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Alqahtani, Muteb M.; Hall, Jacob A.; Leventhal, Maryssa; Argila, Alyssa N. – Digital Experiences in Mathematics Education, 2022
While programming was introduced to mathematics classrooms in the 1980s, emerging robotic technologies have encouraged more widespread integration of these technologies to support the development of K-12 students' mathematical reasoning. The recent emphasis of programming and computational thinking in K-12 education has highlighted the need to…
Descriptors: Mathematics Instruction, Teaching Methods, Robotics, Pretests Posttests
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Alemi, Minoo; Bahramipour, Shirin – Asian-Pacific Journal of Second and Foreign Language Education, 2019
The present case study investigated the probable effect of applying a humanoid robot as a teacher-assistant for learning and retention of English vocabulary among 10 Iranian foreign language learners with intellectual disabilities, more specifically Down syndrome. This method is a new trend in using technology to teach classes called Robot…
Descriptors: Robotics, English (Second Language), Intellectual Disability, Down Syndrome
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Hung, I-Chun; Chao, Kuo-Jen; Lee, Ling; Chen, Nian-Shing – Interactive Learning Environments, 2013
Although many researchers have pointed out that educational robots can stimulate learners' learning motivation, the learning motivation will be hardly sustained and rapidly decreased over time if the amusement and interaction merely come from the new technology itself without incorporating instructional strategies. Many researchers have…
Descriptors: Teaching Assistants, Learning Motivation, Teaching Methods, Robotics
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Chen, Gwo-Dong; Nurkhamid; Wang, Chin-Yeh; Yang, Su-Hang; Lu, Wei-Yuan; Chang, Chih-Kai – Interactive Learning Environments, 2013
This study proposes a platform to provide a near-authentic environment, context, and situation for task-based learning. The platform includes two projection screens (a vertical and a horizontal screen) combined for situated or authentic learning. The horizontal screen extends the vertical screen scene to form a space for learning activities and…
Descriptors: Foreign Countries, English (Second Language), Second Language Instruction, Pretests Posttests
Frerichs, Saundra Wever; Barker, Bradley; Morgan, Kathy; Patent-Nygren, Megan; Rezac, Micaela – Association for the Advancement of Computing in Education, 2012
Geospatial and Robotics Technologies for the 21st Century (GEAR-Tech-21), teaches science, technology, engineering and mathematics (STEM) through robotics, global positioning systems (GPS), and geographic information systems (GIS) activities for youth in grades 5-8. Participants use a robotics kit, handheld GPS devices, and GIS technology to…
Descriptors: Robotics, Telecommunications, Multimedia Instruction, Blended Learning
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Verner, Igor M. – International Journal of Computers for Mathematical Learning, 2004
This article considers the use of a learning environment, RoboCell, where manipulations of objects are performed by robot operations specified through the learner's application of mathematical and spatial reasoning. A curriculum is proposed relating to robot kinematics and point-to-point motion, rotation of objects, and robotic assembly of spatial…
Descriptors: Middle Schools, High Schools, Visualization, Teaching Methods
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1995
This Technology Learning Activity (TLA) for control robotics programming technology in grades 6-10 is designed to teach students to construct and program computer-controlled devices using a LEGO DACTA set and computer interface and to help them understand how control technology and robotics affect them and their lifestyle. The suggested time for…
Descriptors: Behavioral Objectives, Computer Assisted Instruction, Computer Assisted Manufacturing, Computer Simulation