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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
Albeshree, Fouzeh; Al-Manasia, Malik; Lemckert, Charles; Liu, Shuangzhe; Tran, Dat – International Journal of Mathematical Education in Science and Technology, 2022
Improving the mathematical skills of undergraduate Engineering and Information Technology (EIT) students has been an enduring challenge for educators. Lecturers continually implement new strategies that try to overcome the challenges encountered in teaching university students with varying levels of success being encountered. This paper provides…
Descriptors: Mathematics Instruction, Teaching Methods, Engineering Education, Technology Education
Holub, Jordan; Kruse, Jerrid; Menke, Lucas – Science and Children, 2020
Engineering is increasingly expected in elementary classrooms now that the "Next Generation Science Standards" have explicitly identified engineering disciplinary core ideas as well as engineering practices. To incorporate engineering into their elementary classrooms, the authors used building blocks (i.e., LEGOS) to help students begin…
Descriptors: Engineering Education, Elementary School Students, Science Education, Standards
Fowler, Whitney C.; Ting, Jeffrey M.; Meng, Siqi; Li, Lu; Tirrell, Matthew V. – Journal of Chemical Education, 2019
Collaborations and partnerships across disciplines are becoming increasingly recognized as valuable endeavors toward solving emerging global challenges in our rapidly changing world. Thus, it is crucial to create STEM educational strategies that infuse diverse and interconnected perspectives among scientists, policymakers, and the general public.…
Descriptors: Systems Approach, Teaching Methods, Chemistry, Technology Education
Kim, Eunhye; Strimel, Greg J. – IEEE Transactions on Education, 2020
Contribution: Increased understanding of the influence of a project-based multidisciplinary design and innovation course on students' engineering design thinking, specifically regarding problem framing. Background: Entrepreneurship-related education has been offered to engineering and technology students, but its influence has been discussed…
Descriptors: Student Projects, Active Learning, Interdisciplinary Approach, Entrepreneurship
Custer, Rodney L.; Moye, Johnny J. – Technology and Engineering Teacher, 2019
Many industrial arts, technology education, and now technology and engineering education leaders have made their mark on our profession. Their legacy is something that members of the profession enjoy and have a responsibility to continue and build upon. This is the thirteenth in a series of articles entitled "The Legacy Project." The…
Descriptors: Industrial Arts, Vocational Education, Technology Education, Technical Education
Klaassen, Renate G. – European Journal of Engineering Education, 2018
Today, interdisciplinary education is a hot topic. Gaining an insight into the nature of interdisciplinary education may help when making design decisions for interdisciplinary education. In this study, we argue that, derived from interdisciplinary research, the choice of problem, the level of interaction between different disciplines and…
Descriptors: Engineering Education, Case Studies, Interdisciplinary Approach, Decision Making
Moyer, Courtney D. – Technology and Engineering Teacher, 2016
Thematic instruction offers flexible opportunities to engage students with real-world experiences in the technology and engineering community. Whether used in a broad unifying theme or specific project-based theme, research has proven that thematic instruction has the capacity to link cross-curricular subjects, facilitate active learning, and…
Descriptors: Engineering Education, Technology Education, Thematic Approach, Integrated Curriculum
Strimel, Greg; Grubbs, Michael E. – Journal of Technology Education, 2016
As the presence of engineering content and practices increases in science education, the distinction between the two fields of science and technology education becomes even more vague than previously theorized. Furthermore, the addition of engineering to the title of the profession raises the question of the true aim of technology education. As a…
Descriptors: STEM Education, Technology Integration, Engineering Education, Technology Education
Buj-Corral, Irene; Marco-Almagro, Lluís; Riba, Alex; Vivancos-Calvet, Joan; Tort-Martorell, Xavier – Journal of Technology and Science Education, 2015
In the subject Project I in the second year of the Degree in Industrial Technology Engineering taught at the School of Industrial Engineering of Barcelona (ETSEIB), subgroups of 3-4 students within groups of 20 students develop a project along a semester. Results of 2 projects are presented related to manufacturing, measurement of parts and the…
Descriptors: Foreign Countries, Active Learning, Student Projects, Manufacturing
Kim, Pyoung Won – EURASIA Journal of Mathematics, Science & Technology Education, 2016
The Korean STEAM education pursues a convergent human resources education, but there are shortcomings associated with it due to the fact that it excludes the Humanities in its curriculum. This study embodies the accomplishments from the design and field application of the STEAM education model that has added Humanities fields (history, geography,…
Descriptors: Foreign Countries, Active Learning, Student Projects, Pilot Projects
Yelamarthi, Kumar – Journal of STEM Education: Innovations and Research, 2016
Many interesting research and design questions occur at the intersections of traditional disciplines, yet most coursework and research programs for undergraduate engineering students are focused on one discipline. This leads to underutilization of the potential in better preparing students through multidisciplinary projects. Identifying this…
Descriptors: STEM Education, Robotics, Engineering Education, Technology Education
Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2017
Part One of this article ("Technology and Engineering Teacher," 75(4), December/January, 2016) presented a process that science, math, engineering, and technology teachers could use to collaborate and design integrated STEM courses. A conceptual framework was discussed that could provide a premise that educators interested in delivery of…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
Asunda, Paul A.; Mativo, John – Technology and Engineering Teacher, 2016
In this first of a two-part series, the authors report that STEM is still mostly science and mathematics, taught separately with little or no attention to technology and engineering. Where connections do get made to technology and engineering, too often they happen through several disconnected projects that lack coherence in content standards and…
Descriptors: STEM Education, Technology Education, Teaching Methods, Common Core State Standards
Berkeihiser, Mike; Ray, Dori – Technology and Engineering Teacher, 2013
The interdisciplinary approach that science, technology, engineering and mathematics (STEM) projects inspire in both teachers and students "brings to light a larger picture that promotes real-world scientific applications, which has in turn been shown to increase undergraduate persistence in STEM." The high school students have been…
Descriptors: Advanced Placement, Interdisciplinary Approach, Science Education, Engineering