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Tyler S. Love; Kenneth Russell Roy – International Technology and Engineering Educators Association, 2022
For decades safety has been an integral component of STEM (science, technology, engineering, and mathematics) and CTE (career and technical education) instruction. Given today's litigious society, safety in P-12 STEM education and CTE has received greater attention. This in part is the result of the rise in popularity of collaborative learning…
Descriptors: STEM Education, Safety, Vocational Education, Preschool Education
Drew, David E. – Johns Hopkins University Press, 2011
One study after another shows American students ranking behind their international counterparts in the STEM fields--science, technology, engineering, and math. Business people such as Bill Gates warn that this alarming situation puts the United States at a serious disadvantage in the high-tech global marketplace of the twenty-first century, and…
Descriptors: Achievement Gap, Economic Development, Mathematics Education, Educational Change
National Academies Press, 2012
Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S.…
Descriptors: Science Education, Science Instruction, Elementary Secondary Education, Alignment (Education)
Palmer, Robert T.; Davis, Ryan J.; Thompson, Tiffany – Journal of College Student Development, 2010
In the current postindustrial era, increasing the number of minorities in science, technology, engineering, and mathematics (STEM) is critically important for the United States' economic growth and its position in the global marketplace. Given the U.S. Census Bureau's 2008 projection that the population of minorities is expected to increase by…
Descriptors: Economic Progress, Black Colleges, Minority Groups, African American Students
Litzinger, Thomas A.; Koubek, Richard J.; Wormley, David N. – New Directions for Teaching and Learning, 2009
One of the most important elements in achieving significant curricular and pedagogical innovation is creating a climate that promotes and acknowledges the contributions of those who engage in these efforts. It is critical that this climate be systemic, existing at the department, college, and university levels. In the past few years, the view that…
Descriptors: Undergraduate Study, Science Education, Technology Education, Engineering Education
Connecticut Women's Education and Legal Fund, 2009
The Vocational Equity Research, Training and Evaluation Center (VERTEC) was established in 1988 to increase females' access to, and opportunities in, vocational education programs that are nontraditional for their gender. The research, technical assistance and advocacy that has been provided by VERTEC staff over the last 21 years has established a…
Descriptors: Nontraditional Students, Sex Fairness, Gender Discrimination, Vocational Education
Gerard, Libby F.; Bowyer, Jane B.; Linn, Marcia C. – Journal of Science Education and Technology, 2008
Reforms such as technology-enhanced instruction require principal leadership. Yet, many principals report that they need help to guide implementation of science and technology reforms. We identify strategies for helping principals provide this leadership. A two-phase design is employed. In the first phase we elicit principals' varied ideas about…
Descriptors: Educational Change, Principals, Technology Integration, Technology Education
Patton, Madeline – American Association of Community Colleges, 2005
This publication profiles the strategies and best practices of Advanced Technological Education (ATE) Centers in developing faculty skills, cultivating partnerships, implementing new curricula, recruiting students, preparing for change, utilizing advisors, managing organizations, and nurturing leaders. In this report, ATE center leaders share with…
Descriptors: Technology Education, Community Colleges
Carroll, Becky; Smith, Anita; Castori, Pam – Inverness Research, 2009
The Exploratorium is home to XTech, a science education program which began in 2006 and was primarily funded by a three-year National Science Foundation grant (Award # 05-25217) through its ITEST (Innovative Technology Experiences for Students and Teachers) initiative. XTech provided project-based afterschool activities in science, engineering,…
Descriptors: Middle School Students, Field Trips, Summative Evaluation, Outreach Programs
Elsner, Paul A., Ed.; Boggs, George R., Ed.; Irwin, Judith T., Ed. – Community College Press (NJ3), 2008
In a global society and economy, education and training is essential to a nation's competitiveness and to the standard of living of its people. The need to open the doors of higher or further education beyond the relatively limited enrollments in elite and selective universities has spawned a movement to develop or expand institutions that are…
Descriptors: Technical Institutes, Living Standards, Global Approach, Foreign Countries
Kettlewell, Janet S., Ed.; Henry, Ronald J., Ed. – Rowman & Littlefield Education, 2009
The U. S. is losing its competitive edge in science, technology, engineering, and mathematics (STEM). Thomas Friedman warns that America is not producing enough young people in STEM fields that are essential for entrepreneurship and innovation in the 21st century (The World Is Flat: A Brief History of the Twenty-First Century, 2005). Blue ribbon…
Descriptors: Mathematics Curriculum, Higher Education, Teacher Effectiveness, Elementary Secondary Education
Barnett, Lynn, Ed.; San Felice, Faith, Ed. – American Association of Community Colleges (NJ3), 2006
This report is the result of a national conference convened in December 2005 by the American Association of Community Colleges in partnership with the American Mathematical Association of Two-Year Colleges (AMATYC) and supported by the National Science Foundation (NSF). This event, the Teaching by Choice Leadership Summit on Community College…
Descriptors: Community Colleges, College Faculty, Science Education, Technology Education
Utah State Board of Education, Salt Lake City. Div. of Curriculum and Instruction. – 1992
This document presents the core science curriculum standards which must be completed by all students as a requisite for graduation from Utah's secondary schools. Contained within are the elementary and secondary school program of studies and high school graduation requirements. Each course entry for grades 7-12 contains: course title, unit of…
Descriptors: Biology, Chemistry, Graduation Requirements, Physics
Vermont Inst. for Science, Math, and Technology, Montpelier. – 1999
This publication presents science, mathematics, and technology programs that are fully aligned with Vermont's Framework of Standards and Learning Opportunities. It also identifies elementary, middle, and high school programs that incorporate content and best practices as identified by the Vermont framework. The materials in the accompanying list…
Descriptors: Academic Standards, Elementary Secondary Education, Mathematics Education, Program Effectiveness
National Science Teachers Association, Arlington, VA. – 2001
This document presents a collection of strand maps that show how students' understanding of the ideas and skills that lead to literacy in science, mathematics, and technology might grow over time. The guide discusses strand maps in general and prose directly related to each individual map. The maps are built from benchmarks that were derived from…
Descriptors: Academic Standards, Benchmarking, Curriculum Development, Elementary Secondary Education