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Alemdar, Meltem; Moore, Roxanne A.; Lingle, Jeremy A.; Rosen, Jeff; Gale, Jessica; Usselman, Marion C. – International Journal of Education in Mathematics, Science and Technology, 2018
Engineering and integrated STEM experiences are being promoted at the K-12 level to increase interest and retention in STEM and to reinforce learning of mathematics and science content. However, research is still emerging regarding best practices for curriculum development, student impacts, and transfer of knowledge across disciplines. The purpose…
Descriptors: Instructional Effectiveness, Middle School Students, Engineering Education, Academic Achievement
Kirkman, Robert – Interdisciplinary Journal of Problem-based Learning, 2016
I describe the first stages of a process of design research in which I employ problem-based learning in a course in engineering ethics, which fulfills a requirement for students in engineering degree programs. The aim of the course is to foster development of particular cognitive skills contributing to moral imagination, a capacity to notice,…
Descriptors: Problem Based Learning, Engineering Education, Ethical Instruction, Undergraduate Students
Kirkman, Robert; Fu, Katherine; Lee, Bumsoo – Advances in Engineering Education, 2017
This paper introduces an approach to teaching ethics as design in a new course entitled Design Ethics, team-taught by a philosopher and an engineer/designer. The course follows a problem-based learning model in which groups of students work through the phases of the design process on a project for a local client, considering the design values and…
Descriptors: Ethics, Teaching Methods, Design, Engineering Education
Le Doux, Joseph M.; Waller, Alisha A. – Advances in Engineering Education, 2016
This paper describes the problem-solving studio (PSS) learning environment. PSS was designed to teach students how to solve difficult analytical engineering problems without resorting to rote memorization of algorithms, while at the same time developing their deep conceptual understanding of the course topics. There are several key features of…
Descriptors: Problem Solving, Apprenticeships, Engineering Education, Teaching Methods
Bhatti, P. T.; McClellan, J. H. – IEEE Transactions on Education, 2011
This paper presents an introductory signal processing laboratory and examines this laboratory exercise in the context of problem-based learning (PBL). Centered in a real-world application, a cochlear implant, the exercise challenged students to demonstrate a working software-based signal processor. Partnering in groups of two or three, second-year…
Descriptors: Assistive Technology, Problem Based Learning, Laboratories, Engineering Education
Basken, Paul – Chronicle of Higher Education, 2009
Engineering has long been recognized as a key to the U.S. economy. Yet for more than 20 years, colleges of engineering have been warned that they are failing to keep their curricula and teaching methods relevant, threatening the profession and, by extension, the nation's economic prosperity. After a close-up look at 40 American engineering…
Descriptors: Engineering Education, Educational Change, Reports, College Faculty