Education, 2022
This study aims to investigate affordances of models and modelling in design projects in technology education. To learn more about affordances when working with models and modelling, four Swedish technology teachers were interviewed using a narrative approach. Despite a small number of informants data were rich, containing detailed descriptions of…
Descriptors: Foreign Countries, Technology Education, Design, Models
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