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Roy Bendor; Maria Luce Lupetti – International Journal of Technology and Design Education, 2025
Speculative design is an emerging form of critical material engagement with possible futures. Designers working speculatively call attention to current and future sociotechnical dilemmas, and aim to provoke debate about the moral, political and ethical implications of sociotechnical innovation. Despite the popularity of speculative design and its…
Descriptors: Graduate Study, College Curriculum, Design, Engineering Education
Steven Higbee; Devany Harrell; Anthony Chase; Sharon Miller – Biomedical Engineering Education, 2025
Purpose: Engineering students gain confidence and competency through continual practice of key skills. The social cognitive theory construct of self-efficacy provides a useful measure to assess students' beliefs in their ability to succeed or perform tasks. Research focused on the impacts of curricular engineering design experiences on student…
Descriptors: Biomedicine, Engineering Education, Undergraduate Students, Self Efficacy
Allison Antink-Meyer; Ryan A. Brown; Margaret E. Parker; Jennifer Smith – Science Education, 2025
The purpose of this study is to explore trends in interrelated engineering education and science education research within six science education research journals across the first decade since the release of the Framework for K-12 Science Education and the Next Generation Science Standards. Journals were selected using a combination of impact…
Descriptors: Elementary Secondary Education, Science Education, Educational Research, Engineering Education
Yidan Liu; Yuhui Jing; Jing Li; Jian Dai; Zhebing Hu; Chengliang Wang – Review of Education, 2025
The integration of artificial intelligence (AI) into engineering education is essential for fostering innovation, strategic thinking and interdisciplinary skills in the intelligent era. On this basis, this study aims to track and visually represent the research outputs associated with AI applications in engineering education, providing insights…
Descriptors: Artificial Intelligence, Technology Uses in Education, Technology Integration, Engineering Education
Craig A. Chin – Advances in Engineering Education, 2025
Differentiated instruction (DI) is a teaching approach in which learning experiences are designed and adapted to meet students' diverse needs to facilitate student success. Advocates of this approach have implemented it in primarily K-12 learning environments with limited investigations into implementing it in college/engineering course…
Descriptors: Individualized Instruction, Readiness, Engineering Education, Learning Modules
Andrew Olewnik; Vanessa Svihla – International Journal of Technology and Design Education, 2025
Undergraduate engineering students are commonly introduced to design in their first year and tackle a more authentic design challenge during senior year, with intervening courses focused on technical problem solving. Along this trajectory, students should acquire skills related to the development of engineering requirements, which are important to…
Descriptors: Engineering Education, College Freshmen, College Seniors, Knowledge Level
Christiana Kiesling; Cade Person; Kristen Cetin; George Berghorn – Journal of Civil Engineering Education, 2025
Mass timber is an emerging construction technology growing in popularity in the United States. One obstacle to the gradual adoption of mass timber construction is the limited availability of qualified engineers and designers. Although successful efforts have been made to address research topics related to mass timber design and to identify common…
Descriptors: Construction Industry, Forestry, Curriculum Development, Engineering
Frank J. Hernandez; Jane Elliston; Jordi Altimiras – Biomedical Engineering Education, 2025
Challenge: Good Laboratory Practice (GLP) is critical for ensuring the quality, integrity, reproducibility, and traceability of research, particularly in biomedical and bioengineering fields. With increasing demand for GLP-compliant research, integrating GLP principles into the education of biomedical and bioengineering students is essential.…
Descriptors: Biomedicine, Engineering Education, Laboratory Procedures, Masters Programs
Angela Eckhoff – International Journal of Early Childhood, 2025
Children's picturebooks have long been understood as a powerful medium for exploring aspects of children's lives, experiences, and identities serving as mirrors which allow children to see themselves reflected, as windows through which they can gain insight into the experiences of others, and as sliding glass doors when children are connected to…
Descriptors: Engineering, Childrens Literature, Content Analysis, Picture Books
Yu-Hung Chien; Chia-Yu Liu; Cheng-Shiun Tsai – Journal of Engineering Education, 2025
Background: There is a growing emphasis on integrating engineering design into K-12 science, technology, engineering, and mathematics (STEM) education. Prior studies have primarily examined the impact of engineering design on student learning outcomes or employed frequency-based static statistical analyses, rather than focusing on student learning…
Descriptors: STEM Education, Elementary Secondary Education, Engineering, Design
Driessen, Emily P.; Wilhelm, Jennifer; Cole, Merryn; Dunn, Ashley; Anderson, Kameisha – Journal of Educational Research, 2023
K-12 science teachers in the United States are encouraged to teach their students engineering. When incorporating engineering into their science curricula, teachers commonly either focus on: (1) engineering and lace science throughout; or (2) science and lace engineering throughout. This study explores middle school students' nature of engineering…
Descriptors: Middle School Students, Engineering Education, Science Curriculum, Student Attitudes
Wilson, Sarah A.; Goldberg, Deborah S. – Chemical Engineering Education, 2023
Engineering students face significant stressors such as high academic expectations and extreme time demands that have the potential to impact their mental health. Due to the mentoring responsibilities of chemical engineering faculty, faculty are often positioned to provide support for these students. Through this article, we aim to help prepare…
Descriptors: Engineering Education, Mental Health, Stress Variables, Health Services
Stierle, Rolf; Fischer, Matthias; Braun, Thorsten; Gross, Joachim – Chemical Engineering Education, 2023
How is it possible to create and continuously improve a quality learning environment for our students? We present our one-year course on engineering thermodynamics as a case study in which we investigate the learning environment based on a competency model from the students' perspective. Based on the analysis of our course structure and exam…
Descriptors: Engineering Education, Thermodynamics, College Students, Student Attitudes
Paige, Myela; Schauer, Anastasia; Klesmith, Zoe; Davis, Alexis; Fu, Katherine – Advances in Engineering Education, 2023
In many mechanical engineering undergraduate curriculums, there are topics that are vital to the students' future careers in the manufacturing and design workforce that are not taught in-depth. As one of those topics, Geometric Dimensioning and Tolerancing, or GD&T, is vital to companies who develop and manufacture products because it allows…
Descriptors: Undergraduate Students, Engineering Education, Experiential Learning, Geometry
Kristin S. Sandberg – ProQuest LLC, 2023
The need for engineers in the workforce continues to grow. Filling this need requires recruiting future engineers to colleges and universities and retaining them through to degree completion. However, this is easier said than done. Universities are tasked with attempting to keep up with the demand for new engineers and companies are searching for…
Descriptors: Engineering Education, High School Students, Course Evaluation, Engineering

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