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Full-Text Articles in Education

Do After-School Robotics Programs Expand The Pipeline Into Stem Majors In College?, Cathy Burack, Alan Melchior, Matthew Hoover Oct 2019

Do After-School Robotics Programs Expand The Pipeline Into Stem Majors In College?, Cathy Burack, Alan Melchior, Matthew Hoover

Journal of Pre-College Engineering Education Research (J-PEER)

One result of the growing concerns over the numbers of young people moving into science, technology, engineering and mathematics (STEM)-related careers has been the expansion of formal and informal STEM education programming for pre-college youth, from elementary school through high school. While the number of programs has grown rapidly, there is little research on their long-term impacts on participant education and career trajectories. This paper presents interim findings from a multi-year longitudinal study of three national after-school robotics programs that engage students in designing, building, and competing complex robots with the goal of inspiring long-term interest in STEM. Focusing on …


Argument-Driven Engineering In Middle School Science: An Exploratory Study Of Changes In Engineering Identity Over An Academic Year, Lawrence Chu, Victor Sampson, Todd L. Hutner, Stephanie Rivale, Richard H. Crawford, Christina L. Baze, Hannah S. Brooks Oct 2019

Argument-Driven Engineering In Middle School Science: An Exploratory Study Of Changes In Engineering Identity Over An Academic Year, Lawrence Chu, Victor Sampson, Todd L. Hutner, Stephanie Rivale, Richard H. Crawford, Christina L. Baze, Hannah S. Brooks

Journal of Pre-College Engineering Education Research (J-PEER)

The goal of this study was to examine how the use of a new instructional model is related to changes in middle school students’ engineering identity. The intent of this instructional model, which is called argument-driven engineering (ADE), is to give students opportunities to design and critique solutions to meaningful problems using the core ideas and practices of science and engineering. The model also reflects current recommendations found in the literature for supporting the development or maintenance of engineering identity. This study took place in the context of an eighth-grade science classroom in order to explore how middle school students’ …


Teaching Wind Energy To Engineering And Education Undergraduates Through Community Engagement, Maija A. Benitz, Li-Ling Yang Oct 2019

Teaching Wind Energy To Engineering And Education Undergraduates Through Community Engagement, Maija A. Benitz, Li-Ling Yang

Engineering, Computing & Construction Management Faculty Publications

Rhode Island's adoption of the Next Generation Science Standards in 2013 [1] established a pressing need to provide elementary schools with support for integrating engineering in our local district's classrooms. Wind energy was identified as an appropriate instructional topic, both for its relevance to Rhode Island [2], and for its strength as a tool for studying the engineering design process. Education and engineering undergraduates collaborated to educate local fourth graders about engineering design and wind energy. While supporting the need for engineering education in the community, this project also deepened learning for both education and engineering students at Roger Williams …


Disciplinary Learning From An Authentic Engineering Context, Catherine Langman, Judith Zawojewski, Patricia Mcnicholas, Ali Cinar, Eric Brey, Mustafa Bilgic, Hamidreza Mehdizadeh Jan 2019

Disciplinary Learning From An Authentic Engineering Context, Catherine Langman, Judith Zawojewski, Patricia Mcnicholas, Ali Cinar, Eric Brey, Mustafa Bilgic, Hamidreza Mehdizadeh

Journal of Pre-College Engineering Education Research (J-PEER)

This small-scale design study describes disciplinary learning in mathematical modeling and science from an authentic engineeringthemed module. Current research in tissue engineering served as source material for the module, including science content for readings and a mathematical modeling activity in which students work in small teams to design a model in response to a problem from a client. The design of the module was guided by well-established principles of model-eliciting activities (a special class of problem-solving activities deeply studied in mathematics education) and recently published implementation design principles, which emphasize the portability of model-eliciting activities to many classroom settings.

Two …


An Examination Of Employer Evaluations Of Student Participants In A Cooperative Education Program, Candice Grace Clendenin Stadler Jan 2019

An Examination Of Employer Evaluations Of Student Participants In A Cooperative Education Program, Candice Grace Clendenin Stadler

Theses, Dissertations and Capstones

This study examined employer evaluations of engineering student participants in a cooperative education program from research conducted on a small, rural, public university. Specifically, the data was derived from science, engineering, mathematics, and technology (STEM) programs. Historically, little research exists on employer perceptions of participants of cooperative education programs. Thus, a review of the literature examined the following areas: experiential education, cooperative education and work-based learning, implications of cooperative education and internships, history of cooperative education, implications for engineering majors, and employer perceptions of employability skills. More specifically, the research examined employer perceptions of cooperative education students in bachelor degree …


The Legacy Project: Rodney L. Custer, Dte, Rodney L. Custer Dte, Johnny J. Moye Dte Jan 2019

The Legacy Project: Rodney L. Custer, Dte, Rodney L. Custer Dte, Johnny J. Moye Dte

STEMPS Faculty Publications

An interview with vice president of Dept. of Technical Education, Rodney Custer is presented. Topics discussed include interest in technology and engineering education; academic qualification; and experience as university department chair administrator and working with the Center for Math, Science, and Technology (CeMast).