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Moloi, Mabel Julia; Motlhabane, Abraham Tlhalefang – South African Journal of Education, 2023
The aim with this study was to analyse and explore how physical sciences, engineering science and technology subjects (technical electrical technology, technical civil technology, technical mechanical technology) can contribute to the alignment of the technical sciences curriculum. We used document analysis to collect data. An analysis of the…
Descriptors: Integrated Curriculum, Science Curriculum, Physical Sciences, Engineering Education
Huffman, Tanner J.; Mentzer, Nathan – International Journal of Technology and Design Education, 2021
Modeling allows students to become more effective designers. High school technology and engineering students engage in engineering design challenges as part of traditional instructional practices. Model-eliciting activities (MEA) present students with opportunities to elicit mathematical thinking that facilitates modeling. Students (n = 266) from…
Descriptors: Design, High School Students, Comparative Analysis, Scoring Rubrics
Bartholomew, Scott R. – Technology and Engineering Teacher, 2017
Interest in Technology and Engineering Education (TEE) has recently revolved around working to define/redefine who we are, and who we are not; while others in TEE are not interested in a change of identity. An emphasis on design, design education, and design assessment may help clarify the discussion surrounding the future direction of TEE.…
Descriptors: Technology Education, Engineering Education, Design, Elementary Secondary Education
Dixon, Raymond A.; Bucknor, Jason – Journal of Technology Education, 2019
This study explored the use of heuristics in the design space by novice and expert engineers in the initial ideation of a design solution. Verbal protocol analyses were conducted with four engineering students and four professional engineers as they generated ideas to solve a design problem. Overall, both experts and novices used various types of…
Descriptors: Comparative Analysis, Specialists, Novices, Engineering
Zakani, Sima; Kaupp, Jake; Turner, Roderick D.; Frank, Brian – Canadian Journal for the Scholarship of Teaching and Learning, 2019
One of the key steps when developing pathways between baccalaureate and diploma programs is comparing learning goals between the programs. This paper presents application of a seven-dimensional framework (cognitive process, transferability, depth of analysis, interdependence, question novelty, scaffolding and communication) to analyze the implicit…
Descriptors: Calculus, Physics, Science Education, Technology Education
Hughes, Andrew J. – Journal of Technology Education, 2019
The article provides an overview of the quantitative analysis of teachers' metacognitive awareness. The purpose of the overview is to express the need for encompassing measures of metacognition for improving metacognitive awareness in the field of technology and engineering education. The data presented come from using the Metacognitive Awareness…
Descriptors: Metacognition, Measurement Techniques, Technology Education, Engineering Education
Katsioloudis, Petros J. – Journal of STEM Education: Innovations and Research, 2017
Temperature can influence thermal comfort, working performance, and social behavior. In a classroom that is slightly cool, an assumption can be made that learning could be affected in a negative way. Considering this, a quasi-experimental study was done to determine if a significant difference of effective temperature have an effect on students':…
Descriptors: Engineering Education, Technology Education, Quasiexperimental Design, Classroom Environment
Katsioloudis, Petros; Dickerson, Daniel; Jovanovic, Vukica; Jones, Mildred – Engineering Design Graphics Journal, 2015
The benefit of using static versus dynamic visualizations is a controversial one. Few studies have explored the effectiveness of static visualizations to those of dynamic visualizations, and the current state of the literature remains somewhat unclear. During the last decade there has been a lengthy debate about the opportunities for using…
Descriptors: Engineering Education, Technology Education, Visualization, Spatial Ability
Bajpai, Shrish; Akhtar, Shagil – Comparative Professional Pedagogy, 2017
The industrial revolution can be termed as the catalyst of human growth. The establishment of various industries has been detrimental to the meteoric rise of any commodity, product or service across the world. Industries fuel the economy of countries and form the main constituent of their GDP. Industries not only generate the production of the…
Descriptors: Foreign Countries, Industrial Education, Engineering Education, Higher Education
Grubbs, Michael E.; Strimel, Greg J.; Kim, Eunhye – International Journal of Technology and Design Education, 2018
Cultivating students' design abilities can be highly beneficial for the learning of science, technology, engineering, and mathematics (STEM) concepts, and development of higher-order thinking capabilities (National Academy of Engineering and National Research Council in STEM integration in k-12 education: status, prospects, and an agenda for…
Descriptors: Design, Engineering Education, Technology Education, Developmentally Appropriate Practices
Besterman, Keith R.; Ernst, Jeremy; Williams, Thomas O. – Contemporary Issues in Education Research, 2018
In the United States, the population of students classified as English Language Learners (ELLs) in K-12 education has increased in recent decades. As a result, teachers outside of specialized linguistic courses have needed to adapt their instruction to better meet the needs of these students. This exploratory study investigates potential…
Descriptors: Science Teachers, STEM Education, English Language Learners, Comparative Analysis
Hacker, Michael; Barak, Moshe – Journal of Technology Education, 2017
Engineering and technology education (ETE) are receiving increased attention as components of STEM education. Curriculum development should be informed by perceptions of academic engineering educators (AEEs) and classroom technology teachers (CTTs) as both groups educate students to succeed in the technological world. The purpose of this study was…
Descriptors: High School Students, Comparative Analysis, Delphi Technique, Teacher Attitudes
Majda Fiksl; Andrej Flogie; Boris Aberšek – Journal of Baltic Science Education, 2017
For successful work in the classroom, it is important to create a positive climate and to involve students actively in the process of learning. The presented research focused on how the students perceived the classroom climate, and on their interest in the contents of the subject Science, Engineering and Technology (STE). 92 primary school sixth-…
Descriptors: Science Education, Technology Education, Engineering Education, Comparative Analysis
Chien, Yu-Hung – EURASIA Journal of Mathematics, Science & Technology Education, 2017
This study developed an integrated-STEM CO[subscript 2] dragster design course using 3D printing technology. After developing a pre-engineering curriculum, we conducted a teaching experiment to assess students' differences in creativity, race forecast accuracy, and learning performance. We compared student performance in both 3D printing and…
Descriptors: Foreign Countries, High School Students, Grade 10, Engineering Education
Bartholomew, Scott – ProQuest LLC, 2016
With the increasingly ubiquitous nature of mobile devices among K-12 students, many argue for and against the inclusion of these devices in K-12 classrooms. Arguments in favor cite instant access to information and collaboration with others as positive affordances made possible through mobile devices. Self-directed learning, a process where…
Descriptors: STEM Education, Portfolios (Background Materials), Engineering Education, Design