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Promising Practices for Strengthening the Regional STEM Workforce Development Ecosystem
  • Language: en
  • Pages: 123

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 the university and into broader society in several ways â€" through highly skilled graduates (i.e. human capital); academic publications; and the creation of new products, industries, and companies via the commercialization of scientific breakthroughs. Despite this, our understanding of how universities receive, interpret, and respond to in...

Higher education
  • Language: en
  • Pages: 88

Higher education

This White Paper sets out the government's policies for the reform of higher education. The reforms seek to tackle three challenges (i) Putting higher education on a sustainable footing; (ii) Seeking to deliver a better student experience - that is, improvements in teaching, assessment, feedback and preparing the student for the world of work; (iii) Pushing for higher education institutions to take more responsibility for increasing social mobility. The Paper is divided into six chapters, with an annex. Chapter 1: Sustainable and fair funding; Chapter 2: Well-informed students driving teaching excellence; Chapter 3: A better student experience and better-qualified graduates; Chapter 4: A div...

Minority Serving Institutions
  • Language: en
  • Pages: 255

Minority Serving Institutions

There are over 20 million young people of color in the United States whose representation in STEM education pathways and in the STEM workforce is still far below their numbers in the general population. Their participation could help re-establish the United States' preeminence in STEM innovation and productivity, while also increasing the number of well-educated STEM workers. There are nearly 700 minority-serving institutions (MSIs) that provide pathways to STEM educational success and workforce readiness for millions of students of colorâ€"and do so in a mission-driven and intentional manner. They vary substantially in their origins, missions, student demographics, and levels of institut...

Promising Practices for Strengthening the Regional STEM Workforce Development Ecosystem
  • Language: en
  • Pages: 123

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 the university and into broader society in several ways â€" through highly skilled graduates (i.e. human capital); academic publications; and the creation of new products, industries, and companies via the commercialization of scientific breakthroughs. Despite this, our understanding of how universities receive, interpret, and respond to in...

Developing a National STEM Workforce Strategy
  • Language: en
  • Pages: 161

Developing a National STEM Workforce Strategy

The future competitiveness of the United States in an increasingly interconnected global economy depends on the nation fostering a workforce with strong capabilities and skills in science, technology, engineering, and mathematics (STEM). STEM knowledge and skills enable both individual opportunity and national competitiveness, and the nation needs to develop ways of ensuring access to high-quality education and training experiences for all students at all levels and for all workers at all career stages. The National Science Foundation (NSF) holds a primary responsibility for overseeing the federal government's efforts to foster the creation of a STEM-capable workforce. As part of its efforts...

Higher Education
  • Language: en
  • Pages: 110

Higher Education

The fed. gov't. has spent billions of dollars on educ. programs in the science, tech., engin., & math (STEM) fields for many years. However, concerns have been raised about the nation's ability to maintain its global technological competitive advantage in the future. This report presents info. on: the number of fed. prog. funded in FY 2004 that were designed to increase the number of students & graduates pursuing STEM degrees & occupations or improve educ. progress in STEM fields, & what agencies report about their effectiveness; how the number, percentages, & character. of students, grad., & employees in STEM fields have changed over the years'; & factors cited as affecting students' decisions about pursing STEM degrees. Charts & tables.

The Civic University
  • Language: en
  • Pages: 341

The Civic University

This innovative book addresses the leadership and management challenges of maximising the contribution of universities to civil society both locally and globally. It does this by developing a model of the civic university as an academic concept, drawing out practical lessons for university management on how to embed civic engagement in the heartland of the university. To this end, the contributors compare experiences and reports on a developmental process in eight institutions: University College London and Newcastle University in the UK, Amsterdam and Groningen Universities in the Netherlands, Aalto and Tampere Universities in Finland and Trinity College Dublin and Dublin Institute of Technology in Ireland. It will be of interest to academics of politics, public policy and management studies, as well as having relevance to policymakers in the field.

Barriers and Opportunities for 2-Year and 4-Year STEM Degrees
  • Language: en
  • Pages: 215

Barriers and Opportunities for 2-Year and 4-Year STEM Degrees

Nearly 40 percent of the students entering 2- and 4-year postsecondary institutions indicated their intention to major in science, technology, engineering, and mathematics (STEM) in 2012. But the barriers to students realizing their ambitions are reflected in the fact that about half of those with the intention to earn a STEM bachelor's degree and more than two-thirds intending to earn a STEM associate's degree fail to earn these degrees 4 to 6 years after their initial enrollment. Many of those who do obtain a degree take longer than the advertised length of the programs, thus raising the cost of their education. Are the STEM educational pathways any less efficient than for other fields of ...