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Wai Tong Chor; Kam Meng Goh; Li Li Lim; Kin Yun Lum; Tsung Heng Chiew – Education and Information Technologies, 2024
The programme outcomes are broad statements of knowledge, skills, and competencies that the students should be able to demonstrate upon graduation from a programme, while the Educational Taxonomy classifies learning objectives into different domains. The precise mapping of a course outcomes to the programme outcome and the educational taxonomy…
Descriptors: Artificial Intelligence, Engineering Education, Taxonomy, Educational Objectives
Warner, Scott A.; Shearer, Korbin L.; Heidt, Garreth; Shoemaker, Korbin – Technology and Engineering Teacher, 2021
For as long as the profession of technology and engineering education (TEE) has existed (the addition of engineering to the professional title marks the official beginning of the profession, and that occurred in 2010), there has been a struggle. Arguably, this struggle's roots go back to the beginning of public education in the U.S. The struggle,…
Descriptors: Technology Education, Engineering Education, Technological Literacy, Educational Objectives
Edwards, Cherie D.; Lee, Walter C.; Knight, David B.; Fletcher, Trina; Reid, Karl; Lewis, Racheida – Advances in Engineering Education, 2021
Striving to remain a global leader in innovation, the United States continues prioritizing broadening participation in engineering and other STEM fields. For this reason, STEM outreach programs are increasingly popular and vital. However, few programs offer such outreach experiences at a large, national scale and intentionally situate those…
Descriptors: Summer Programs, Engineering Education, African American Students, Access to Education
Clark, William W.; Besterfield-Sacre, Mary – Advances in Engineering Education, 2020
This paper reflects on the process followed in the Swanson School of Engineering at the University of Pittsburgh to cultivate an innovative and entrepreneurial culture among students and faculty. As a member of the first cohort of the Pathways program, a strategic process was initiated to unlock the innovation capabilities of students and to feed…
Descriptors: Universities, Entrepreneurship, Innovation, Sustainability
Pitt, Aleksandra N.; Schultz, Courtney A.; Vaske, Jerry J. – Environmental Education Research, 2019
The US Forest Service has a long history of youth conservation education. We investigated U.S. Forest Service citizen science programs that involve secondary school students in field collection of monitoring data to understand (1) how the programs integrated science and environmental education and (2) whether these programs advance ecological…
Descriptors: Literacy, Environmental Education, Program Descriptions, Forestry
Olmedo-Torre, Noelia; Farrerons Vidal, Oscar – Journal of Technology and Science Education, 2017
We present a strategy for the acquisition and assessment of autonomous learning conducted as part of the Graphic Expression in Engineering (GE) degree course during the first quarter at the Escola Universitària d'Enginyeria Tècnica Industrial de Barcelona (EUETIB). The strategy employed is the puzzle technique in the classroom and multiple-choice…
Descriptors: Engineering Education, Independent Study, Foreign Countries, Puzzles
Smith, Brian Eugene – ProQuest LLC, 2017
Within the confines of this study, the researcher investigated Project Lead the Way (PLTW) Engineering curriculum goals within Missouri high schools. The study measured Missouri PLTW teachers' perceptions of various elements of the curriculum as well as state and national PLTW End of Course student assessment data to determine if a relationship…
Descriptors: Engineering Education, High School Students, Program Descriptions, Course Descriptions
Tang, Wendy; Westgate, Charles; Liu, Pao-Lo; Gouzman, Michael – Journal of Educational Technology Systems, 2014
The Online Bachelor of Science in Electrical Engineering is a collaborative effort among three University Centers at SUNY (State University of New York), namely Stony Brook, Binghamton, and Buffalo. The program delivers the complete electrical engineering curriculum at the bachelor level to students online and asynchronously. Students, however,…
Descriptors: Undergraduate Study, Online Courses, Web Based Instruction, Electronic Learning
Dallas, T.; Berg, J. M.; Gale, R. O. – IEEE Transactions on Education, 2012
This paper describes the goals, pedagogical system, and educational outcomes of a three-semester curriculum in microelectromechanical systems (MEMS). The sequence takes engineering students with no formal MEMS training and gives them the skills to participate in cutting-edge MEMS research and development. The evolution of the curriculum from…
Descriptors: Outcomes of Education, Competition, Curriculum Development, Manufacturing
Kontogeorgis, Georgios M.; Michelsen, Michael L.; Clement, Karsten H. – Chemical Engineering Education, 2009
According to so-called "Bologna model," many technical universities in Europe have divided their educations into separate 3-year Bachelor and 2-year Master programs (followed by an optional Ph.D. study). Following the "Bologna model," DTU has recently transformed its 5-year engineering education into a 3-year Bachelor (B.Sc.)…
Descriptors: Engineering Education, Textbooks, Thermodynamics, Graduates
Pendergraft, Katy; Daugherty, Michael K.; Rossetti, Charles – Technology Teacher, 2009
In an effort to develop an engineering design project that would deliver the necessary content and reach out to the English Language Learner (ELL) community, faculty in the Engineering Academy at Springdale High School in Springdale, Arkansas instituted the ELL Engineering Collaborative. The ELL Engineering Collaborative has four primary goals…
Descriptors: High Schools, Mentors, Parent Participation, Parent School Relationship
Waina, Richard B. – Eng Educ, 1969
Describes a method for specifying precise course objectives for undergraduate electrical engineering curriculum, and suggests treating curriculum design as a system engineering problem. (Author/WM)
Descriptors: Course Content, Curriculum Design, Curriculum Development, Educational Objectives
Culver, Richard S.; And Others – Engineering Education, 1990
Described are the rationales for the Engineering Practices Introductory Course Sequence (EPICS) program at the Colorado School of Mines, and the McMaster Problem-Solving (MPS) program at McMaster University. The professional development model used in these programs is discussed. (CW)
Descriptors: College Science, Educational Objectives, Engineering Education, Higher Education
Torda, T. P. – Engineering Education, 1973
Discusses two-year experience of conducting an interdisciplinary undergraduate program which integrates liberal arts into technical curricula and emphasize non-conventional learning processes and evaluation. The purpose is to prepare students with abilities to develop technology needed by society and to minimize its side effects harmful to the…
Descriptors: Educational Objectives, Educational Programs, Engineering Education, Higher Education
Peer reviewedCohen, Karen C. – Journal of General Education, 1977
Describes the goals which the faculty at Worcester Polytechnic Institute in Worcester, Massachusetts, set for its new program (particularly for engineering education) and the new teaching and implementation strategies developed to attain those goals, and then examines the tentative results. (Author/RK)
Descriptors: Curriculum Development, Degree Requirements, Educational Objectives, Engineering Education
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