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National Science Foundation, 2014
The "Science and Engineering Indicators" series was designed to provide a broad base of quantitative information about U.S. science, engineering, and technology for use by policymakers, researchers, and the general public. "Science and Engineering Indicators 2014" contains analyses of key aspects of the scope, quality, and…
Descriptors: Sciences, Engineering, Elementary Secondary Education, Mathematics Education
West Virginia Higher Education Policy Commission, 2014
In 2005, West Virginia science and education leaders developed a strategic plan entitled: "Vision 2015: The West Virginia Science and Technology Strategic Plan." The plan is comprised of five (5) target areas for infrastructure development, with 14 goals for action by designated leaders from higher education, state government, and…
Descriptors: Strategic Planning, STEM Education, Science Education, Federal Aid
Roesel, Cheryl, Ed. – National Science Foundation, 2010
The National Science Board (Board) is required under the National Science Foundation (NSF) Act, 42 U.S.C. (United States Code) Section 1863 (j) (1) to prepare and transmit the biennial "Science and Engineering Indicators" ("SEI") report to the President and to the Congress by January 15 of every even-numbered year. The report…
Descriptors: Global Approach, Engineering, Public Agencies, Engineering Education
National Science Foundation, 2010
The Science Indicators series was designed to provide a broad base of quantitative information about U.S. science, engineering, and technology for use by policymakers, researchers, and the general public. "Science and Engineering Indicators 2010" contains analyses of key aspects of the scope, quality, and vitality of the Nation's science…
Descriptors: STEM Education, Science Education, Engineering Education, Competition
National Science Foundation, 2008
This digest of key science and engineering indicators draws primarily from the National Science Board's two-volume "Science and Engineering Indicators, 2008" report. The digest serves two purposes: (1) to draw attention to important trends and data points from across the chapters and volumes of "Science and Engineering Indicators, 2008," and (2)…
Descriptors: Engineering Education, Research and Development, Elementary Secondary Education, Engineering
National Science Foundation, 2008
This report contains analyses of key aspects of the scope, quality, and vitality of the Nation's science and engineering enterprise and global science and technology. The report presents information on science, mathematics, and engineering education at all levels; the scientific and engineering workforce; U.S. and international and development…
Descriptors: Engineering Education, Research and Development, Elementary Secondary Education, Engineering
National Science Foundation, 2008
Volume 1 of this two-volume report contains analyses of key aspects of the scope, quality, and vitality of the Nation's science and engineering enterprise and global science and technology. The report presents information on science, mathematics, and engineering education at all levels; the scientific and engineering workforce; U.S. and…
Descriptors: Engineering Education, Research and Development, Elementary Secondary Education, Engineering

Gomory, Ralph E.; Schmitt, Roland W. – Science, 1988
Defines incremental product development and discusses how this style of innovation effects technology industries. Cites examples of Japanese competition which emphasizes quality and speed in product development. Makes recommendations for the improvement of product development in the United States. (CW)
Descriptors: College Science, Competition, Foreign Countries, Higher Education
Naka, F. Robert – Professional Engineer, 1983
Discusses crises in general education, in university basic research, and in industry, suggesting that educational institutions, industry and government must each play a role in revitalizing United States industrial preeminence in world markets. Outlines possible solutions for dealing with foreign competition. (JN)
Descriptors: Competition, Educational Trends, Engineering Education, General Education
Congress of the U.S., Washington, DC. House Committee on Science, Space and Technology. – 1987
This document contains the text of three days of hearings before the United States House of Representatives Subcommittee on Science, Research, and Technology. The hearings were held to consider the role of science and engineering in world competitiveness, particularly with regard to the United States' nonmetric posture in a metric world. Testimony…
Descriptors: College Science, Competition, Economic Climate, Engineering
The White House, 2006
Keeping our competitive edge in the world economy requires focused policies that lay the groundwork for continued leadership in innovation, exploration, and ingenuity. America's economic strength and global leadership depend in large measure on our Nation's ability to generate and harness the latest in scientific and technological developments and…
Descriptors: Competition, Innovation, Research and Development, Scientific Research

Samuelson, Pamela – Science, Technology, & Human Values, 1987
Addresses conditions and concerns involved in accommodating the interests of both innovators of new technologies and the general public. Discusses the tension that exists in intellectual property law between innovators and competitors. Focuses on cases dealing with computer software and semiconductor chip designs, genetically-engineered life…
Descriptors: Competition, Computer Science, Ethics, Genetic Engineering
Carey, David; Ernst, Ekkehard; Oyomopito, Rebecca; Theisens, Jelte – OECD Publishing (NJ1), 2006
Strengthening the innovation system in the Netherlands is a priority for raising productivity growth, which has been relatively weak in recent years. Knowledge creation in the Netherlands is strong -- scientific publications per capita are the sixth highest in the OECD -- but innovation activity is only around the average for OECD countries…
Descriptors: Productivity, Postsecondary Education, Research and Development, Factor Analysis
Conference Board, Inc., New York, NY. – 1989
This is the executive summary for "The Role of Science and Technology in Economic Competitiveness," (1987) based on a national survey on competitiveness. The study focused on three primary topics: the adequacy of human resources and its relationship to human ability to compete; investment in resarch and development; and technology transfer, i.e.,…
Descriptors: College Mathematics, College School Cooperation, College Science, Competition