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Use of an Authentic, Industrially Situated Virtual Laboratory Project to Address Engineering Design and Scientific Inquiry in High Schools

Title: Use of an Authentic, Industrially Situated Virtual Laboratory Project to Address Engineering Design and Scientific Inquiry in High Schools
Language: English
Authors: Gilbuena, Debra M.; Kirsch, F. Adam; Koretsky, Milo D.
Source: Advances in Engineering Education. Sum 2012 3(2).
Availability: American Society for Engineering Education. 1818 N Street NW, Washington, DC 20036. Tel: 412-624-6815; Fax: 412-624-1108; Web site: http://advances.asee.org
Peer Reviewed: Y
Page Count: 32
Publication Date: 2012
Sponsoring Agency: National Science Foundation (NSF)
Contract Number: DUE-0442832; DUE-0717905
Intended Audience: Teachers
Document Type: Journal Articles; Reports - Research
Education Level: High Schools; Secondary Education
Descriptors: Engineering Education; High Schools; Secondary School Curriculum; Secondary School Teachers; Student Projects; Teaching Methods; Simulated Environment; Computer Simulation; Educational Technology; Technology Uses in Education; Inquiry; Laboratories; Student Motivation; Cognitive Processes; Epistemology; Laboratory Experiments; Questionnaires; Semi Structured Interviews; Instructional Design; Chemistry; Instructional Effectiveness; Barriers
ISSN: 1941-1766
Abstract: This paper is intended for engineering educators, high school curriculum designers, and high school teachers interested in integrating authentic, project-based learning experiences into their classes. These types of projects may appear complex, but have many advantages. We characterize the successful implementation of one such project, the "Virtual Chemical Vapor Deposition (CVD) Laboratory Project," in five high schools. Central to the project is a virtual laboratory that simulates a manufacturing process in the integrated circuits industry. It provides opportunities for students to develop and refine solutions to an authentic engineering task through integration of science knowledge, experimentation, analysis, reflection, and iteration. The flexibility in instructional design and the robust, no-cost access enables versatility. The authenticity of the project is shown both to motivate students and develop their epistemological beliefs. The project is also shown to promote student cognition through knowledge integration, engineering design strategies, and evaluation and reflection. In addition, the project allows for teacher assessment of students' progress towards this type of cognition and enables them to identify opportunities to modify their instructional design to promote learning. Finally, we discuss potential barriers to adoption.
Abstractor: As Provided
Number of References: 40
Entry Date: 2015
Accession Number: EJ1076127
Database: ERIC