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Parameshvaran Varaman; Jeya Amantha Kumar; Siti Nazleen Abdul Rabu; Sharifah Osman – Journal of Educators Online, 2024
Educational robotics (ER) is a constructivist approach to education that promotes experiential learning through actual activities for teaching and learning science, technology, engineering, and mathematics (STEM) subjects. Empirical findings have indicated that primary school students have limited interest in learning mathematics due to the…
Descriptors: Robotics, Elementary School Students, Mathematics Instruction, Student Interests
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Diego-Mantecón, Jose M.; Arcera, Óscar; Blanco, Teresa F.; Lavicza, Zsolt – International Journal for Technology in Mathematics Education, 2019
This paper shows an alternative to the traditional teaching approach, focusing on the application of a STE(A)M-based learning methodology. In particular, we present an engineering technology problem-solving approach to encourage and motivate the mathematics learning of high school students by promoting positive beliefs about this subject. We…
Descriptors: STEM Education, Problem Based Learning, Student Attitudes, Robotics
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Losada-Gutierrez, Cristina; Espinosa, Felipe; Santos-Perez, Carlos; Marron-Romera, Marta; Rodriguez-Ascariz, Jose Manuel – IEEE Transactions on Education, 2020
Hands-on experimentation has widely demonstrated its efficacy in engineering training, especially in control formation, since experimentation using computer-aided control system design (CACSD) tools is essential for future engineers. In this context, this article describes a case study for Control Engineering formation, based on a new lab practice…
Descriptors: Case Studies, Robotics, Student Motivation, Computer Assisted Instruction
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Hassan, Houcine; Domínguez, Carlos; Martínez, Juan-Miguel; Perles, Angel; Capella, Juan-Vicente; Albaladejo, José – IEEE Transactions on Education, 2015
This paper presents a multidisciplinary problem-based learning (PBL) project consisting of the development of a robot arm prototype and the implementation of its control system. The project is carried out as part of Industrial Informatics (II), a compulsory third-year course in the Automation and Electronic Engineering (AEE) degree program at the…
Descriptors: Problem Based Learning, Robotics, Automation, Engineering Education
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Cukurbasi, Baris; Kiyici, Mubin – Educational Technology & Society, 2018
The purpose of this study was to investigate the high school students' views on instructions based on Flipped Classroom Model (FC) and LEGO applications. The case study, which is one of the qualitative research methods, was used within the scope of the study, the duration of which was 7 weeks. In order to choose the research group of the study,…
Descriptors: High School Students, Student Attitudes, Grade 10, Problem Based Learning
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Apiola, Mikko; Tedre, Matti – Journal of Information Technology Education: Innovations in Practice, 2013
It has been shown that deep approaches to learning, intrinsic motivation, and self-regulated learning have strong positive effects on learning. How those pedagogical theories can be integrated in computing curricula is, however, still lacking empirically grounded analyses. In a more general level, it has been widely acknowledged that in…
Descriptors: Computer Science Education, Creativity, Robotics, Problem Based Learning
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Araceli Martinez Ortiz; Beth Bos; Shaunna Smith – Journal of College Science Teaching, 2015
The use of integrated science, technology, engineering and mathematics (STEM) instruction has the affordances of combining harmonious content area connections into real-world experiences that are both engaging and challenging. This article introduces findings from a study that used an integrated robotics module to expose in-service and preservice…
Descriptors: STEM Education, Robotics, Learning Experience, Teacher Education Programs
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McLurkin, J.; Rykowski, J.; John, M.; Kaseman, Q.; Lynch, A. J. – IEEE Transactions on Education, 2013
This paper describes the experiences of using an advanced, low-cost robot in science, technology, engineering, and mathematics (STEM) education. It presents three innovations: It is a powerful, cheap, robust, and small advanced personal robot; it forms the foundation of a problem-based learning curriculum; and it enables a novel multi-robot…
Descriptors: Robotics, STEM Education, Engineering Education, Problem Based Learning
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Dimitris Alimisis; Emmanouil Zoulias – Interactive Technology and Smart Education, 2013
Purpose: The aim of this research is the development of a problem-based curriculum for robotic surgical training and its evaluation. Design/methodology/approach: First, the aim and objectives of the curriculum are defined and the background learning theories that guide our work are introduced. The methodology for designing the simulator-based…
Descriptors: Robotics, Surgery, Training, Skill Development
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Bennie, Fiona; Corbett, Charlotte; Palo, Angela – Odyssey: New Directions in Deaf Education, 2015
This article describes an after-school program at the Horace Mann School for the Deaf (HMS), the oldest public day school for deaf students in the United States, where almost half of the student body imagined and created bridge and robotic machines. The Deaf Robotics Engineering and Math Team, or the DREAM Team club, included HMS students in…
Descriptors: After School Programs, Robotics, Deafness, Program Descriptions
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Simonson, Michael, Ed.; Seepersaud, Deborah, Ed. – Association for Educational Communications and Technology, 2018
For the forty-first time, the Association for Educational Communications and Technology (AECT) is sponsoring the publication of these Proceedings. Papers published in this volume were presented at the annual AECT Convention in Kansas City, Missouri. The Proceedings of AECT's Convention are published in two volumes. Volume 1 contains twenty-seven…
Descriptors: Instructional Design, Educational Technology, Technology Uses in Education, Higher Education
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Wilczynski, Vincent; Dixon, Gregg; Ford, Eric – Journal of STEM Education: Innovations and Research, 2005
The Mechanical Engineering Section at the U.S. Coast Guard Academy has developed a comprehensive activity based course to introduce second year students to mechanical engineering design. The culminating design activity for the course requires students to design, construct and test robotic devices that complete engineering challenges. Teams of…
Descriptors: Engineering Education, Engineering Technology, Robotics, Mechanics (Process)