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Kynigos, Chronis; Diamantidis, Dimitris – ZDM: Mathematics Education, 2022
We discuss classroom activity comprised of small groups of students collaboratively tinkering with programs of dynamically manipulable figural models, posing problems regarding their mathematical properties and behaviors. We analyzed data from students' discourse taken from two classroom interventions employing a framework of creative mathematical…
Descriptors: Creativity, Engineering, Mathematical Models, Programming
Anna F. DeJarnette; Corey Larrison; Stephanie M. Rollmann; Dieter Vanderelst; John E. Layne; Anna E. Hutchinson – Journal for STEM Education Research, 2022
The construct of Computational Thinking (CT) first emerged to describe problem solving in the context of computing environments, but it has expanded to serve as a set of practices that can be applied across disciplines with or without the use of computers. We recorded students' work during two lab sessions in an undergraduate, biology-engineering…
Descriptors: Undergraduate Students, Computation, Thinking Skills, Biology
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
Undergraduate Engineering Students' Subjective Task Value Beliefs for Modeling Problems in Chemistry
Crippen, Kent J.; Imperial, Lorelie; Bolch, Charlotte A.; Payne, Corey A. – International Journal of Science and Mathematics Education, 2023
Use of modeling as a learning strategy in introductory science courses could serve to support the persistence of all students, including those who identify with a traditionally underrepresented ethnic minority (URM). If students find inherent value in working on modeling-type problems then this authentic practice would aid in transforming personal…
Descriptors: Undergraduate Students, Engineering Education, Learning Strategies, Learning Motivation
Hosseinali Gholami; Nur Azam Abdullah; Adib Hamdani – Mathematics Teaching Research Journal, 2023
Optimization is a vital mathematical concept widely applied in various engineering fields. However, teaching this subject to engineering students often involves abstract materials, making it challenging for them to grasp. To address this issue, a group of five mathematics lecturers collaborated on designing a practical lesson on optimization for…
Descriptors: Mathematics, College Freshmen, Engineering, Lesson Plans
Uchenna Asogwa; T. Ryan Duckett; Amanda P. Malefyt; Lindsey Stevens; Gale Mentzer; Matthew W. Liberatore – Journal of Chemical Education, 2023
Complex problem solving is one of the skills desired in the 21st century workforce. Students can improve their problem-solving skills by working on homework problems, and creating new problems can be a stimulating and inventive exercise for student as well. Our previous studies explored the impacts of a novel homework pedagogy where students…
Descriptors: Video Technology, Student Centered Learning, Textbooks, Comparative Analysis
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
Vo, Tina; Hammack, Rebekah – Journal of Science Teacher Education, 2022
National reform documents and shifts in educational standards have continued to highlight the importance of engineering and engineering practices within science literacy. High-quality engineering opportunities must be present in formal education due to their association with problem-solving and critical thinking. Given this directive to reach…
Descriptors: Academic Standards, Engineering, Scientific Literacy, Educational Quality
Navneet Kaur; Chandan Dasgupta – Journal of the Learning Sciences, 2024
Background: Dealing with uncertainties is inherent in the engineering design process and often poses challenges for young learners. This necessitates providing learners with adequate support to navigate their uncertainties effectively. However, achieving this requires a deeper understanding of the factors influencing learners' uncertainty…
Descriptors: Epistemology, Cooperative Learning, Engineering Education, Design
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
Brayan Díaz; Daniela Luengo-Aravena; Pia Barahona; Patricio Felmer – Journal of Engineering Education, 2025
Background: We examine the efficacy of an online collaborative problem-solving (CPS) teaching approach in academic performance and student connections with other peers, among first-year engineering calculus students at a Latin American university. Our research uses communities of practice (CoP) to emphasize the social nature of learning and the…
Descriptors: Electronic Learning, Cooperative Learning, Problem Solving, Mathematics Skills
Ravishankar Chatta Subramaniam; Nikhil Borse; Amir Bralin; Jason W. Morphew; Carina M. Rebello; N. Sanjay Rebello – Physical Review Physics Education Research, 2025
Reform documents advocate for innovative pedagogical strategies to enhance student learning. A key innovation is the integration of science and engineering practices through engineering design (ED)-based physics laboratory tasks, where students tackle engineering design problems by applying physics principles. While this approach has its benefits,…
Descriptors: Physics, Laboratory Experiments, Teaching Methods, Science Instruction
Chen Huei Leo; Nachamma Sockalingam; Mei Xuan Tan; Yajuan Zhu; Xiaojuan Khoo – Biomedical Engineering Education, 2025
Challenge Statement: Laboratory classes are indispensable in the teaching of biomedical engineering education, offering students invaluable hands-on experience and opportunities for practical application of theoretical knowledge. However, without a deep understanding of the underlying principles, students may find themselves merely going through…
Descriptors: Instructional Design, Inquiry, Active Learning, Biomedicine
Hira, Avneet; Hynes, Morgan – Information and Learning Sciences, 2021
Purpose: The purpose of this paper is to understand how designers and engineers practice design while Making. Motivated by their roots in constructionist learning principles, Makerspaces are increasingly used as sites to learn design, especially in undergraduate engineering education programs. However, there has been little work on how trained…
Descriptors: Design, Shared Resources and Services, Engineering, Technical Occupations
Sidhu, Manjit Singh – International Journal of Information and Communication Technology Education, 2019
In this article, a study was done to compare the preferences of UNITEN students in using augmented reality technology user interface applications to solve selected engineering problems. Cross sectional study design and a Wilcoxon-Signed Rank Test approach was adopted to analyze the difference in the rankings of the engineering applications. Within…
Descriptors: Engineering Education, Problem Solving, Computer Software, Usability

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