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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
Asogwa, Uchenna; Duckett, T. Ryan; Mentzer, Gale A.; Liberatore, Matthew W. – Chemical Engineering Education, 2021
The impact of solving novel video-inspired homework problems on learning attitudes toward chemical engineering was examined at beginning and end of an undergraduate material and energy balances course using a modified Colorado Learning Attitudes about Science Survey instrument. Mean overall attitude of participants improved by a normalized gain…
Descriptors: Homework, Student Attitudes, Video Technology, Problem Solving
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
Yanyan Sun; Chengjun Feng; Di Peng; Bian Wu – Journal of Computer Assisted Learning, 2024
Background: Both learning and problem solving are major goals of complex problem solving in engineering education. The order of knowledge construction and problem solving in learning through problem solving, however, has not been explained in current literature. Objectives: To understand their relationships, this study compared the effects of…
Descriptors: Goal Orientation, Active Learning, Inquiry, Engineering Education
Linda Oktaviani; Ullu Yandi Aulia; Mukhamad Murdiono; Suharno Suharno – Journal of Education and Learning (EduLearn), 2024
This study aims to provide a comprehensive analysis of the implementation of Pancasila learning with the goal of improving critical thinking skills through the application of the six thinking hats model. The research adopts a descriptive approach utilizing qualitative methods. The study was conducted at the Faculty of Engineering, Universitas…
Descriptors: Critical Thinking, Thinking Skills, Skill Development, Active Learning
Shen Zhan; Ling Wang – Education Research and Perspectives, 2024
The rapid integration of artificial intelligence (AI) in higher education has been significantly propelled by developments in generative AI tools, which hold considerable promise for transforming teaching and assessment methodologies. This paper explores the distinctive opportunities and challenges associated with the incorporation of generative…
Descriptors: Artificial Intelligence, Technology Uses in Education, Evaluation Methods, Engineering Education
Mercat, Christian – Open Education Studies, 2022
This introduction presents Active Learning Methodology, surveying its history, main existing tools and supporting evidence, with an emphasis on mathematics and higher education, in particular engineering studies. This work is part of the DrIVE-Math project, developing innovative mathematical teaching strategies in engineering studies.
Descriptors: Active Learning, Classroom Techniques, Engineering Education, Higher Education
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
Vale, Isabel; Barbosa, Ana; Peixoto, Ana; Fernandes, Fátima – Open Education Studies, 2023
The importance of STEAM education in preparing students to deal with societal challenges is nowadays an international recommendation. We may find different perspectives concerning STEAM education and the integration of its disciplines. A possible pathway to achieve a balanced integration is through Engineering Design (ED), starting from problems…
Descriptors: Art Education, STEM Education, Engineering, Design
Hirshfield, Laura J.; Mayes, Heather B. – Chemical Engineering Education, 2019
With the advance of engineering education research and scholarship, there has been an increased focus on amending chemical engineering courses to increase student learning, engagement and enjoyment. These approaches are often incorporated in project-based courses such as capstone design courses and laboratory courses, providing opportunities to…
Descriptors: Undergraduate Students, Chemical Engineering, Engineering Education, Inclusion
Bartolomé, Elena; Florensa, Ignasi; Bosch, Marianna; Gascón, Josep – European Journal of Engineering Education, 2019
Study and research path (SRP) is an inquiry-based teaching format grounded in the Anthropological Theory of the Didactic. One of the specific characteristics of SRP is its task-design basis, which includes explicitly questioning the knowledge at stake in study processes. In this work, we propose general guidelines for the design of SRPs for…
Descriptors: Engineering Education, Active Learning, Inquiry, Student Attitudes
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
Júlio César Dutra; Patrícia Schmid Calvão – European Journal of Engineering Education, 2024
This article aims to present our experience with transmedia storytelling in the design of materials selection, integrating two disciplines within an undergraduate mechanical engineering curriculum in Brazil. The students' project involved developing a narrative within the fictional universe of superheroes while exploring material properties using…
Descriptors: Educational Technology, Multimedia Materials, Story Telling, Social Media
Ting-Ting Wu; Hsin-Yu Lee; Pei-Hua Chen; Chia-Ju Lin; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Science, Technology, Engineering, and Mathematics (STEM) education in Asian universities struggles to integrate Knowledge, Skills, and Attitudes (KSA) due to large classes and student reluctance. While ChatGPT offers solutions, its conventional use may hinder independent critical thinking. Objectives: This study introduces PA-GPT,…
Descriptors: Peer Evaluation, Artificial Intelligence, Natural Language Processing, Technology Uses in Education
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