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Chien, Yu-Hung; Liu, Chia-Yu; Chan, Shaio-Chung; Chang, Yu-Shan – International Journal of STEM Education, 2023
There is a worldwide trend to include engineering design in high school curricula as a bridge course to higher-level STEM education and to increase high school students' interest in STEM fields. This study used a battlebot design curriculum to compare engineering design learning between high school and college first-year students and then proposed…
Descriptors: Engineering Education, Design, High School Students, College Freshmen
Hsu, Roy Chaoming; Tsai, Tang-Hui – European Journal of STEM Education, 2022
The National Science Foundation (NSF) proposed in 1996 "Shaping the Future" report that "STEM" (Science, Technology, Engineering, Mathematics) is a set of education methods that focus on learners. The STEM education actively cultivates students' independent thinking and creativity in the learning process. In recent years, the…
Descriptors: Active Learning, Student Projects, Instructional Effectiveness, Robotics
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
Fadip Audu Nannim; Nnenna Ekpereka Ibezim; Basil C. E. Oguguo; Emmanuel Chinweike Nwangwu – Education and Information Technologies, 2024
This study investigated the effect of project-based Arduino robot application on students' computational thinking skills development in robotics programming course using the quasi-experimental research design. The participants consist of 73 students in tertiary institutions in South-East Nigeria that offer Computer and Robotics Education…
Descriptors: Robotics, Computation, Thinking Skills, Skill Development
Lopez-Caudana, Edgar; López-Orozco, Christian Fernando; Mendoza Bárbara, César; Baltazar Reyes, Germán Eduardo; Ponce, Pedro; Chong-Quero, J. Enrique – Australasian Journal of Educational Technology, 2021
The dynamic society we live in requires constant adaptation and innovation on every aspect of our daily lives, allowing us to improve the necessities of different people by doing it. For this study, we used a new approach with project-based learning to go beyond the typical environment in higher education and bring solutions to real-life…
Descriptors: Foreign Countries, Physical Therapy, Undergraduate Students, Student Projects
Baichang Zhong; Xiaofan Liu; Shuiyan Huang – Technology, Pedagogy and Education, 2025
While pair learning (PL) is considered a potential method in STEM education including robotics education (RE), the question of how to pair students for superior learning effects remains. Current grouping strategies for PL in RE are constrained by fixed grouping (FG) and short of attention to dynamic grouping (DG). Therefore, this study aims to…
Descriptors: Robotics, Cooperative Learning, Comparative Analysis, Computer Science Education
Wang, Weitian; Coutras, Constantine; Zhu, Michelle – Smart Learning Environments, 2021
With the increasing employment of robots in multiple areas such as smart manufacturing and intelligent transportation, both undergraduate and graduate students from computing related majors (e.g., computer science and information technology) demonstrated strong interests in learning robotics technology to broaden their career opportunities.…
Descriptors: Computer Science Education, College Students, Situated Learning, Robotics
Kuo, Hsu-Chan; Yang, Ya-Ting Carolyn; Chen, Jung-San; Hou, Ting-Wei; Ho, Ming-Tzu – IEEE Transactions on Education, 2022
Contribution: Prior studies have shown that project-based learning (PBL) is an effective approach on engineering education. This study further identifies the impact of a design thinking (DT) integrated PBL approach on the college students' learning motivation and creativity. Background: A well-developed robot and its project often require…
Descriptors: Design, Creative Thinking, Active Learning, Student Projects
Sunil Dehipawala; Kelvin Yao; Todd Holden; Tak Cheung – International Society for Technology, Education, and Science, 2024
The damped harmonic oscillator physics problem is a standard oscillation problem in calculus physics for pre-engineering students in a community college. The use of alternative linear algebra eigenvalue stability method is consistent with the upper engineering courses using control theory. The external force and friction damping would become the…
Descriptors: Physics, Science Instruction, Teaching Methods, Web Sites
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
Ng, Davy Tsz Kit; Lee, Min; Tan, Roy Jun Yi; Hu, Xiao; Downie, J. Stephen; Chu, Samuel Kai Wah – Education and Information Technologies, 2023
In recent years, with the popularity of AI technologies in our everyday life, researchers have begun to discuss an emerging term "AI literacy". However, there is a lack of review to understand how AI teaching and learning (AITL) research looks like over the past two decades to provide the research basis for AI literacy education. To…
Descriptors: Artificial Intelligence, Technology Uses in Education, Technological Literacy, Literacy Education
Wheeler, Ann; Smith, Shawnda; Gardner, David – Journal of Mathematics Education at Teachers College, 2020
In this paper, we discuss the utilization of an innovative learning tool, the Sphero BOLT robot, in a 10-day algebra-based mathematics education course for graduate students. Students created routes for their BOLTs to travel and determined ways to measure the distance, rate, and time of their robots' movements. The student prompt, sample student…
Descriptors: Learner Engagement, Teaching Methods, Robotics, Technology Integration
Ibrahim, Mohd Faisal; Huddin, Aqilah Baseri; Hashim, Fazida Hanim; Abdullah, Mardina; Rahni, Ashrani Aizzuddin Abd; Mustaza, Seri Mastura; Hussain, Aini; Zaman, Mohd Hairi Mohd – International Journal of Evaluation and Research in Education, 2020
This study examined the educational effects in strengthening programming skills among university's undergraduate engineering students via integration of a robotics project and an experiential learning approach. In this study, a robotics project was conducted to close the gap of students' difficulty in relating the theoretical concepts of…
Descriptors: Programming, Engineering Education, Experiential Learning, Active Learning
Loukatos, Dimitrios; Arvanitis, Konstantinos G. – Education Sciences, 2019
Inspired by the mobile phone market boost, several low cost credit card-sized computers have made the scene, able to support educational applications with artificial intelligence features, intended for students of various levels. This paper describes the learning experience and highlights the technologies used to improve the function of DIY…
Descriptors: Handheld Devices, Artificial Intelligence, Robotics, Internet
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