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Penelope Georges; Sami Kahn – Biomedical Engineering Education, 2025
Rapid advancements in bioengineering call for broad public literacy to help individuals better understand the changes these technologies bring to our lives. However, making bioengineering concepts accessible and relevant, especially to non-science majors, is often challenging. To address this challenge, we designed a general education course aimed…
Descriptors: Biology, Engineering, Engineering Education, Teaching Methods
Faezeh Rezvanifard; Farzad Radmehr; Yuriy Rogovchenko – Teaching Mathematics and Its Applications, 2023
Current views on the teaching of differential equations (DEs) are shifting towards the use of graphical and numerical methods. Motivated by recent research suggesting that puzzle-based learning (PzBL) can improve the teaching and learning of STEM subjects and by the lack of relevant studies for DEs, we designed two tasks--sophism and paradox--to…
Descriptors: Puzzles, Engineering, Engineering Education, Undergraduate Students
Vimal K. Viswanathan; Nikhitha Reddy Nukala; John Solomon – Journal of STEM Education: Innovations and Research, 2024
This paper describes applying a new brain-based instructional approach called "Tailored Instructions and Engineered Delivery using Protocols" (TIED UP) in an engineering classroom. Brain-based strategies leverage our knowledge about the functioning of the human brain to deliver the course information effectively. Although brain-based…
Descriptors: College Students, Engineering Education, Engineering Technology, College Faculty
Megan Morin; Bryant Hutson; Richard Goldberg – Journal of Faculty Development, 2026
A Faculty Learning Community (FLC) was established to help STEM faculty integrate entrepreneurially minded learning (EML), a pedagogy that develops curiosity, connections, and value creation, into a new engineering undergraduate program during the pandemic. Guided by the Kern Entrepreneurial Engineering Network (KEEN) framework, the FLC…
Descriptors: Communities of Practice, Student Attitudes, STEM Education, Entrepreneurship
Tina Vo; Rebekah Hammack; Paul Gannon; Nicholas Lux; Blake Wiehe; Miracle Moonga; Brock LaMeres – Journal of Science Teacher Education, 2024
As we prepare teachers to provide students with opportunities within STEM education, authentic experiences should guide the instruction. Unfortunately, due to the novel integration of engineering into national reform documents, there is a dearth of documentation on elementary preservice teachers' engineering ideas as they align with student goals…
Descriptors: Majors (Students), Engineering Education, Authentic Learning, Educational Change
Delen, Ibrahim; Yuksel, Tugba – European Journal of Engineering Education, 2022
Understanding how engineering design (ED) and design-based learning (DBL) are portrayed at various educational levels is essential in this transition to ascertain the state of the literature. We investigated ED and DBL studies in Web of Science and Scopus databases. Then we focused on educational levels, categorizing research based on participant…
Descriptors: Bibliometrics, Engineering Education, Design, Research Reports
Fatima Perwaiz; Paul Asunda – Journal of STEM Education: Innovations and Research, 2025
This paper describes integrated STEM (iSTEM) education in middle school learning environments. Using an instrumental case study approach, five STEM teachers from four mid-west schools were observed and qualitative field notes were made using Reformed Teaching Observation Protocol (RTOP) (Pibum et al., 2000). The observations were systematically…
Descriptors: STEM Education, Middle School Teachers, Teaching Methods, Middle School Students
Albert Andry E. Panergayo – International Journal of Education in Mathematics, Science and Technology, 2025
This meta-analysis synthesized 18 qualified studies, resulting in 29 effect sizes. This study involved a total sample of 1,280 students to evaluate the effectiveness of Engineering Design Process (EDP)-based instructional approaches in STEM education. Eligible studies were systematically selected through inclusion and exclusion criteria following…
Descriptors: Meta Analysis, Engineering, Design, STEM Education
Shukla Sikder – Cultural Studies of Science Education, 2024
There are no conflicts between intentional teaching and play-based learning. However, educators find it challenging to establish the pedagogical relationship between them as they struggle to conceptualise and enact their role in the play-based context. In particular, educators' confidence level is not enough to teach science and engineering in a…
Descriptors: Early Childhood Education, Science Education, Play, Engineering Education
Paul Mayer; Rich Baraniuk – ACM Transactions on Computing Education, 2025
It is argued that logic, and in particular mathematical logic, should play a key role in the undergraduate curriculum for students in the computing fields, which include electrical engineering (EE), computer engineering (CE), and computer science (CS). This is based on (1) the history of the field of computing and its close ties with logic, (2)…
Descriptors: Teaching Methods, Logical Thinking, Computer Science Education, Engineering Education
Zeynep Gül Dertli; Bahadir Yildiz – Journal of Inquiry Based Activities, 2025
In STEM education, the engineering design process serves as a pedagogical strategy to connect science and mathematics concepts. While STEM approaches are increasingly favored in science courses, the role of mathematics in integrated STEM activities is often overlooked, despite its foundational importance across STEM disciplines. This manuscript…
Descriptors: Mathematics Instruction, Teaching Methods, Scientific Concepts, Mathematical Concepts
Kari D. Weaver; Kate Mercer; Stephanie Mutch – Issues in Science and Technology Librarianship, 2024
This paper explores the connection between critical theory, information evaluation, and the instructional practice of critique for STEM students and librarian instructors. Using an emerging theory and instructional method, the authors examine how to more deeply include voices that have historically been excluded from STEM information critique. The…
Descriptors: Information Literacy, STEM Education, Critical Theory, Teaching Methods
Vanessa Begat – ProQuest LLC, 2024
Globally, the demand for people prepared to enter Science, Technology, Engineering and Math (STEM) careers is increasing. To help fill this demand, many formal and informal STEM educational interventions have been implemented in the K-12 domain. However, due to the lack of a clearly defined framework for documenting the nature and scope of the…
Descriptors: STEM Education, Intervention, Engineering Education, Curriculum Development
Bosman, Lisa; Shirey, Katherine L. – Open Education Studies, 2023
The need for addressing global and societal problems is stronger than ever, as demonstrated by the UN Sustainable Development Goals and National Academy of Engineering Grand Challenges. However, engineering undergraduate students rarely get to experience engaging with the associated real-world projects and challenges. This has the potential to…
Descriptors: STEM Education, Art Education, Biology, Design
Herianto; Jaslin Ikhsan; Lusila Andriani Purwastuti – Journal of Educational Research, 2024
Twenty-first-century skills are increasingly recognized as critical skills that today's students must develop to adapt to increasingly rapid world changes. This research aims to test the effectiveness of the STEM-EDELCY learning model to improve students' 21st-century skills. This research involved 285 junior high school students (aged 12-13) from…
Descriptors: 21st Century Skills, Skill Development, STEM Education, Engineering Education

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