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Strimel, Greg; Huffman, Tanner; Grubbs, Michael; Kim, Eunhye; Gurganus, Jamie – Journal of Pre-College Engineering Education Research, 2020
Engineering education has increasingly become an area of interest at the P-12 level, yet attempts to align engineering knowledge, skills, and habits to existing elementary and secondary educational programming have been parochial in nature (e.g., for a specific context, grade, or initiative). Consequently, a need exists to establish a coherent…
Descriptors: Engineering Education, Elementary Secondary Education, Curriculum Development, Curriculum Design
He, Q. Peter; Wang, Jin; Zhang, Rong; Johnson, Donald; Knight, Andrew; Polala, Ravali – Chemical Engineering Education, 2016
In view of potential demand for skilled engineers and competent researchers in the biofuels field, we have identified a significant gap between advanced biofuels research and undergraduate biofuels education in chemical engineering. To help bridge this gap, we created educational materials that systematically integrate biofuels technologies into…
Descriptors: Fuels, Teaching Methods, Researchers, Chemical Engineering
Ross, Lydia; Dalal, Medha; Carberry, Adam – School Science and Mathematics, 2023
This study is situated within a large-scale national high school level engineering education initiative that aims to "demystify" engineering for high school students, teachers, and counselors through an all-inclusive high school level engineering course. Counselors participated in a series of PD activities centered on the following…
Descriptors: Access to Education, STEM Education, Counselor Training, School Counselors
Prihantoro, Constantinus Rudy – International Journal of Education and Practice, 2021
This research is a survey of vocational higher education curriculum based on Learning Management System (LMS) adapted to government policy of "independent learning -- independent campus" (ILIC). Previous researches have advocated that educational curriculum must conform to any changes in education policy, scientific development,…
Descriptors: Vocational Education, Higher Education, Integrated Learning Systems, Curriculum Development
Fang, Yu-Shen; Lee, Lung-Sheng – International Journal of Technology and Design Education, 2022
In Taiwan, issues in technology education (TE), such as indeterminate core mission and unclear role, could be addressed through an objective knowledge map of research to discern directions of development and prospects. This study explores sub-fields, genres, characteristics, and trends in TE research in Chinese and English over 24 years through…
Descriptors: Foreign Countries, Technology Education, Educational Research, Educational Trends
Li, Jiawei; Supraja, S.; Qiu, Wei; Khong, Andy W. H. – International Educational Data Mining Society, 2022
Academic grades in assessments are predicted to determine if a student is at risk of failing a course. Sequential models or graph neural networks that have been employed for grade prediction do not consider relationships between course descriptions. We propose the use of text mining to extract semantic, syntactic, and frequency-based features from…
Descriptors: Course Descriptions, Learning Analytics, Academic Achievement, Prediction
Akeel, Usman Umar; Bell, Sarah Jayne; Mitchell, John E. – International Journal of Sustainability in Higher Education, 2019
Purpose: The purpose of this study is to present an assessment of the sustainability content of the Nigerian engineering curriculum in universities. Design/methodology/approach: Content analysis is used to generate and analyse data from three engineering documents, namely, the Benchmark Minimum Academic Standards for Engineering Programmes in…
Descriptors: Foreign Countries, Sustainable Development, Engineering Education, College Curriculum
Robbiano, Christopher; Maciejewski, Anthony A.; Chong, Edwin K. P. – IEEE Transactions on Education, 2020
Contribution: This article presents quantitative support that the changes implemented as part of Colorado State University's (CSU's) Revolutionizing Engineering Departments (REDs) grant produce statistically significant positive change through a series of nonparametric analysis techniques. Additionally, the set of nonparametric analysis techniques…
Descriptors: Undergraduate Students, Engineering Education, Computer Science Education, Educational Change
Bartholomew, Scott; Loveland, Thomas; Santana, Vanessa – Technology and Engineering Teacher, 2020
The process of writing lesson plans at the beginning of one's teaching career can be very time-consuming (Arnett-Hartwick and Cannon, 2019); however, the development of sequenced lessons that result in effective learning must be organized and articulate, not done haphazardly. Designing a lesson through a written document can help a teacher see the…
Descriptors: Standards, Lesson Plans, Technology Education, Engineering Education
Arasaratnam-Smith, Lily A. – Research in Comparative and International Education, 2020
Developing intercultural communication competence (ICC) is a pursuit that has captured the interest of researchers in several disciplines for a number of decades. The urgency and interest to produce graduates who are ready for the global marketplace has never been more prevalent amongst educators as it is today. This article outlines strategies…
Descriptors: Teaching Methods, Intercultural Communication, Communicative Competence (Languages), Curriculum Development
Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela – European Journal of Engineering Education, 2021
Many traditional engineering schools are struggling to balance the calls to provide an innovative engineering education that meet the demands of graduates and their employers with the constraints and momentum of their existing curriculum. In this paper we present the conceptual design behind a framework that integrates existing discipline-specific…
Descriptors: Research Universities, Problem Based Learning, Engineering Education, Teaching Methods
Hekmatshoar Tabari, Bizhan; Rahimy, Ramin – Latin American Journal of Content and Language Integrated Learning, 2021
This study was conducted in two phases. The first one is the preliminary phase aimed at tailoring the standard curriculum based on learners' needs analysis. The second one is the main phase, intended to evaluate the tailored curriculum based on teachers' views. The participants in the preliminary phase of the study (tailoring the curriculum) were…
Descriptors: Second Language Instruction, Second Language Learning, English (Second Language), Curriculum Development
Reinhart, Alex; Genovese, Christopher R. – Journal of Statistics and Data Science Education, 2021
Traditionally, statistical computing courses have taught the syntax of a particular programming language or specific statistical computation methods. Since Nolan and Temple Lang's seminal paper, we have seen a greater emphasis on data wrangling, reproducible research, and visualization. This shift better prepares students for careers working with…
Descriptors: Computer Software, Graduate Students, Computer Science Education, Statistics Education
Hacker, Michael; Crismond, David; Hecht, Deborah; Lomask, Michal – Technology and Engineering Teacher, 2017
This article is the first of a two-part series about Engineering for All (EfA), a $1.7M National Science Foundation-funded project, which introduces middle school students to engineering, not only as a career path, but as an endeavor with potential for doing social good. Engineering for All opens students' eyes to the role engineers play in…
Descriptors: Middle School Students, Engineering Education, Curriculum Development, Curriculum Implementation
Heileman, Gregory L.; Abdallah, Chaouki T. – Change: The Magazine of Higher Learning, 2019
While occupying various academic leadership positions, the authors repeatedly encounter the use of the Accreditation Board for Engineering and Technology (ABET) accreditation to influence decision making around engineering curricula. For instance, ABET criteria are commonly cited as the reason why particular changes to engineering programs, such…
Descriptors: Accreditation (Institutions), Engineering Education, Outcomes of Education, Academic Achievement

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