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Attila Körei; Szilvia Szilágyi; Ingrida Vaiciulyte – Problems of Education in the 21st Century, 2023
Considering Gen Z's learning needs, primarily focusing on bachelor IT students, a STEAM-based methodology was developed and tested for teaching and learning the principal properties of the cardioid curve. The four-component methodology is based on visuality and combines frontal teaching techniques with educational robotics, dynamic geometry…
Descriptors: Computer Software, Robotics, College Mathematics, Active Learning
Mari, Emilie; Millon Faure, Karine; Assude, Teresa – International Journal for Technology in Mathematics Education, 2022
In this article, we focus on how spatial knowledge can be articulated with the integration of programmable floor robots in the mathematics classroom. We describe the observation grid we conceived to take into account three distinct dimensions: spatial knowledge, robotics and computer programming. Then, we implement this tool to analyse mathematics…
Descriptors: Programming, Robotics, Elementary School Students, Spatial Ability
Boya-Lara, Carlos; Saavedra, Doris; Fehrenbach, Aaron; Marquez-Araque, Angel – International Journal of Educational Technology in Higher Education, 2022
In this work, BEAM robotics is proposed to enhance the STEM knowledge and skills of engineering students in the electrical, electronic, and mechanical domains. To evaluate the proposal, a course is designed and implemented based on a curriculum with objectives and learning activities centered on the design, construction, and operation of the BEAM…
Descriptors: Robotics, Technology Uses in Education, STEM Education, Curriculum Implementation
Hulls, Carol C. W.; Rennick, Christopher – IEEE Transactions on Education, 2020
Contribution: A first-year programming course was redesigned with a large, open-ended robotics project. The course design aligns with best practices for promoting development of students' self-efficacy in solving ill-structured software design problems. Background: From Jonassen's theory, problem-solving outcomes are dependent on the problem…
Descriptors: Programming, Robotics, College Freshmen, Computer Software
Chen Hsieh, Jun – TESOL Quarterly: A Journal for Teachers of English to Speakers of Other Languages and of Standard English as a Second Dialect, 2021
Despite the widespread applications of robots in education, fewer attempts have been made to how robots help middle school students in English-as-a-foreign-language (EFL) contexts to tell stories, let alone the probe into student emotions. This mixed-methods study, therefore, aimed to address these concerns by focusing on digital storytelling…
Descriptors: Electronic Learning, Story Telling, Robotics, Computer Software
Suárez-Gómez, Andrés-David; Pérez-Holguín, Wilson Javier – Journal of Technology and Science Education, 2020
Educational robotics has become one of the most effective methods to teach STEM concepts in a practical and didactic way at all educational level. In this context, the LEGO Mindstorms robotic platforms have been widely used due to their versatility ease of use and modularity. Despite this, most of the papers focus on K-12 and undergraduate levels,…
Descriptors: Visualization, Teaching Methods, Educational Experience, Mathematics Instruction
Anthi Karatrantou; Maria-Evangelia Kalamatianou; Christos Panagiotakopoulos – International Society for Technology, Education, and Science, 2023
Educational Robotics in Greece is being used increasingly, while it is hesitantly applied in Special Education as it requires a properly educational trained staff. The present study is a case study aiming to discuss the effects of the utilization of educational robotics in a Special Education School classroom and specifically on students with…
Descriptors: Robotics, Autism Spectrum Disorders, Students with Disabilities, Special Education
Georgiou, Kyriakoula; Angeli, Charoula – International Association for Development of the Information Society, 2019
The development of computational thinking is as important as writing, reading and arithmetic, and, it should start as early as kindergarten (Wing, 2008). However, little has been done in terms of investigating the factors influencing the development of computational thinking in preschool education (Bers et al., 2014; Ching et al., 2018; Kazakoff…
Descriptors: Teaching Methods, Thinking Skills, Scaffolding (Teaching Technique), Preschool Children
Auerbach, Joshua E.; Concordel, Alice; Kornatowski, Przemyslaw M.; Floreano, Dario – IEEE Transactions on Learning Technologies, 2019
It has often been found that students appreciate hands-on work, and find that they learn more with courses that include a project than those relying solely on conventional lectures and tests. This type of project driven learning is a key component of "Inquiry-based learning" (IBL), which aims at teaching methodology as well as content by…
Descriptors: Active Learning, Inquiry, Robotics, Artificial Intelligence
Rafique, Muhammad Usman; Mohammed, Aquil Mirza; Li, Shuai; Khan, Ameer Tamoor; Kadry, Seifedine – Advances in Engineering Education, 2019
Consumer electronics are creating huge job markets for graduates with the programming back-ground, and more and more computer science departments are launching embedded software subjects to meet this demand. However, most students majoring computer science do not have the background in electronics, or even circuits. Due to this reason, how to…
Descriptors: Case Studies, Open Source Technology, Electronics, Engineering Education
Hayashi, Kotaro; Sato, Takeshi – Research-publishing.net, 2020
This study investigates the effectiveness of an Artificial Intelligence (AI) speaker as a device used for interactions in a foreign language (L2), and a tracking eye installed on the speaker to reduce L2 anxiety. L2 anxiety is an urgent issue since the anxiety derived from a fear of being judged, being negatively evaluated, or being rejected by…
Descriptors: Second Language Learning, Second Language Instruction, Eye Movements, Artificial Intelligence
Sababha, Belal H.; Alqudah, Yazan A.; Abualbasal, Abdelraheem; AlQaralleh, Esam A. – EURASIA Journal of Mathematics, Science & Technology Education, 2016
Exposing engineering students during their education to real-world problems and giving them the chance to apply what they learn in the classroom is a vital element of engineering education. The Embedded Systems course at Princess Sumaya University for Technology (PSUT) is one of the main courses that bridge the gap between theoretical electrical…
Descriptors: Active Learning, Student Projects, Engineering Education, Foreign Countries
Dogmus, Zeynep; Erdem, Esra; Patogulu, Volkan – IEEE Transactions on Education, 2015
This paper presents ReAct!, an interactive educational tool for artificial intelligence (AI) planning for robotics. ReAct! enables students to describe robots' actions and change in dynamic domains without first having to know about the syntactic and semantic details of the underlying formalism, and to solve planning problems using…
Descriptors: Robotics, Artificial Intelligence, Instructional Effectiveness, Outcomes of Education
Wang, Alf Inge – ACM Transactions on Computing Education, 2011
This article describes an extensive evaluation of introducing a game project to a software architecture course. In this project, university students have to construct and design a type of software architecture, evaluate the architecture, implement an application based on the architecture, and test this implementation. In previous years, the domain…
Descriptors: Student Attitudes, Computer Software, Robotics, Games
Gorlewicz, Jenna L.; Kratchman, Louis B.; Webster, Robert J., III – Advances in Engineering Education, 2014
The haptic paddle is a force-feedback joystick used at several universities in teaching System Dynamics, a core mechanical engineering undergraduate course where students learn to model dynamic systems in several domains. A second goal of the haptic paddle is to increase the accessibility of robotics and haptics by providing a low-cost device for…
Descriptors: College Instruction, Laboratory Equipment, Undergraduate Students, Engineering Education
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