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J. Pareigis; M. Kvarnström; B. Cefa; J. Y. H. Bai; O. Zawacki-Richter; L. Uhlin; N. Jakobsson; G. Theilmeier – International Journal for Academic Development, 2024
Open Networked Learning (ONL) is a collaborative open online course for higher education educators worldwide, focusing on open education, collaborative learning, and course design. The interorganizational course welcomes both institutional and open learners from around 30 nations. Delivered 17 times since 2014 with up to 120 participants in each…
Descriptors: Educational Development, Communities of Practice, Open Education, Problem Based Learning
Reddy, Sarasvathie; McKenna, Sioux – Innovations in Education and Teaching International, 2016
Participants in a study on learning the clinical aspects of medicine in a problem-based learning (PBL) curriculum repeatedly referred to themselves as "Guinea pigs" at the mercy of a curriculum experiment. This article interrogates and problematises the "Guinea pig" identity ascribed to and assumed by the first cohort of…
Descriptors: Problem Based Learning, Clinical Experience, Cohort Analysis, Labeling (of Persons)
Jensen, Mark B. – Journal of Chemical Education, 2015
An instrumentation-based laboratory curriculum combining traditional unknown analyses with student-designed projects has been developed for an introductory analytical chemistry course. In the first half of the course, students develop laboratory skills and instrumental proficiency by rotating through six different instruments performing…
Descriptors: Introductory Courses, Instrumentation, Student Projects, Laboratory Training
Khalaf, Kinda; Balawi, Shadi; Hitt, George Wesley; Radaideh, Ahmad – Advances in Engineering Education, 2013
This paper presents an innovative, interdisciplinary, design-and-build course created to improve placement, content, and pedagogy for introductory engineering design education. Infused at the freshman level, the course aims to promote expert design thinking by using problem-based learning (PBL) as the mode of delivery. The course is structured to…
Descriptors: Foreign Countries, Engineering, Engineering Education, Design
Brodie, L. M. – European Journal of Engineering Education, 2009
Literature on engineering education stresses the need for graduates to have skills such as working globally in a multicultural environment; working in interdisciplinary teams; sharing of tasks on a global, around the clock basis; working with digital communication tools and in a virtual environment. In addition, accreditation criteria include…
Descriptors: Engineering Education, Problem Based Learning, Electronic Learning, Distance Education
Henry, Holly R.; Tawfik, Andrew A.; Jonassen, David H.; Winholtz, Robert A.; Khanna, Sanjeev – Interdisciplinary Journal of Problem-based Learning, 2012
This qualitative case study examines the initial implementation of a problem-based version of an undergraduate course in materials science for the purpose of identifying areas of improvement to the curriculum prior to a planned second implementation. The course was designed around problems that students work in small teams to solve under the…
Descriptors: Undergraduate Students, Participant Satisfaction, Student Attitudes, Science Materials
Keogh, Kathleen; Sterling, Leon; Venables, Anne – Journal of Information Technology Education, 2007
Year-long team projects with external clients provide a well recognized opportunity for students to gain industry experience, whilst being supported and guided by staff to minimize risks. Each group should be supervised to ensure that they have enough direction and confidence to approach a new problem of significant size, without being daunted. A…
Descriptors: Feedback (Response), Student Projects, Urban Universities, Independent Study
Khoumsi, Ahmed; Gonzalez-Rubio, Ruben – Journal of STEM Education: Innovations and Research, 2006
Our department has redesigned its electrical engineering and computer engineering programs completely by adopting a learning methodology based on competence development, problem solving, and the realization of design projects. In this article, we show how this pedagogical approach has been successfully used for learning compiler design.
Descriptors: Problem Based Learning, Competency Based Education, Engineering Education, Computer Science Education

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