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Robotics and Problem-Based Learning in STEM Formal Educational Environments

Neal Grandgenett, Elliott Ostler, Neal Topp, Robert Goeman

Year
2013
Citations
7

Abstract

Some of the best learning may occur in the context of a problem, whether in life or in the formal educational classroom. This chapter focuses on the use of educational robotics as a rich context for real-life applications and problems that can encourage the teaching and learning of science, technology, engineering, and mathematics (STEM) in formal K-12 educational environments. The chapter presents research related to the compatibility of educational robotics with problem-based learning, as well as two years of field test results from a National Science Foundation (NSF) project that is developing, testing, and refining an educational robotics curriculum. This curriculum has a foundation of problem-based learning strategies. The national curriculum effort uses an open-source programmable, robot platform and a Web-based cyber-infrastructure delivery system that provides teachers with a flexible lesson structure, compatible with national standards and engaging students in problem-based learning.

Keywords

Artificial intelligenceRoboticsEducational roboticsCurriculumComputer scienceProject-based learningContext (archaeology)Robot learningRobotMathematics education

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