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Sultan, Alan – Mathematics Teacher, 2011
Robots are used in all kinds of industrial settings. They are used to rivet bolts to cars, to move items from one conveyor belt to another, to gather information from other planets, and even to perform some very delicate types of surgery. Anyone who has watched a robot perform its tasks cannot help but be impressed by how it works. This article…
Descriptors: Robotics, Mathematics Instruction, Teaching Methods, Mathematical Concepts
Wilkinson, Clare; Dawson, Emily; Bultitude, Karen – International Journal of Science Education, Part B: Communication and Public Engagement, 2012
A wide range of work has reported on the outcomes of public engagement activities and the views expressed by public participants towards specific areas of science and technology. Such work has rarely gone on to explore with public participants their attitudes to the engagement experienced itself, often focusing instead on more practical or…
Descriptors: Foreign Countries, Citizen Participation, Semi Structured Interviews, Motivation
Diehl, Joshua J.; Schmitt, Lauren M.; Villano, Michael; Crowell, Charles R. – Research in Autism Spectrum Disorders, 2012
We examined peer-reviewed studies in order to understand the current status of empirically based evidence on the clinical applications of robots in the diagnosis and treatment of Autism Spectrum Disorders (ASD). Studies are organized into four broad categories: (a) the response of individuals with ASD to robots or robot-like behavior in comparison…
Descriptors: Feedback (Response), Autism, Pervasive Developmental Disorders, Robotics
Barker, Bradley S.; Nugent, Gwen; Grandgenett, Neal F. – International Journal of Technology and Design Education, 2014
In the United States and many other countries there is a growing emphasis on science, technology, engineering and mathematics (STEM) education that is expanding the number of both in-school and out-of-school instructional programs targeting important STEM outcomes. As instructional leaders increasingly train teachers and facilitators to undertake…
Descriptors: Fidelity, Program Implementation, STEM Education, Alignment (Education)
How Do Young Children Deal with Hybrids of Living and Non-Living Things: The Case of Humanoid Robots
Saylor, Megan M.; Somanader, Mark; Levin, Daniel T.; Kawamura, Kazuhiko – British Journal of Developmental Psychology, 2010
In this experiment, we tested children's intuitions about entities that bridge the contrast between living and non-living things. Three- and four-year-olds were asked to attribute a range of properties associated with living things and machines to novel category-defying complex artifacts (humanoid robots), a familiar living thing (a girl), and a…
Descriptors: Young Children, Robotics, Intuition, Age Differences
De Cristoforis, P.; Pedre, S.; Nitsche, M.; Fischer, T.; Pessacg, F.; Di Pietro, C. – IEEE Transactions on Education, 2013
Educational robotics proposes the use of robots as a teaching resource that enables inexperienced students to approach topics in fields unrelated to robotics. In recent years, these activities have grown substantially in elementary and secondary school classrooms and also in outreach experiences to interest students in science, technology,…
Descriptors: Robotics, STEM Education, Computer Interfaces, Programming
Crowder, R. M.; Zauner, K.-P. – IEEE Transactions on Education, 2013
The design of any robotic system requires input from engineers from a variety of technical fields. This paper describes a project-based module, "Biologically-Inspired Robotics," that is offered to Electronics and Computer Science students at the University of Southampton, U.K. The overall objective of the module is for student groups to…
Descriptors: Robotics, Engineering Education, Computer Science Education, Biology
Gonzalez, J.; Pomares, H.; Damas, M.; Garcia-Sanchez,P.; Rodriguez-Alvarez, M.; Palomares, J. M. – IEEE Transactions on Education, 2013
As embedded systems are becoming prevalent in everyday life, many universities are incorporating embedded systems-related courses in their undergraduate curricula. However, it is not easy to motivate students in such courses since they conceive of embedded systems as bizarre computing elements, different from the personal computers with which they…
Descriptors: Video Games, Video Equipment, Programming, Undergraduate Students
Sullivan, Amanda; Kazakoff, Elizabeth R.; Bers, Marina Umashi – Journal of Information Technology Education: Innovations in Practice, 2013
This paper qualitatively examines the implementation of an intensive weeklong robotics curriculum in three Pre-Kindergarten classrooms (N = 37) at an early childhood STEM (science, technology, engineering, and math) focused magnet school in the Harlem area of New York City. Children at the school spent one week participating in computer…
Descriptors: Robotics, Preschool Children, STEM Education, Magnet Schools
Dunst, Carl J.; Hamby, Deborah W.; Trivette, Carol M.; Prior, Jeremy; Derryberry, Graham – Orelena Hawks Puckett Institute, 2013
The effects of a socially interactive robot on the vocalization production of five children with disabilities (4 with autism, 1 with a sensory processing disorder) were the focus of the intervention study described in this research report. The interventions with each child were conducted over 4 or 5 days in the children's homes and involved…
Descriptors: Disabilities, Robotics, Interaction, Intervention
Scott, Michael James; Counsell, Steve; Lauria, Stanislao; Swift, Stephen; Tucker, Allan; Shepperd, Martin; Ghinea, Gheorghita – IEEE Transactions on Education, 2015
Computer programming is notoriously difficult to learn. To this end, regular practice in the form of application and reflection is an important enabler of student learning. However, educators often find that first-year B.Sc. students do not readily engage in such activities. Providing each student with a programmable robot, however, could be used…
Descriptors: Robotics, Introductory Courses, Programming, Educational Practices
Wu, Wen-Chi Vivian; Wang, Rong-Jyue; Chen, Nian-Shing – Interactive Learning Environments, 2015
This paper presents a design for a cutting-edge English program in which elementary school learners of English as a foreign language in Taiwan had lively interactions with a teaching assistant robot. Three dimensions involved in the design included (1) a pleasant and interactive classroom environment as the learning context, (2) a teaching…
Descriptors: English (Second Language), Second Language Instruction, Robotics, Elementary School Students
Mac Iver, Martha Abele; Mac Iver, Douglas J. – Baltimore Education Research Consortium, 2015
In 2011 Baltimore City Schools submitted a successful proposal for an Investing in Innovations (i3) grant to offer a three year (2012-2014) summer program designed to expose rising sixth through eighth grade students to VEX robotics. The i3-funded Middle School Science, Technology, Engineering and Mathematics (STEM) Summer Learning Program was…
Descriptors: Urban Schools, Summer Programs, Grade 6, Grade 7
Araceli Martinez Ortiz; Beth Bos; Shaunna Smith – Journal of College Science Teaching, 2015
The use of integrated science, technology, engineering and mathematics (STEM) instruction has the affordances of combining harmonious content area connections into real-world experiences that are both engaging and challenging. This article introduces findings from a study that used an integrated robotics module to expose in-service and preservice…
Descriptors: STEM Education, Robotics, Learning Experience, Teacher Education Programs
Aslam, D. M.; Abu-Ageel, A.; Alfatlawi, M.; Varney, M. W.; Thompson, C. M.; Aslam, S. K. – Journal of Education and Training Studies, 2014
As inspirations from flora and fauna have led to many advances in modern technology, the concept of drawing ideas from nature for design should be reflected in engineering education. This paper focuses on a maple-seed robotic flier (MRF) with various complexities, a robotic platform modeled after the samaras of maple or ash trees, to teach STEM…
Descriptors: Robotics, Entrepreneurship, Engineering Education, Science Instruction

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