NotesFAQContact Us
Collection
Advanced
Search Tips
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing 1 to 15 of 27 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Kerrigan, John; Prendergast, Lydia – PRIMUS, 2022
As part of a departmental reform project, a large University converted a "Precalculus College Mathematics" lecture-based course for 97 students into an active learning flipped classroom for first-year engineering students. The curriculum was designed specifically to provide applications of pre-calculus in various engineering subjects.…
Descriptors: Flipped Classroom, Calculus, Mathematics Education, Engineering Education
Peer reviewed Peer reviewed
Direct linkDirect link
Suzanne Cecilia Brink; Miranda de Hei; Ellen Sjoer; Carl Johan Carlsson; Fredrik Georgsson; Elizabeth Keller; Charles McCartan; Mikael Enelund; Reidar Lyng; Wilfried Admiraal – European Journal of Engineering Education, 2025
Transformative curriculum innovation is needed in engineering education programmes, to continuously keep up to date with developments in the professional and research disciplines, in society, technology and pedagogy, and in the characteristics and needs of its diverse students. To enable and facilitate such innovations, both the curriculum's…
Descriptors: Engineering Education, Transformative Learning, Competence, Educational Practices
Peer reviewed Peer reviewed
Direct linkDirect link
Brit Shields – Biomedical Engineering Education, 2023
Curriculum initiatives that provide the societal context of engineering practice can contribute to justice, equity, diversity, and inclusion (JEDI) within the profession, as well as within the communities served by engineers. JEDI curriculum can foster diversity and inclusion by acknowledging and addressing social justice issues, providing a safe…
Descriptors: Justice, Equal Education, Diversity, Inclusion
Ningyu Zhang – ProQuest LLC, 2020
Recently there has been a call among researchers, practitioners, and policymakers for the integration of science and engineering education in K-12 curricula. Similarly, computational thinking (CT) has been recognized as a framework for developing computer literacy and computing skills among the Science, Technology, Engineering, and Mathematics…
Descriptors: Science Education, Engineering Education, Computation, Thinking Skills
Peer reviewed Peer reviewed
Direct linkDirect link
M. David Burghardt; Deborah Hecht – International Journal of Designs for Learning, 2020
This paper examines the differences and challenges encountered when trying to create informal blended (virtual and hands-on) engineering design STEM activities. It contrasts the creation of STEM activities for formal and informal learning environments, stressing that the differences extend far beyond the length of the activity or depth of any…
Descriptors: Informal Education, STEM Education, Science Activities, Youth Clubs
Khaled, Anne; Gulikers, Judith; Biemans, Harm; van der Wel, Marjan; Mulder, Martin – Journal of Vocational Education and Training, 2014
The intentions with which hands-on simulations are used in vocational education are not always clear. Also, pedagogical-didactic approaches in hands-on simulations are not well conceptualised from a learning theory perspective. This makes it difficult to pinpoint the added value that hands-on simulations can have in an innovative vocational…
Descriptors: Vocational Education, Competence, Educational Innovation, Curriculum Development
Garner, Gavin Thomas – ProQuest LLC, 2009
Mechatronic systems that couple mechanical and electrical systems with the help of computer control are forcing a paradigm shift in the design, manufacture, and implementation of mechanical devices. The inherently interdisciplinary nature of these systems generates exciting new opportunities for developing a hands-on, inventive, and…
Descriptors: Engineering, Educational Environment, Laboratory Experiments, Interdisciplinary Approach
National Academies Press, 2012
Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S.…
Descriptors: Science Education, Science Instruction, Elementary Secondary Education, Alignment (Education)
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Nunes, Miguel Baptista, Ed.; Isaias, Pedro, Ed. – International Association for Development of the Information Society, 2018
These proceedings contain the papers of the International Conference e-Learning 2018, which was organised by the International Association for Development of the Information Society, 17-19 July, 2018. This conference is part of the Multi Conference on Computer Science and Information Systems 2018, 17-20 July, which had a total of 617 submissions.…
Descriptors: Electronic Learning, Educational Technology, Online Courses, Educational Environment
Peer reviewed Peer reviewed
Direct linkDirect link
Jansson, P. M.; Ramachandran, R. P.; Schmalzel, J. L.; Mandayam, S. A. – IEEE Transactions on Education, 2010
To keep up with rapidly advancing technology, numerous innovations to the electrical and computer engineering (ECE) curriculum, learning methods and pedagogy have been envisioned, tested, and implemented. It is safe to say that no single approach will work for all of the diverse ECE technologies and every type of learner. However, a few key…
Descriptors: Engineering Education, Computer Science Education, Undergraduate Students, Student Projects
Peer reviewed Peer reviewed
Direct linkDirect link
Jassim, Majeed; Coskuner, Gulnur – European Journal of Engineering Education, 2007
The six members of the Gulf Co-operation Countries (GCC)--Bahrain, Kuwait, Oman, Qatar, Saudi Arabia and the United Arab Emirates--are facing enormous environmental challenges associated with rapid urbanisation and industrialisation, especially in the last three decades, due to its role as a global hydrocarbon energy centre. None of these…
Descriptors: Engineering Education, Higher Education, Chemical Engineering, Foreign Countries
Shumway, Steven; Wright, Geoff – National Center for Engineering and Technology Education, 2009
Using a case study format, the authors' objective was to collect data related to the following research questions: (1) What criteria do teachers and districts use when selecting engineering design experiences for infusion into high school classes and which of these criteria are most effective?; and (2) What issues, opportunities, and constraints…
Descriptors: Secondary School Teachers, Academic Standards, Observation, Selection Criteria
Peer reviewed Peer reviewed
Direct linkDirect link
Litzinger, Thomas A.; Koubek, Richard J.; Wormley, David N. – New Directions for Teaching and Learning, 2009
One of the most important elements in achieving significant curricular and pedagogical innovation is creating a climate that promotes and acknowledges the contributions of those who engage in these efforts. It is critical that this climate be systemic, existing at the department, college, and university levels. In the past few years, the view that…
Descriptors: Undergraduate Study, Science Education, Technology Education, Engineering Education
Peer reviewed Peer reviewed
Allan, M.; Temple, B. K. – Industry and Higher Education, 2000
A curriculum development project was designed to provide a learning environment for students from various disciplines to work together within an institution or between institutions in different countries. The student projects simulate the workplace of the modern European engineering manager. (JOW)
Descriptors: Cooperative Learning, Curriculum Development, Educational Environment, Engineering
Peer reviewed Peer reviewed
Medrano, C. T.; Ube, M.; Plaza, I.; Blesa, A. – European Journal of Engineering Education, 2002
Explores the integration of three factors in the lecture room that influence the function between students and society. Describes the innovation of quality in education that provides students with a work methodology in agreement with the professional world and allows continuous improvement in educational methodology. (Author/KHR)
Descriptors: Curriculum Development, Educational Environment, Educational Quality, Electronics
Previous Page | Next Page ยป
Pages: 1  |  2