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Oh, Michael; Lawson, Finley – School Science Review, 2020
This article proposes an alternative (or additional) place for the use of robotics within the secondary school curriculum. Robotics provides a unique opportunity to engage students in genuinely multidisciplinary learning that challenges their misperceptions about the nature of science/technology and engages them with 'big questions'. After…
Descriptors: Engineering Education, Robotics, STEM Education, Interdisciplinary Approach
Ardito, Gerald; Czerkawski, Betül; Scollins, Lauren – TechTrends: Linking Research and Practice to Improve Learning, 2020
Problem-solving and critical thinking are considered important skills to be developed by students, and are supported by the development of Computational Thinking (CT) skills. This study investigated the collaborative development of CT skills in sixth grade students via a six week LEGO robotics program. This robotics program focused on the…
Descriptors: Problem Solving, Thinking Skills, Middle School Students, Robotics
Lagesen, Vivian Anette; Pettersen, Ivar; Berg, Line – European Journal of Engineering Education, 2022
This paper address how we may understand inclusion strategies designed to reduce the gender gap in higher education in engineering and ICT engineering in particular. Based on a case study of a long-term inclusion effort and statistics on recruitment and retainment, we argue that inclusion initiatives which address important inclusion needs and put…
Descriptors: Females, Engineering Education, Computer Science Education, Inclusion
Silva, E.; Almeida, J.; Martins, A.; Baptista, J. P.; Campos Neves, B. – IEEE Transactions on Education, 2013
Robotics research in Portugal is increasing every year, but few students embrace it as one of their first choices for study. Until recently, job offers for engineers were plentiful, and those looking for a degree in science and technology would avoid areas considered to be demanding, like robotics. At the undergraduate level, robotics programs are…
Descriptors: Foreign Countries, Robotics, Engineering Education, Masters Programs
Shiller, Z. – IEEE Transactions on Education, 2013
This paper describes a multidisciplinary teaching program, designed to provide students with the broad knowledge and skills required to practice product development in robotics and mechatronics. The curriculum was designed to prepare students for the senior capstone design project, in which they design and build a working mechatronic/robotic…
Descriptors: Mechanical Skills, Robotics, Engineering Education, Instructional Innovation
Hance, Dennis – Tech Directions, 2012
During the fall semester of 2010, mechanical engineering students from Edison State Community College and Wright State University shared their skills and knowledge with students from the Upper Valley JVS (UVJVS) pre-engineering technology program in a highly motivating robotics activity. The activity culminated in 47 teams from regional high…
Descriptors: Competition, Engineering Technology, Robotics, College School Cooperation
Van Name, Barry – Tech Directions, 2012
There is a battlefield where no quarter is given, no mercy shown, but not a single drop of blood is spilled. It is an arena that witnesses the bringing together of high-tech design and manufacture with the outpouring of brute force, under the remotely accessed command of some of today's brightest students. This is the world of battling robots, or…
Descriptors: Females, Engineering, Computer Assisted Design, High School Students
Stapleton, William; Asiabanpour, Bahram; Jimenez, Jesus; Um, Dugan – American Journal of Engineering Education, 2010
Under an NSF REU center grant REU-0755355 entitled "Micro/Nano Assembly Workcell Via Micro Visual Sensing and Haptic Feedback", Texas A&M University-Corpus Christi and Texas State University-San Marcos collaboratively hosted two groups of 10 students from different backgrounds for 10 weeks each in Summer 2008 and 2009 respectively.…
Descriptors: Grants, Engineering Education, Summer Programs, Program Descriptions
Skorinko, Jeanine L.; Doyle, James K.; Tryggvason, Gretar – Journal of Pre-College Engineering Education Research, 2012
It has long been recognized that engineers need a variety of skills, including technical and social, to succeed professionally. Attempts to include social skills (i.e., communication, teamwork, and leadership) in engineering education are relatively recent (i.e., within the last decade). Thus, the current study investigates whether social goals…
Descriptors: Goal Orientation, Outcomes of Education, Engineering Education, Robotics
Hernando, M.; Galan, R.; Navarro, I.; Rodriguez-Losada, D. – IEEE Transactions on Education, 2011
After 10 years of organizing the Cybertech robotics competition, this paper presents this unique and innovative educational experience of teaching engineering at Universidad Politecnica de Madrid (UPM), Spain. Cybertech is not only a well-known robotic contest in Spain due to the "Robotaurus" bullfighting, but is also a whole academic…
Descriptors: Foreign Countries, Robotics, Instructional Innovation, Interdisciplinary Approach
Ewers, Timothy G. – Journal of Extension, 2010
4-H youth development programs nationwide are responding to the 4-H National Science, Engineering, and Technology (4-H SET) Initiative to involve more youth in Science, Engineering, and Technology activities. The goal is to increase the numbers of youth choosing to pursue SET careers. This article describes a program that is having great success…
Descriptors: Youth Programs, Elementary Secondary Education, Robotics, Science Activities
Mosley, Pauline Helen; Liu, Yun; Hargrove, S. Keith; Doswell, Jayfus T. – Journal of STEM Education: Innovations and Research, 2010
This paper gives an overview of a new pre-engineering program--Robotics Technician Curriculum--that uses robots to solicit underrepresented students pursuing careers in science, technology, engineering, and mathematics (STEM). The curriculum uses a project-based learning environment, which consists of part lecture and part laboratory. This program…
Descriptors: Career Development, Student Projects, Evaluators, Peer Evaluation
Jimenez Jojoa, E. M.; Bravo, E. C.; Bacca Cortes, E. B. – IEEE Transactions on Education, 2010
This paper describes the design and implementation of a tool for experimenting with mobile robotics concepts, primarily for use by children and teenagers, or by the general public, without previous experience in robotics. This tool helps children learn about science in an approachable and interactive way, using scientific research principles in…
Descriptors: Foreign Countries, Engineering Education, Science Education, Science Activities
Bertozzi, N.; Hebert, C.; Rought, J.; Staniunas, C. – Engineering Design Graphics Journal, 2007
Over the past decade the software products available for solid modeling, dynamic, stress, thermal, and flow analysis, and computer-aiding manufacturing (CAM) have become more powerful, affordable, and easier to use. At the same time it has become increasingly important for students to gain concurrent engineering design and systems integration…
Descriptors: Engineering Education, Computer Software, Engineering, Models
Bainter, Jack J. – Technological Horizons in Education, 1986
A boom in industrial robotics has led numerous vocational institutions to launch extensive training programs in this specialty. ITT Educational Services offers two curriculum programs to train future manufacturing engineers. The firm's national director describes this model curriculum for meeting the needs of today's workforce. (JN)
Descriptors: Computer Oriented Programs, Electronics, Engineering, Engineering Education