Promising Practices in Undergraduate Science Technology Engineering and Mathematics Education

This book PDF is perfect for those who love Education genre, written by National Research Council and published by National Academies Press which was released on 19 April 2011 with total hardcover pages 96. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Promising Practices in Undergraduate Science Technology Engineering and Mathematics Education books below.

Promising Practices in Undergraduate Science  Technology  Engineering  and Mathematics Education
Author : National Research Council
File Size : 47,5 Mb
Publisher : National Academies Press
Language : English
Release Date : 19 April 2011
ISBN : 9780309212946
Pages : 96 pages
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Promising Practices in Undergraduate Science Technology Engineering and Mathematics Education by National Research Council Book PDF Summary

Numerous teaching, learning, assessment, and institutional innovations in undergraduate science, technology, engineering, and mathematics (STEM) education have emerged in the past decade. Because virtually all of these innovations have been developed independently of one another, their goals and purposes vary widely. Some focus on making science accessible and meaningful to the vast majority of students who will not pursue STEM majors or careers; others aim to increase the diversity of students who enroll and succeed in STEM courses and programs; still other efforts focus on reforming the overall curriculum in specific disciplines. In addition to this variation in focus, these innovations have been implemented at scales that range from individual classrooms to entire departments or institutions. By 2008, partly because of this wide variability, it was apparent that little was known about the feasibility of replicating individual innovations or about their potential for broader impact beyond the specific contexts in which they were created. The research base on innovations in undergraduate STEM education was expanding rapidly, but the process of synthesizing that knowledge base had not yet begun. If future investments were to be informed by the past, then the field clearly needed a retrospective look at the ways in which earlier innovations had influenced undergraduate STEM education. To address this need, the National Research Council (NRC) convened two public workshops to examine the impact and effectiveness of selected STEM undergraduate education innovations. This volume summarizes the workshops, which addressed such topics as the link between learning goals and evidence; promising practices at the individual faculty and institutional levels; classroom-based promising practices; and professional development for graduate students, new faculty, and veteran faculty. The workshops concluded with a broader examination of the barriers and opportunities associated with systemic change.

Promising Practices in Undergraduate Science  Technology  Engineering  and Mathematics Education

Numerous teaching, learning, assessment, and institutional innovations in undergraduate science, technology, engineering, and mathematics (STEM) education have emerged in the past decade. Because virtually all of these innovations have been developed independently of one another, their goals and purposes vary widely. Some focus on making science accessible and meaningful to

Get Book
Promising Practices in Undergraduate Science  Technology  Engineering  and Mathematics Education

Numerous teaching, learning, assessment, and institutional innovations in undergraduate science, technology, engineering, and mathematics (STEM) education have emerged in the past decade. Because virtually all of these innovations have been developed independently of one another, their goals and purposes vary widely. Some focus on making science accessible and meaningful to

Get Book
Promising Practices for Engaging Families in STEM Learning

The technology revolution has made it critical for all children to understand science, technology, engineering, and math (STEM) or risk being left behind. Promising Practices for Engaging Families in STEM Learning explores how families, schools, and communities can join together to promote student success in STEM by building organized and

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Discipline Based Education Research

The National Science Foundation funded a synthesis study on the status, contributions, and future direction of discipline-based education research (DBER) in physics, biological sciences, geosciences, and chemistry. DBER combines knowledge of teaching and learning with deep knowledge of discipline-specific science content. It describes the discipline-specific difficulties learners face and the

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Outcome Based Science  Technology  Engineering  and Mathematics Education  Innovative Practices

"This book provides insights into initiatives that enhance student learning and contribute to improving the quality of undergraduate STEM education"--Provided by publisher.

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Promising Practices for Addressing the Underrepresentation of Women in Science  Engineering  and Medicine

Careers in science, engineering, and medicine offer opportunities to advance knowledge, contribute to the well-being of communities, and support the security, prosperity, and health of the United States. But many women do not pursue or persist in these careers, or advance to leadership positions - not because they lack the

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Proven Programs in Education  Science  Technology  and Mathematics  STEM

Let the best evidence based practices guide you to STEM success. This series turns research into practice with practical, evidence-based advice from the world’s premier education researchers and authors. In this volume, top articles on science, technology, and math provide multiple perspectives on current STEM issues as well as

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Promising Practices for Strengthening the Regional STEM Workforce Development Ecosystem

U.S. strength in science, technology, engineering, and mathematics (STEM) disciplines has formed the basis of innovations, technologies, and industries that have spurred the nation's economic growth throughout the last 150 years. Universities are essential to the creation and transfer of new knowledge that drives innovation. This knowledge moves out of

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