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Fernandes, Fábio A. O.; Marques, Clauber; Castelan, Jovani; Fritzen, Daniel; Alves de Sousa, Ricardo J. – Education Sciences, 2020
This paper reports pedagogical experiences and educational techniques in the field of Mechanics of Structures (Mechanical Engineering degree), resorting to computational tools. Several aspects are addressed, covering CAD (Computer-Aided Design) modelling systems to CAE (Computer-Aided Engineering) solutions, in terms of analysis and validation of…
Descriptors: Learning Processes, Engineering Education, Computer Assisted Design, Curriculum Development
Katherine J. Stephenson – ProQuest LLC, 2017
While the changing nature of design activity is a topic supported by a range of popular and academic publications, the role that design tools have taken in that change is less well studied. The tools used in the trade, both by industrial designers and mechanical engineers, have undergone a rapid transformation in the last fifty years. The research…
Descriptors: Engineering Education, Digital Literacy, Novices, Majors (Students)
Toto, Roxanne; Colledge, Thomas; Frederick, David; Pung, Wik Hung – Advances in Engineering Education, 2014
Reflective of current trends in industry, engineering design professionals are expected to have knowledge of 3D modeling software. Responding to this need, engineering curricula seek to effectively prepare students for the workforce by requiring instruction in the use of 3D parametric solid modeling. Recent literature contains many examples that…
Descriptors: Engineering, Engineering Education, Computer Software, College Curriculum
Smith, S. C.; Al-Assadi, W. K.; Di, J. – IEEE Transactions on Education, 2010
As demand increases for circuits with higher performance, higher complexity, and decreased feature size, asynchronous (clockless) paradigms will become more widely used in the semiconductor industry, as evidenced by the International Technology Roadmap for Semiconductors' (ITRS) prediction of a likely shift from synchronous to asynchronous design…
Descriptors: Computer System Design, Engineering Education, Curriculum Development, Integrated Curriculum
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
Meznarich, R. A.; Shava, R. C.; Lightner, S. L. – Engineering Design Graphics Journal, 2009
Engineering design graphics courses taught in colleges or universities should provide and equip students preparing for employment with the basic occupational graphics skill competences required by engineering and technology disciplines. Academic institutions should introduce and include topics that cover the newer and more efficient graphics…
Descriptors: Engineering Education, Drafting, Technology Education, College Instruction

Livshits, V.; Sandler, B. Z. – International Journal of Technology and Design Education, 1999
Discussion of technical education as part of the engineering education curriculum focuses on the effects of computerization, specifically the computerization of technical drawing. Topics include computer-aided graphics, computer-aided design, and the need for curriculum changes to allow more hours of practical work. (Author/LRW)
Descriptors: Computer Assisted Design, Computer Assisted Manufacturing, Computer Graphics, Curriculum Development
Shapiro, Harvey T.; Loose, Donald R. – 1990
The "RAMCAD" workshop summarized in this document reviewed the prospects for integrating reliability and maintainability into undergraduate engineering curricula. RAMCAD stands for Reliability, Availability, and Maintainability in Computer-Aided Design. The workshop was sponsored by Air Force human resources departments and attended by a…
Descriptors: College Faculty, Computer Assisted Design, Computer Assisted Manufacturing, Curriculum Design

Geysen, W.; And Others – European Journal of Engineering Education, 1990
Presented is a philosophy for the education of professional engineers in Belgium. Modern techniques that may be used in classical studies are analyzed. Described is a curriculum that is specific for the Belgium situation in an unified Europe. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Assisted Instruction, Computer Simulation
Barr, Ronald E.; Juricic, Davor – Engineering Education, 1991
A course curriculum model that shows how modern engineering design graphics can be used to conceptualize, develop, analyze, and communicate engineering designs is presented. Background studies, early investigations, and a weekly curriculum outline of the course are provided. (KR)
Descriptors: College Science, Computer Assisted Design, Computer Graphics, Course Content

Sung, Wen-Tsai; Ou, S. C. – Journal of Computer Assisted Learning, 2002
Applies principles of constructivism and virtual reality (VR) to computer-aided design (CAD) curriculum, particularly engineering, by integrating network, VR and CAD technologies into a Web-based learning environment that expands traditional two-dimensional computer graphics into a three-dimensional real-time simulation that enhances user…
Descriptors: Computer Assisted Design, Computer Graphics, Computer Simulation, Constructivism (Learning)

Wiley, Scott E. – Engineering Design Graphics Journal, 1990
Proposed is a hierarchy of visual learning giving three primary stages of visual learning as well as seven hierarchical stages. A clarification of terms associated with visual learning is presented. (KR)
Descriptors: Cognitive Development, College Science, Computer Assisted Design, Computer Assisted Instruction