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Noawanit Songkram; Supattraporn Upapong; Heng-Yu Ku; Narongpon Aulpaijidkul; Sarun Chattunyakit; Nutthakorn Songkram – Interactive Learning Environments, 2024
This research proposes the integration of robotic education and scenario-based learning (SBL) paradigm for teaching computational thinking (CT) to enhance the computational abilities of primary school students, based on digital innovation and a teaching assistant robot acceptance model. The sample group consisted of 532 primary school teachers and…
Descriptors: Foreign Countries, Elementary School Students, Elementary School Teachers, Grade 1
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
Geist, Eugene – Childhood Education, 2016
Today's children need learning opportunities from cradle to career that build the knowledge and skills necessary to thrive in our interconnected and constantly changing world. This means putting 21st century skills, including creativity, innovation, critical thinking, and problem solving, at the center of learning, both in and out of school. As…
Descriptors: Coding, Programming, Robotics, Creativity
Sullivan, Amanda; Bers, Marina Umaschi – Journal of Information Technology Education: Innovations in Practice, 2016
Prior work demonstrates the importance of introducing young children to programming and engineering content before gender stereotypes are fully developed and ingrained in later years. However, very little research on gender and early childhood technology interventions exist. This pilot study looks at N = 45 children in kindergarten through second…
Descriptors: Early Childhood Education, Kindergarten, Grade 1, Grade 2
Silk, Eli M.; Higashi, Ross; Shoop, Robin; Schunn, Christian D. – Technology Teacher, 2010
Over the past three years, the authors have conducted research in middle and high school classrooms in an effort to improve the effectiveness of robotics to teach science, technology, engineering, and mathematics (STEM) education--their focus has been on math. The authors have found that subtle changes in the design and setup of the lesson make a…
Descriptors: Problem Solving, Robotics, Mathematics Instruction, Computer Uses in Education
Barron, Brigid; Darling-Hammond, Linda – George Lucas Educational Foundation, 2008
The George Lucas Educational Foundation began in 1991 with an ambitious mission: to demonstrate how innovative learning environments in classrooms, supported by powerful new technologies, could revolutionize learning. As an organization founded by George Lucas, its members believed that the same benefits of technology that were transforming…
Descriptors: Computer Uses in Education, Experiential Learning, Active Learning, Cooperative Learning
Mihali, Raul; Sobh, Tarek – Journal of STEM Education: Innovations and Research, 2005
A problem that becomes increasingly obvious over time derives from purchasing and working with large scale, industrial type of manipulators. Primarily affected are higher level educational institutions, where manipulators are likely to be exposed to student projects that demand diversity in control strategies and various controlling software and…
Descriptors: Robotics, Simulation, Engineering, Engineering Education

Wagner, Susan Preston – Information Technology in Childhood Education Annual, 1999
Compared the impact of robotics (computer-powered manipulative) to a battery-powered manipulative (novelty control) and traditionally taught science class on science achievement and problem solving of fourth through sixth graders. Found that the robotics group had higher scores on programming logic-problem solving than did the novelty control…
Descriptors: Computer Uses in Education, Educational Technology, Elementary Education, Intermediate Grades

O'Haver, T. C. – Analytical Chemistry, 1991
Some commercially available software tools that have potential applications in the analytical chemistry curriculum are surveyed and evaluated. Tools for instruction, analysis and research, and courseware development are described. A list of the software packages, the compatible hardware, and the vendor's address is included. (KR)
Descriptors: Chemistry, College Science, Computer Simulation, Computer Software Evaluation
Hendricks, Jim – TIES Magazine, 1991
An interdisciplinary robotics project undertaken by students is described. The students acted as designers, innovators, and the engineers in designing a dancing robot. The origin of the problem, designing of the mechanical frame, pneumatics, digitized sound, and problems with the design are discussed. (KR)
Descriptors: Computer Uses in Education, Decision Making, Design, Engineering Education

de Monchy, Allan R.; And Others – Analytical Chemistry, 1988
Discusses two computer problem solving programs: rule-based expert systems and decision analysis expert systems. Explores the application of expert systems to automated chemical analyses. Presents six factors to consider before using expert systems. (MVL)
Descriptors: Artificial Intelligence, Chemical Analysis, Chemistry, College Science
Hunter, Beverly; Aiken, Robert – Technological Horizons in Education, 1987
Discusses the difficulties facing vocational educators in attempting to keep up with the rapid changes in the job market in the area of computer-related programs. Urges vocational educators to emphasize problem-solving and communications skills. Describes some attempts to develop training for such positions as robotics technicians. (TW)
Descriptors: College Science, Communication Skills, Computer Assisted Instruction, Computer Literacy