NotesFAQContact Us
Collection
Advanced
Search Tips
Audience
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing all 6 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Chang, Chi-Cheng; Chen, Yiching – Interactive Learning Environments, 2022
This study aims to explore psychomotor performance and perception on task-centered hands-on STEM learning of educational robotics. The study adopted a convergent parallel mixed method to gather both quantitative and qualitative data in the same period of time. Participants were 42 tenth-grade students (25 male students and 17 female students) from…
Descriptors: Mastery Learning, Hands on Science, STEM Education, Robotics
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Dwivedi, Rajeev; Kumar, Arpan; Babu, Bharathy; Grandhi, Nipun; Meka, Rishi; Ahuja, Varun – Education Sciences, 2021
Finding context, examples, and ample hands-on experimentation is fundamental for understanding complex ideas in subjects such as science and math. Recent popularity of competitive robotics has become a catalyst in the development of DIY and hobby kits. Manufacturers have made available easy to work, re-configurable, and functional, structural…
Descriptors: Competition, Robotics, Class Activities, Skill Development
Peer reviewed Peer reviewed
Direct linkDirect link
Lott, Kimberly; Urbanek-Carney, Sara; Mitchell, April – Science and Children, 2019
Robotics is emerging as an effective strategy for bridging the gap between technology and engineering design in early childhood classrooms (Bers, Seddighin, and Sullivan 2013). Using a science, technology, engineering and mathematics (STEM) grant received from the authors' school, they purchased a KIBO-18 set from KinderLab Robotics…
Descriptors: Robotics, STEM Education, Teaching Methods, Programming
Fancsali, Cheri; Mirakhur, Zitsi; Klevan, Sarah; Rivera-Cash, Edgar – Research Alliance for New York City Schools, 2022
The perspective that computing and computational thinking (CT) are necessary competencies for the 21st century is increasingly pervasive. Computational concepts and methods--problem solving, designing systems, refining the steps in a process, and tinkering toward creative solutions--are relevant in nearly every discipline, profession, and…
Descriptors: Thinking Skills, Problem Solving, Computation, Science Instruction
Peer reviewed Peer reviewed
PDF on ERIC Download full text
Baek, Youngkyun; Wang, Sasha; Yang, Dazhi; Ching, Yu-Hui; Swanson, Steve; Chittoori, Bhaskar – European Journal of STEM Education, 2019
This study, a sub-study of a National Science Foundation (NSF) funded research project, applies a modified strategy of the U[superscript 2]MC for an eight-week afterschool robotics curriculum to promote upper elementary students' computational thinking in the second grade. Twenty-one students in second grade participated in a Life on Mars project…
Descriptors: Grade 2, Robotics, Elementary School Students, Elementary School Science
Peer reviewed Peer reviewed
Direct linkDirect link
Wallace, Scott A.; McCartney, Robert; Russell, Ingrid – Computer Science Education, 2010
Project MLeXAI [Machine Learning eXperiences in Artificial Intelligence (AI)] seeks to build a set of reusable course curriculum and hands on laboratory projects for the artificial intelligence classroom. In this article, we describe two game-based projects from the second phase of project MLeXAI: Robot Defense--a simple real-time strategy game…
Descriptors: Games, Intercollegiate Cooperation, Curriculum Design, Curriculum Implementation