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Hacker, Michael – Technology and Engineering Teacher, 2018
Computational Thinking (CT) is being promoted as "a fundamental skill used by everyone in the world by the middle of the 21st Century" (Wing, 2006). CT has been effectively integrated into history, ELA, mathematics, art, and science courses (Settle, et al., 2012). However, there has been no analogous effort to integrate CT into…
Descriptors: Skill Development, Thinking Skills, Technology Education, Engineering Education
Francesca Gottschalk; Crystal Weise – OECD Publishing, 2023
Digital technologies can be used to support the inclusion of diverse student groups in education in a number of ways including enhancing accessibility of educational content, increasing personalisation and providing distance learning opportunities, as was the case during the COVID-19 pandemic. However, persistent digital inequalities can undermine…
Descriptors: Access to Computers, Educational Technology, Inclusion, Equal Education
Alimisis, Dimitris – Technology, Knowledge and Learning, 2019
This paper presents the training curriculum for teachers developed in the context of the ERASMUS+ project, ROBOESL (2015-2017). The paper focuses on the robotics-based learning methodologies inspired by constructivism and project-based learning principles and implemented within the framework of the ROBOESL training and learning activities. The…
Descriptors: Robotics, Teaching Methods, Learning Activities, Faculty Development
Tweed, Anne; Arndt, Laura – Learning Professional, 2017
In spring 2014, education leaders from across Micronesia came together on the island of Guam to learn about underwater robotics and Marine Advanced Technology Education (MATE), a program based at Monterey Peninsula College in Monterey, California. Participants listened intently as they learned about building and participating in competitions with…
Descriptors: Robotics, STEM Education, Teaching Methods, Competition
Worker, Steven M.; Smith, Martin H. – Afterschool Matters, 2014
A wide variety of out-of-school time (OST) programs across the U.S. offer science education opportunities that cover many scientific disciplines and use diverse pedagogical practices (National Research Council [NRC], 2009). However, to improve youth's scientific literacy, OST educators need to "have the disposition and repertoire of practices…
Descriptors: After School Programs, Science Education, Science Process Skills, Skill Development
Green, Michael; Piel, John A. – Journal of Instructional Pedagogies, 2012
A summer session, math methods course for elementary teachers incorporates 30 hours of instruction that emphasizes (1) developmentally appropriate instructional strategies, (2) hierarchical levels of increasingly abstract manipulatives, (3) ongoing assessment of student learning, (4) integrated thematic instructional modules, (5) team planning and…
Descriptors: Summer Programs, Mathematics Instruction, Elementary School Teachers, Teaching Methods
Nebraska Center for Research on Children, Youth, Families and Schools, 2012
The primary mission of the Nebraska Center for Research on Children, Youth, Families and Schools (CYFS) is to advance the conduct of high-quality interdisciplinary research to promote the intellectual, behavioral and social-emotional development and functioning of individuals across educational, familial and community contexts. Central to this is…
Descriptors: Emotional Development, Educational Change, Social Development, Science Instruction
Hademenos, George; Russell, Jonathan; Birch, John; Wosczyna-Birch, Karen – Science Teacher, 2010
"Engineering Challenge for the 21st Century," a weeklong teacher workshop sponsored by the National Science Foundation, uses project-based learning (PBL) to help students and teachers build science, technology, engineering, and math (STEM) skills. The workshop, hosted by the U.S. Coast Guard Academy in New London, Connecticut, features the Coast…
Descriptors: Strategic Planning, Student Projects, Active Learning, Teacher Workshops
Rockland, Ronald; Bloom, Diane S.; Carpinelli, John; Burr-Alexander, Levelle; Hirsch, Linda S.; Kimmel, Howard – Journal of Technology Studies, 2010
Technological fields, like engineering, are in desperate need of more qualified workers, yet not enough students are pursuing studies in science, technology, engineering, or mathematics (STEM) that would prepare them for technical careers. Unfortunately, many students have no interest in STEM careers, particularly engineering, because they are not…
Descriptors: Careers, Mathematics Curriculum, Curriculum Development, Elementary Secondary Education