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Showing 1 to 15 of 31 results Save | Export
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Holly M. Golecki; Jason Robinson; Caroline Cvetkovic; Conor Walsh – Biomedical Engineering Education, 2024
Experiential learning in biomedical engineering curricula is a critical component to developing graduates who are equipped to contribute to technical design tasks in their careers. This paper presents the development and implementation of an undergraduate and graduate-level soft material robotics design course focused on applications in medical…
Descriptors: Equipment, Design, Robotics, Experiential Learning
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Tamayo, Pedro Antonio; Herrero, Ana; Martín, Javier; Navarro, Carolina; Tránchez, José Manuel – Open Praxis, 2020
Within the process of progressive digitization of materials and tools for teaching and distance learning of a subject of introduction to Microeconomics (quarterly, in year three of the Degree in Social Work), taught by the authors at the National University of Distance Education (UNED), a virtual assistant in the form of "chatbot," or…
Descriptors: Design, Computer Mediated Communication, Educational Technology, Distance Education
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Deniz, Hasan; Kaya, Erdogan; Yesilyurt, Ezgi; Newley, Anne; Lin, Emily – Journal of Learning and Teaching in Digital Age, 2021
Science, Technology, Engineering, and Mathematics (STEM) entered the general lexicon in the United States within the last ten years. Both Presidents Obama and Trump emphasized STEM education as a priority for the United States because the number of college graduates with STEM degrees is perceived as an important factor contributing to the global…
Descriptors: STEM Education, Science Programs, Robotics, Interdisciplinary Approach
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Hartigan, Campbell; Hademenos, George – Physics Teacher, 2019
One way that STEM (science, technology, engineering, and math) initiatives are being utilized is to encourage schools and teachers to integrate key science-based concepts into daily instruction. The reason is simple: it is more than just an instructional improvement or curricular enhancement; it is a research-based strategy that addresses the…
Descriptors: Science Instruction, Physics, STEM Education, Robotics
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Crismond, David; Peterie, Matthew – Science Teacher, 2017
The Troubleshooting Portfolios approach was developed at the Olathe Northwest High School in Olathe, Kansas. This approach supports integrated STEM and "informed design" thinking and learning, in which students: (1) use design strategies effectively; (2) work creatively and collaboratively in teams; (3) make knowledge-driven decisions;…
Descriptors: High School Students, STEM Education, Portfolios (Background Materials), Design
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Hacker, Michael – Technology and Engineering Teacher, 2018
Computational Thinking (CT) is being promoted as "a fundamental skill used by everyone in the world by the middle of the 21st Century" (Wing, 2006). CT has been effectively integrated into history, ELA, mathematics, art, and science courses (Settle, et al., 2012). However, there has been no analogous effort to integrate CT into…
Descriptors: Skill Development, Thinking Skills, Technology Education, Engineering Education
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Hollers, Brent – Technology and Engineering Teacher, 2017
Documentation of ideas and the engineering design process is a critical, daily component of a professional engineer's job. While patent protection is often cited as the primary rationale for documentation, it can also benefit the engineer, the team, company, and stakeholders through creating a more rigorously designed and purposeful solution.…
Descriptors: Engineering Education, Design, Extracurricular Activities, Teamwork
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Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Teachers have the daunting task of preparing students for a future that they cannot predict. In an age of information where students have the world quite literally at their fingertips, and with the ever-growing momentum of integrated science, technology, engineering, and mathematics (STEM), it is not enough that students experience STEM subjects…
Descriptors: Teaching Methods, STEM Education, Academic Achievement, Interdisciplinary Approach
Aoun, Joseph E. – MIT Press, 2018
Driverless cars are hitting the road, powered by artificial intelligence. Robots can climb stairs, open doors, win "Jeopardy," analyze stocks, work in factories, find parking spaces, advise oncologists. In the past, automation was considered a threat to low-skilled labor. Now, many high-skilled functions, including interpreting medical…
Descriptors: Robotics, Educational Technology, Technology Uses in Education, Employment Qualifications
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Rios-Gutierrez, Fernando; Alba-Flores, Rocio – American Journal of Engineering Education, 2017
This work describes the educational experiences gained teaching the Senior Design I & II courses, a senior level, two-semester sequence in the Electrical Engineering (EE) program at Georgia Southern University (GSU). In particular, the authors present their experiences in using robotics as the main area to develop the capstone senior design,…
Descriptors: Robotics, Design, Educational Experience, Engineering Education
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Kim, Yanghee; Smith, Diantha – Interactive Learning Environments, 2017
The ubiquity and educational potential of mobile applications are well acknowledged. This paper proposes six theory-based, pedagogical strategies to guide interaction design of mobile apps for young children. Also, to augment the capabilities of mobile devices, we used a humanoid robot integrated with a smartphone and developed an English-learning…
Descriptors: Telecommunications, Handheld Devices, Teaching Methods, Young Children
Simic, Konstantin; Vujin, Vladimir; Labus, Aleksandra; Stepanic, Ðorde; Stevanovic, Mladen – International Association for Development of the Information Society, 2014
One of the new topics taught at technical universities is Internet of Things. In this paper, a workshop for organizing a lab in academic environment for the subject Internet of Things is described. The architecture of the platform, scenario and a description of components used for creating the environment for learning Internet of things are also…
Descriptors: Internet, Workshops, Robotics, Teaching Methods
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Yelamarthi, Kumar – Journal of STEM Education: Innovations and Research, 2016
Many interesting research and design questions occur at the intersections of traditional disciplines, yet most coursework and research programs for undergraduate engineering students are focused on one discipline. This leads to underutilization of the potential in better preparing students through multidisciplinary projects. Identifying this…
Descriptors: STEM Education, Robotics, Engineering Education, Technology Education
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Hammons, John; Deal, Walter F., III – Technology and Engineering Teacher, 2013
Microcontrollers are used extensively in transportation and communications technologies, in automobiles to monitor and control engine speed and performance so as to maximize fuel economy and efficiency, and by manufacturing industries to produce "smart" technology. The flexibility, imagination, and spirit that make these tiny devices so…
Descriptors: Engineering, Engineering Education, Robotics, High School Students
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Busch, Carsten; Claßnitz, Sabine; Selmanagic,, André; Steinicke, Martin – Electronic Journal of e-Learning, 2015
In 2010 1.1 million pupils took private lessons in Germany, with 25% of all German children by the age of 17 having attended paid private lessons at some point in their school career (Klemm & Klemm, 2010). The high demand for support for learning curricular content led us to consider an integrated solution that speeds up both the design of…
Descriptors: Foreign Countries, Educational Games, Educational Technology, Telecommunications
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