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Juebei Chen; Xiangyun Du; Dan Jiang; Aida Guerra; Bente Nørgaard – European Journal of Engineering Education, 2024
The pedagogical development (PD) for educators in higher engineering education is indispensable to the promotion of educational changes and high-quality teaching and learning necessary to train twenty-first century engineering talents. With the expansion of various PD activities in engineering education in recent decades, there is a growing need…
Descriptors: Teaching Methods, Faculty Development, College Faculty, Engineering Education
Eun Gyong Kim; Soo-Ok Kweon; Jeong-Ah Lee; Seonmin Park – Language Teaching Research, 2024
English-medium instruction (EMI) has been implemented in higher-education institutions around the world. This study examines the states of EMI-related professional development (PD) for Korean science and engineering professors and their perceptions of such programs. Faculty members at the three major science and engineering schools in Korea…
Descriptors: Faculty Development, Higher Education, Language Usage, Engineering Education
Sarah Ilkhanipour Rooney; Christine Elizabeth King; Laura Christian; Mahendra Kavdia; Joshua C. Kays; Sally F. Shady – Biomedical Engineering Education, 2025
Student engagement is critical to academic success, particularly in the interdisciplinary field of biomedical engineering (BME). However, engaging and motivating students in class have become increasingly challenging, with the COVID-19 pandemic exacerbating this difficulty. This Perspectives paper synthesizes the insights from three faculty…
Descriptors: Biomedicine, Learner Engagement, College Faculty, Engineering Education
Ingrid S. Carter; William R. Thornburgh; Thomas R. Tretter – Electronic Journal for Research in Science & Mathematics Education, 2024
This study explored K-12 teachers' understanding and implementation of the Next Generation Science Standards (NGSS) during and after participation in a professional development (PD) program that included the development of science teachers' conceptual understanding of science. We add to the literature with our focus on a multi-year PD program…
Descriptors: Academic Standards, Elementary Secondary Education, Science Instruction, Faculty Development
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
David Kongpiwatana Narong – European Journal of Engineering Education, 2024
Engineering education is pivotal in driving sustainable development forward, yet many engineers encounter hurdles stemming from insufficient preparation for sustainability challenges. A major factor contributing to this is the lack of a structured and practical framework to guide the integration of sustainability into engineering education. This…
Descriptors: Engineering Education, Sustainable Development, Course Content, Guidelines
Rüütmann, Tiia – Problems of Education in the 21st Century, 2023
The aim of this research is to give an overview of the psycho-didactical model of Engineering Pedagogy, as the basis of effective STEAM (Science, Technology, Engineering, Arts (Design), Mathematics) teaching and instructional design. Attributes of engineering graduates and basic skills of 21st century graduates are presented. The competency model…
Descriptors: Engineering Education, Teaching Methods, Teacher Competencies, Instructional Effectiveness
Hjalmarson, Margret A.; Nelson, Jill K.; Huettel, Lisa G.; Wage, Kathleen E.; Buck, John R.; Padgett, Wayne T. – Advances in Engineering Education, 2021
This paper reports on a two-year project to form teaching development groups in engineering departments. The goal of each group was to discuss and implement interactive teaching strategies (e.g., in-class problem solving). The research design used meetings notes, feedback from group leaders and a case study of one participant to describe how the…
Descriptors: Engineering Education, Faculty Development, College Faculty, Teaching Methods
Han Zheng; Mark Barba Pacheco; Julie C. Brown – Language and Education, 2025
Our study examines the scaffolding strategies employed by secondary biology teachers to support multilingual learners (MLs) in engaging with Science and Engineering Practices (SEPs). Rooted in sociocultural theory, we focus on the integration of academic language in disciplinary practices. Data from video-recorded observations of 12 secondary…
Descriptors: Multilingualism, Teaching Methods, Science Instruction, Second Language Instruction
Zuheir N. Khlaif; Allam Mousa; Mageswaran Sanmugam – Technology, Knowledge and Learning, 2024
This article delves into the potential advantages and difficulties of using immersive Extended Reality (XR) technology in engineering education. It also examines the factors influencing the acceptance and intention to continue using XR in teaching practice from instructors' viewpoints. The study has identified five themes that affect the use of XR…
Descriptors: Engineering Education, Computer Simulation, Teaching Methods, Social Support Groups
Lydia Ross; Stephen Krause; Eugene Judson; Keith D. Hjelmstad; Robert Culbertson; James A. Middleton; Lindy Mayled; Sara Hoyt; Kara L. Hjelmstad – Advances in Engineering Education, 2024
Active learning pedagogical practices are more effective than instructor-centered teaching in building students' knowledge, skills, and understanding of engineering content and concepts. As such, a large-scale professional development (PD) program was created to move faculty toward the use of active learning. The project aimed to engage faculty in…
Descriptors: Faculty Development, Active Learning, Teaching Methods, Engineering Education
Nelson, Robin; Marone, Vittorio; Garcia, Stephanie A.; Yuen, Timothy T.; Bonner, Emily P.; Browning, JoAnn – IEEE Transactions on Education, 2021
Contribution: This study extends the embedded expert literature by examining a cross-college partnership between engineering and education faculty and its impact on the engineering faculty's teaching practices. Background: Previous embedded expert models focused on disciplinary expert models that required extensive educational training to prepare…
Descriptors: Educational Change, Engineering Education, Models, Intercollegiate Cooperation
Tanveer, Binish; Usman, Muhammad – IEEE Transactions on Education, 2022
Contribution: In this study, we accumulated the knowledge and generated evidence on how and in what context CDIO framework has been used in software engineering (SE) education. The aggregated evidence will enable SE academics in making informed decisions while adopting CDIO for SE education and build upon it. Background: CDIO framework is relevant…
Descriptors: Engineering Education, Computer Software, Computer Science Education, Guidelines
Beena Ajmera; Sarah L. Crary – International Journal of Education in Mathematics, Science and Technology, 2025
National Science Foundation (NSF) funded Research Experiences for Teachers (RET) programs provide opportunities for professional development for teachers. The goal of the RET site at North Dakota State University (NDSU), established in May 2020 (NSF Awards #1953102 and #2224135), was to increase the knowledge of secondary (6th to 12th grade)…
Descriptors: Faculty Development, Civil Engineering, Secondary School Teachers, Teacher Attitudes

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