Welcome to the ITEST Resource Library
The curricula, instruments, and publications included in this library were submitted by ITEST projects and are relevant to the work of the NSF ITEST Program. Use the filters to the right to find relevant materials. A PDF and/or URL to the original resource are included within the resource description whenever possible. In some cases, full text publications are located behind publishers’ paywalls and a fee or membership to the third party site may be required for access.
Please note: permission for the use of instruments must be requested through the publisher or author listed in each entry, and cannot be granted by STELAR.
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Contrasting Perceptions of STEM Content and Careers
PublicationsAnalysis of baseline attitudinal data gathered from a National Science Foundation Innovative Technology Experiences for Students and Teachers project uncovered large contrasts between the perceptions of practicing professionals and students toward science, technology, engineering, and mathematics (STEM) disciplines and careers (Tyler-Wood, Knezek, & Christensen, 2010). These findings have been reconfirmed in a second year analysis based on new data and are reported in this paper. The pattern of findings suggests that university teacher preparation candidates hold attitudes similar to middle
Increasing Student Interest and Attitudes in STEM: Professional Development and Activities to Engage and Inspire Learners
PublicationsThe iQUEST (investigations for Quality Understanding and Engagement for Students and Teachers) project is designed to promote student interest and attitudes toward careers in science, technology, engineering, and mathematics (STEM). The project targets seventh- and eighth-grade science classrooms that serve high percentages of Hispanic students. The project design, student summer camp program, and professional development model have led to successful increases in student performance. The iQUEST student summer camp findings show that underserved populations of both female and male students
Prime the Pipeline Project (P3): Putting Knowledge to Work
PublicationsWith funding from NSF, the Prime the Pipeline Project (P 3) is responding to the need to strengthen the science, technology, engineering, and mathematics (STEM) pipeline from high school to college by developing and evaluating the scientific village strategy and the culture it creates. The scientific village, a community of high school students, teachers as learners, undergraduate students as mentors, and university scientists as leaders, collaborate to solve challenging long-term problems/projects that develop villagers’ expertise with STEM concepts/skills and give them a taste of the work of
Editorial: Innovative Professional Development for STEM Workforce Development
PublicationsIntroduction to a special issue of CITE wherein three ITEST projects are highlighted. The three projects in this issue share characteristics: programs that interweave formal and informal learning environments, incorporation of practices that allow participants to engage with STEM content in a hands-on manner, and a dedication to improving research on project impacts. This editorial describes these characteristics in depth. This article is part of a special issue of Contemporary Issues in Technology and Teacher Education (CITE).
STEM
PublicationsA 2011 report from the Georgetown University Center on Education and the Workforce shows that 65 percent of Bachelor’s degrees in STEM (science, engineering, technology and mathematics) occupations earn more than Master’s degrees in non-STEM occupations. Similarly, 47 percent of Bachelor’s degrees in STEM occupations earn more than PhDs in non-STEM occupations. Furthermore, people with only STEM certificates can earn more than people with non-STEM degrees; for instance certificate holders in engineering earn more than Associate’s degree-holders in business and more than Bachelor’s degree
Building a Framework for Researching Teacher Change in ITEST Projects
PublicationsThis review looks to literature on teacher change in science and technology education. We address the following question: How do science and technology teacher professional development programs define and describe changes in teaching beliefs and practices that lead to the effective implementation of sophisticated science and technology into formal classroom teaching?
Design-based Research: A Framework for Designing and Sustaining Novel Teaching and Learning Experiences in K-12 Engineering Education
PublicationsPresentation by Beverly Parsons and Tirupalavanam Ganesh at the AYS "Building Experience, Building Bridges" conference in October, 2009.
ITEST Lessons Learned: Reflecting on Informal Teaching Methodologies and Innovative Uses of Technology
PublicationsThe ITEST LRC asked four ITEST projects a series of questions about technology use and teaching methods in summer program activities in order to capture insights that can inform program design and practices in other ITEST projects and beyond.
K–12 Computational Learning
PublicationsEnhancing student learning and understanding by combining theories of learning with the computer’s unique attributes. In “Computational Thinking,” Jeannette Wing struck a chord that has resonated strongly (generating positive as well as negative responses) with many computer scientists and non-computer scientists. In this article, Cooper et al. reframe the way computational thinking is conceptualized and present a new model for computational learning in K-12 education.
Analysis of Middle and High School Student Learning of Science, Mathematics, and Engineering Concepts Through a Lego Underwater Robotics Design Challenge
PublicationsThe Build IT project is a university-school collaboration to increase precollege student interest and achievement in engineering, science, mathematics, and information technology through a novel underwater robotics project that utilizes LEGO Mindstorms kits, the NXT programmable brick, and related equipment. The project is being implemented in 36 socio-economically and academically diverse schools for students in Grades 7-12. Through a series of increasingly complex challenges, Build IT exposes students to science, mathematics, and engineering concepts such as buoyancy, Newton’s Laws, momentum