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Showing all 13 results Save | Export
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Seroy, Sasha K.; Zulmuthi, Hanis; Grünbaum, Daniel – Journal of Geoscience Education, 2020
Educational research supports incorporating active engagement into K-12 education using authentic STEM experiences. While there are discipline-specific resources to provide students with such experiences, there are limited transdisciplinary opportunities that integrate engineering education and technological skill-building to contextualize core…
Descriptors: High School Students, Secondary School Science, Chemistry, Scientific Concepts
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Albéri, Matteo; Baldoncini, Marica; Bottardi, Carlo; Chiarelli, Enrico; Landsberger, Sheldon; Raptis, Kassandra Giulia Cristina; Serafini, Andrea; Strati, Virginia; Mantovani, Fabio – Education Sciences, 2019
Although environmental radioactivity is all around us, the collective public imagination often associates a negative feeling to this natural phenomenon. To increase the familiarity with this phenomenon we have designed, implemented, and tested an interdisciplinary educational activity for pre-collegiate students in which nuclear engineering and…
Descriptors: Engineering Education, Radiation, Learning Activities, Interdisciplinary Approach
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Henkel, Marius; Zwick, Michaela; Beuker, Janina; Willenbacher, Judit; Baumann, Sandra; Oswald, Florian; Neumann, Anke; Siemann-Herzberg, Martin; Syldatk, Christoph; Hausmann, Rudolf – Biochemistry and Molecular Biology Education, 2015
Bioprocess engineering is a highly interdisciplinary field of study which is strongly benefited by practical courses where students can actively experience the interconnection between biology, engineering, and physical sciences. This work describes a lab course developed for 2nd year undergraduate students of bioprocess engineering and related…
Descriptors: Undergraduate Students, College Science, Biology, Engineering Education
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Shreiber, David I.; Moghe, Prabhas V.; Roth, Charles M. – Advances in Engineering Education, 2015
Research Experiences for Undergraduates (REU) sites widely serve as the first major research gateway for undergraduates seeking a structured research experience. Given their lack of prior research skills, and the highly compressed duration of the REU programs, these students frequently encounter barriers to a seamless transition into a new…
Descriptors: Undergraduate Students, Acceleration (Education), Interdisciplinary Approach, Engineering Education
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Gómez Puente, Sonia M.; van Eijck, Michiel; Jochems, Wim – International Journal of Technology and Design Education, 2013
Design-based learning (DBL) is an educational approach grounded in the processes of inquiry and reasoning towards generating innovative artifacts, systems and solutions. The approach is well characterized in the context of learning natural sciences in secondary education. Less is known, however, of its characteristics in the context of higher…
Descriptors: Literature Reviews, Learning Strategies, Design, Natural Sciences
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Suss, Gavin – American Journal of Business Education, 2010
The question is, "What can vision do?" (Fritz, 1989) rather than "What is vision?" Keter's Chairman, Mr. Sami Sagol's vision is to establish an internship program that will strengthen the competitive edge of the Israeli industry, within the international arena. The program will set new standards of excellence for product…
Descriptors: Foreign Countries, Engineering, Hands on Science, Internship Programs
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Leang, K. K.; Zou, Q.; Pannozzo, G. – IEEE Transactions on Education, 2010
Piezoelectric actuators (or piezoactuators) are known for their nanoresolution and high-speed positioning capabilities. Therefore, they are used in scanning probe microscopes and in the design of innovative surgical tools and biomedical devices. The expected growth of engineering jobs in the nano- and bio-related fields, in which piezoactuators…
Descriptors: Engineering Education, Undergraduate Study, Teaching Methods, Hands on Science
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Lohani, Vinod K.; Wolfe, Mary Leigh; Wildman, Terry; Mallikarjunan, Kumar; Connor, Jeffrey – Advances in Engineering Education, 2011
In 2004, a group of engineering and education faculty at Virginia Tech received a major curriculum reform and engineering education research grant under the department-level reform (DLR) program of the NSF. This DLR project laid the foundation of sponsored research in engineering education in the Department of Engineering Education. The DLR…
Descriptors: Engineering Education, Educational Change, Spiral Curriculum, Curriculum Development
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de Silva, Eugene, Ed. – IGI Global, 2015
While the great scientists of the past recognized a need for a multidisciplinary approach, today's schools often treat math and science as subjects separate from the rest. This not only creates a disinterest among students, but also a potential learning gap once students reach college and then graduate into the workforce. "Cases on…
Descriptors: Teaching Methods, Science Education, Hands on Science, Elementary Secondary Education
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Sirinterlikci, Arif; Toukonen, Kayne; Mason, Steve; Madison, Russel – Journal of STEM Education: Innovations and Research, 2005
An animatronic robot was designed and constructed for the 2003 Annual Student Robotic Technology and Engineering Challenge organized by the Robotics International (RI) association of the Society of Manufacturing Engineers (SME). It was also the senior capstone design project for two of the design team members. After a thorough study of body and…
Descriptors: Engineering Education, Design, Interdisciplinary Approach, Robotics
Auner, G. W.; Siy, P.; Naik, R.; Wenger, L.; Liu, G-Y.; Schwiebert, L. J. – 1998
The researchers are developing a new curriculum which integrates ongoing research efforts in the Center for Smart Sensors and Integrated Devices into a cooperative educational and traineeship program. A forerunner to this program was initiated with funding by a National Science Foundation (NSF) Combined Research and Curriculum Development (CRCD)…
Descriptors: Course Descriptions, Curriculum Development, Design, Electronics
Sutter, Gary R. – NCSSSMST Journal, 1998
Describes a course that bridges the gap between pure science and pure technology called Pre-Engineering. This course gives junior and senior students a chance to investigate the possibility of choosing engineering as a major in college as well as to experience hands-on activities, projects, laboratories, problem solving, and computer simulations…
Descriptors: College Bound Students, Computer Simulation, Cooperative Learning, Course Descriptions
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Carr, Robin; And Others – Journal of Engineering Education, 1995
Describes the Mathematical and Scientific Foundations of Engineering curriculum which emphasizes the mathematical and scientific concepts common to all engineering fields. Scientists and engineers together devised topics and experiments that emphasize the relevance of theory to real-world applications. Presents material efficiently while building…
Descriptors: Biological Sciences, Calculus, Chemistry, Curriculum Development