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Eisenkraft, Arthur – National Center for Engineering and Technology Education, 2011
Create a light and sound show to entertain friends. Design an improved safety device for a car. Develop a 2-3 minute voice-over for a sports clip explaining the physics involved in the sport. Modify the design of a roller coaster to meet the needs of a specific group of riders. Design an appliance package for a family limited by the power and…
Descriptors: Physics, Engineering, Science Curriculum, Secondary School Curriculum
Echeverria, Alejandro; Nussbaum, Miguel; Calderon, Juan Felipe; Bravo, Claudio; Infante, Cristian; Vasquez, Andrea – Interactive Learning Environments, 2011
The use of handheld computers in educational contexts has increased considerably in recent years and their value as a teaching tool has been confirmed by many positive experiences, particular within collaborative learning systems (Mobile Computer Supported Collaborative Learning [MCSCL]). The cost of the devices has hindered widespread use in…
Descriptors: Educational Technology, Physics, Technology Uses in Education, Courseware

Stewart, Gay B.; Stewart, John C. – Journal of Science Education and Technology, 1997
Extends the modeling system presented in Part I. This model is applied to two widely diverse educational processes: "Student Actions" and "Do Homework Problem." Its computational syntax imposes completeness criteria on the modeling and its uniformity. (AIM)
Descriptors: Computer Simulation, Instructional Development, Models, Physics

Stewart, Gay B. – Journal of Science Education and Technology, 1997
Presents a system for formally characterizing elements of an introductory science class, measuring class performance based on this characterization, and modeling the value of the class based on the measurements. The main components of this modeling system include educational engineering with a formal set of practices, the use of computational…
Descriptors: Computer Simulation, Instructional Development, Introductory Courses, Models